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Heat Exchangers : Selection, Rating, and Thermal Design, Fourth Edition

By: Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Anchasa Pramuanjaroenkij (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Hongtan Liu (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author) , Sadik Kakac (Author)

Manufacture on Demand

Ksh 30,400.00

Format: Hardback or Cased Book

ISBN-10: 1138601861

ISBN-13: 9781138601864

Edition Number: 4

Publisher: Taylor & Francis Ltd

Imprint: CRC Press

Country of Manufacture: GB

Country of Publication: GB

Publication Date: Feb 5th, 2020

Publication Status: Active

Product extent: 546 Pages

Weight: 1142.00 grams

Dimensions (height x width x thickness): 18.60 x 25.80 x 4.10 cms

Product Classification / Subject(s): Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades
Mechanics of fluids
Heat transfer processes
Heating, lighting, ventilation
Automotive technology & trades

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  • Reviews

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition covers the basics of heat exchanger technology, focusing on selection, thermal-hydraulic design, and rating. Designed for student readers, this edition adds coverage of micro-scale heat transfer, and updated coverage of compact, gasketed, and micro-scale heat exchangers.

Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

  • Classification of heat exchangers
  • Basic design methods of heat exchangers for sizing and rating problems
  • Single-phase forced convection correlations for heat exchangers
  • Pressure drop and pumping power for heat exchangers and piping circuits
  • Design methods of heat exchangers subject to fouling
  • Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers
  • Two-phase convection correlations for heat exchangers
  • Thermal design of condensers and evaporators
  • Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.


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