Plate Heat Exchangers: Design, Applications and Performance

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Plate Heat Exchangers: Design, Applications and Performance

Introduction

Plate Heat Exchangers: Design, Applications and Performance
Plate Heat Exchangers: Design, Applications and Performance


     Heat exchangers are important and used frequently in the processing, heat and power, air-conditioning and refrigeration, heat recovery, transportation and manufacturing industries. Such equipment is also important in electronics cooling and for environmental issues like thermal pollution, waste disposal and sustainable development.

    The present book concerns plate heat exchangers (PHEs), which are one of the most common types in practice. The overall objectives are to present comprehensive descriptions of such heat exchangers and their advantages and limitations, to provide in-depth thermal and hydraulic design theory for PHEs, and to present state-of-the-art knowledge.

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    The book starts with a general introduction and historical background to PHEs, then discusses construction and operation (PHE types, plate pattern, etc.) and gives examples of PHEs in different application areas. Material issues (plates, gaskets, brazing materials) and manufacturing methods are also treated. The major part of the book concerns the basic design methods for both single-phase and two-phase flow cases, various flow arrangements, thermal-hydraulic performance in single-phase flow and for PHEs operating as condensers and evaporators. Fouling problems are also discussed and in a section on extended design and operation issues, modern Research and Development (R & D) tools like computational fluid dynamics (CFD) methods are discussed. Unique features for PHEs are discussed throughout.

Heating, Ventilating, and Air-Conditioning Applications

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Table Of Contents

Chapter 1 Basic features and development of plate heat exchangers

Chapter 2 Construction and operation

Chapter 3 Industrial applications

Chapter 4 Materials and manufacturing

Chapter 5 Basic design methods

Chapter 6 Single- and multi-pass flow arrangement

Chapter 7 Thermal-hydraulic performance in single-phase flows

Chapter 8 Thermal-hydraulic performance in condensers and evaporators

Chapter 9 Fouling, corrosion, and erosion

Chapter 10 Extended design and operation issues


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