Analysis of Engineering Cycles :Power, Refrigerating and Gas Liquefaction Plant ( 4 )

Publication subTitle :Power, Refrigerating and Gas Liquefaction Plant

Publication series :4

Author: Haywood   R. W.  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780080984131

P-ISBN(Paperback): 9780080407395

P-ISBN(Hardback):  9780080407395

Subject: TK08 Traduced.

Language: ENG

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Description

Extensively revised, updated and expanded, the fourth edition of this popular text provides a rigorous analytical treatment of modern energy conversion plant. Notable for both its theoretical and practical treatment of conventional and nuclear power plant, and its studies of refrigerating and gas-liquefaction plant. This fourth edition now includes material on topics of increasing concern in the fields of energy 'saving' and reduction of environmental pollution. This increased coverage deals specifically with the following areas: CHP (cogeneration) plant, studies of both gas and coal burning plant designed to reduce toxic emissions, and the study of PWR plant in the nuclear industry, which has been extended to cover conceptual designs aimed at greater inherent safety. With over 20 new sections plus new appendices and more problems this text not only retains its value but also enhances its usefulness to the reader, covering areas of current interest and importance.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 6

Table of Contents

pp.:  6 – 14

Preface to the Fourth Edition

pp.:  14 – 18

Preface to the Third Edition

pp.:  18 – 20

Preface to the Second Edition (SI units)

pp.:  20 – 22

Preface to the First Edition

pp.:  22 – 26

Editorial Introduction

pp.:  26 – 28

PartI: Simple Power and Refrigerating Plants

pp.:  28 – 106

Part II: Advanced Power and Refrigerating Plants

pp.:  106 – 290

Appendix A: Thermodynamic availability and irreversibility

pp.:  290 – 307

Appendix B: The advance in operating conditions in steam power stations

pp.:  307 – 309

Appendix C: Some economic considerations

pp.:  309 – 315

Appendix D: Boiler circulation theory

pp.:  315 – 325

Appendix E: Solutions to additional problems

pp.:  325 – 366

Additional references

pp.:  366 – 368

Index

pp.:  368 – 372

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