This edition ensures the legacy of the original 1950 classic, Process Heat Transfer, by Donald Q. Kern that by many is held to be the gold standard.

This second edition book is divided into three parts: Fundamental Principles; Heat Exchangers; and Other Heat Transfer Equipment/ Considerations.

* Part I provides a series of chapters concerned with introductory topics that are required when solving heat transfer problems. This part of the book deals with topics such as steady-state heat conduction, unsteady-state conduction, forced convection, free convection, and radiation.

* Part II is considered by the authors to be the "meat" of the book, and the primary reason for undertaking this project. Other than minor updates, Part II remains relatively unchanged from the first edition. Notably, it includes Kern's original design methodology for double-pipe, shell-and-tube, and extended surface heat exchangers. Part II also includes boiling and condensation, boilers, cooling towers and quenchers, as well as newly designed open-ended problems.

* Part III of the book examines other related topics of interest, including refrigeration and cryogenics, batch and unsteady-state processes, health & safety, and the accompanying topic of risk. In addition, this part also examines the impact of entropy calculations on exchanger design.

A 36-page Appendix includes 12 tables of properties, layouts and design factors.

WHAT IS NEW IN THE 2ND EDITION

Changes that are addressed in the 2nd edition so that Kern's original work continues to remain relevant in 21st century process engineering include:

* Updated Heat Exchanger Design

* Increased Number of Illustrative Examples

* Energy Conservation/ Entropy Considerations

* Environmental Considerations

* Health & Safety

* Risk Assessment

* Refrigeration and Cryogenics



Autorentext

Ann Marie Flynn, PhD, the first female Manhattan College graduate to return to the school as a full-time faculty member, served as the department chair and graduate program director during her 27-year tenure in the chemical engineering department where she received multiple awards for teaching and leadership. She used Donald Q. Kern's text almost exclusively during the 16- year period when she taught Heat Transfer, and undertook the writing of the 2nd edition to bring Kern's straight forward approach towards heat exchanger design to the next generation of engineers.

Toshihiro Akashige, B.S. Chem. Eng., is a graduate from Manhattan College and currently enrolled in a PhD program for chemical and biomolecular engineering at the New York University Tandon School of Engineering. He particularly enjoyed process heat transfer class taught by Dr. Flynn and eventually joined in co-authoring this textbook with a hope that Dr. Kern's design methodology will help many other students and future engineers gain comfort in the technical knowledge of heat exchangers.

Louis Theodore, MChE and EngScD, is a retired professor of chemical engineering (50 years). He is the author of several publications, including Fluid Flow for the Practicing Chemical Engineer, Thermodynamics for the Practicing Engineer, Mass Transfer Operations for the Practicing Engineer, and Air Pollution Control Equipment Calculations. Dr. Theodore is also a contributor to Perry's Chemical Engineers' Handbook.

Klappentext

This edition ensures the legacy of the original 1950 classic, Process Heat Transfer, by Donald Q. Kern that by many is held to be the gold standard.

This second edition book is divided into three parts: Fundamental Principles; Heat Exchangers; and Other Heat Transfer Equipment/ Considerations.

  • Part I provides a series of chapters concerned with introductory topics that are required when solving heat transfer problems. This part of the book deals with topics such as steady-state heat conduction, unsteady-state conduction, forced convection, free convection, and radiation.
  • Part II is considered by the authors to be the "meat" of the book, and the primary reason for undertaking this project. Other than minor updates, Part II remains relatively unchanged from the first edition. Notably, it includes Kern's original design methodology for double-pipe, shell-and-tube, and extended surface heat exchangers. Part II also includes boiling and condensation, boilers, cooling towers and quenchers, as well as newly designed open-ended problems.
  • Part III of the book examines other related topics of interest, including refrigeration and cryogenics, batch and unsteady-state processes, health & safety, and the accompanying topic of risk. In addition, this part also examines the impact of entropy calculations on exchanger design.

A 36-page Appendix includes 12 tables of properties, layouts and design factors.

WHAT IS NEW IN THE 2ND EDITION

Changes that are addressed in the 2nd edition so that Kern's original work continues to remain relevant in 21st century process engineering include:

  • Updated Heat Exchanger Design
  • Increased Number of Illustrative Examples
  • Energy Conservation/ Entropy Considerations
  • Environmental Considerations
  • Health & Safety
  • Risk Assessment
  • Refrigeration and Cryogenics

Audience

Chemical and mechanical engineers primarily but all other engineering disciplines will have interest. The book is designed for junior and senior undergraduate courses as well as 1st year graduate (Master's) courses.

"Congratulations to the authors for keeping Kern's classic heat transfer book alive and relevant. This new edition is a wonderful contribution to the chemical engineering literature. As with the classic first edition, the new book can be used as either a reference book for the practicing engineer or a textbook for the undergraduate/graduate engineering student. This book was masterfully updated by a team of experts." Rita L. D'Aquino, Former Senior Editor of Chemical Engineering Magazine

Inhalt

Table of Contents (First Edition) vii

Preface to the First Edition xiii

Preface to the Second Edition xv

Acknowledgement xix

Part I Fundamentals and Principles 1

1. Introduction to Process Heat Transfer 3

1.1 Units and Dimensional Analysis 4

1.2 Key Physical Properties 10

1.3 Key Process Variables and Concepts 14

1.4 Laws of Thermodynamics 22

1.5 Heat-related Theories and Transfer Mechanisms 26

1.6 Fluid Flow and Pressure Drop Calculations 28

1.7 Process Heat Transfer 35

Reference 40

2 Steady-State and Unsteady-State Heat Conduction 43

2.1 Flow of Heat through a Wall 46

2.2 Flow of Heat through a Composite Wall: Resistances in Series 50

2.3 Flow of Heat through a Pipe Wall 54

2.4 Microscopic Approach: Steady-State Conduction 63

2.5 Unsteady-State Heat Conduction 68

2.6 Microscopic Approach: Unsteady-State Conduction 71

Reference 77

3 Forced and Free Convection 79

3.1 Forced Convection Principles 82

3.2 Convective Resistances 87

3.3 Heat Transfer Coefficients: Quantitative Information 89

3.4 Convection Heat Transfer: Microscopic Approach 105

3.5 Free Convection Principles and Applications 108

3.6 Environmental Applications 120

Reference 126

4 Radiation 129

4.1 The Origin of Radiant Energy 132

4.2 The Distribution of Radiant Energy 133

4.3 Radiant Exchange Principles 138

4.4 Kirchoff 's Law 139

4.5 Emissivity Factors and Energy Interchange 145

4.6 View Factors 152

Reference 157<…

Titel
Kern's Process Heat Transfer
EAN
9781119364177
Format
E-Book (epub)
Genre
Veröffentlichung
29.05.2019
Digitaler Kopierschutz
Adobe-DRM
Dateigrösse
19.76 MB
Anzahl Seiten
726