Fr. 276.00

Dynamics of Regenerative Heat Transfer

English · Hardback

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Description

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The author, a respected authority on heat recovery, provides up-to-date and comprehensive coverage of the modelling of the process of heat transfer embodied in regenerative devices. He brings together material on storage and thermal generators and gives great emphasis to non-linear problems including the representation of temperature dependence of thermophysical properties involved.; In ten dynamic chapters, you will find coverage of: the storage of heat in packing; the Single Blow problem; basic concepts in counterflow thermal regenerators; counterflow regenerators; finite conductivity models; non-linear models of counterflow regenerators; transient response of counterflow regenerators; and parallel flow regenerators. Bringing together material developed over the past twenty years, the book will be of great interest to mechanical and chemical engineers as well as applied mathematicians concerned with models of heat transfer processes.

List of contents

Preface; Nomenclature; 1. Dynamics of Regenerative Heat Transfer: An Introducation 2. The Storage of Heat in a Packing: The Single Blow Problem 3. The Single Blow Problem: Effect of Solid Finite Conductivity 4. Basic Concepts of Counterflow Thermal Regenerators 5. Introduction to Methods for Solving the Equations Which Model Counterflow Regenerators 6. Counterflow Regenerators 7. tbc. 8. Non-linear Models of Counterflow Regenerators 9. Transient Response of Counterflow Regenerators 10. Parallel Flow Regenerators; Index

About the author










John A Willmott

Summary

The author, a respected authority on heat recovery, provides up-to-date and comprehensive coverage of the modelling of the process of heat transfer embodied in regenerative devices

Product details

Authors John A Willmott
Publisher CRC Press
 
Languages English
Product format Hardback
Released 08.08.2001
 
EAN 9781560323693
ISBN 978-1-56032-369-3
No. of pages 318
Dimensions 157 mm x 235 mm x 22 mm
Weight 613 g
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Thermodynamics

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