Fr. 135.00

Application of Compact Heat Exchangers For Combined Cycle Driven Efficiency In Next Generation Nuclear Power Plants - A Novel Approach

English · Paperback / Softback

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Description

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  • Covers the fundamentals of combined-cycle plants to provide background for understanding the progressive design approaches at the heart of the text
  • Discusses the types of compact heat exchanger surfaces, suggesting novel designs that can be considered for optimal cost effectiveness and maximum energy production
  • Undertakes the thermal analysis of these compact heat exchangers throughout the life cycle, from the design perspective through operational and safety assurance stages
This book describes the quest to create novel designs for compact heat exchangers in support of emergent combined cycle nuclear plants. The text opens with a concise explanation of the fundamentals of combined cycles, describing their efficiency impacts on electrical power generation systems. It then covers the implementation of these principles in nuclear reactor power systems, focusing on the role of compact heat exchangers in the combined cycle loop and applying them to the challenges facing actual nuclear power systems.
The various types of compact heat exchanger surfaces and designs are given thorough consideration before the author turns his attention to discussing current and projected reactor systems, and how the novel design of these compact heat e
xchangers can be applied to innovative designs, operation and safety analyses to optimize thermal efficiency. The book is written at an undergraduate level, but will be useful to practicing engineers and scientists as well.

List of contents

Definitions And Basic Principles.- Electricity An Essential Necessity In Our Life.- Energy Resources And The Role Of Nuclear Energy.- New Approach To Energy Conversion Technology.- Air Brayton Cycles For Nuclear Power Plants.- Heat Exchangers.- Effective Design Of Compact Heat Exchangers For NGNP.- Nuclear Systems Acronyms.

Summary

  • Covers the fundamentals of combined-cycle plants to provide background for understanding the progressive design approaches at the heart of the text
  • Discusses the types of compact heat exchanger surfaces, suggesting novel designs that can be considered for optimal cost effectiveness and maximum energy production
  • Undertakes the thermal analysis of these compact heat exchangers throughout the life cycle, from the design perspective through operational and safety  assurance stages
This book describes the quest to create novel designs for compact heat exchangers in support of emergent combined cycle nuclear plants. The text opens with a concise explanation of the fundamentals of combined cycles, describing their efficiency impacts on electrical power generation systems. It then covers the implementation of these principles in nuclear reactor power systems, focusing on the role of compact heat exchangers in the combined cycle loop and applying them to the challenges facing actual nuclear power systems.
The various types of compact heat exchanger surfaces and designs are given thorough consideration before the author turns his attention to discussing current and projected reactor systems, and how the novel design of these compact heat e
xchangers can be applied to innovative designs, operation and safety analyses to optimize thermal efficiency. The book is written at an undergraduate level, but will be useful to practicing engineers and scientists as well. 

Product details

Authors Bahman Zohuri
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2016
 
EAN 9783319370750
ISBN 978-3-31-937075-0
No. of pages 366
Weight 649 g
Illustrations XVIII, 366 p. 155 illus., 96 illus. in color.
Subjects Natural sciences, medicine, IT, technology > Technology > Heat, energy and power station engineering

B, ENERGY, Technische Thermodynamik, Thermodynamics, Engineering Thermodynamics, Heat and Mass Transfer, Nuclear Energy, Nuclear power & engineering, Engineering thermodynamics, Heat engineering, Heat transfer, Mass transfer, Waste Heat Recovery

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