
Advanced Gas Turbine Cycles
A Brief Review of Power Generation Thermodynamics
J.H. Horlock(Author)
Pergamon (Publisher)
Published on 18. July 2003
Book
Hardback
224 pages
978-0-08-044273-0 (ISBN)
Description
Primarily this book describes the thermodynamics of gas turbine cycles. The search for high gas turbine efficiency has produced many variations on the simple "open circuit" plant, involving the use of heat exchangers, reheating and intercooling, water and steam injection, cogeneration and combined cycle plants. These are described fully in the text. A review of recent proposals for a number of novel gas turbine cycles is also included. In the past few years work has been directed towards developing gas turbines which produce less carbon dioxide, or plants from which the CO2 can be disposed of; the implications of a carbon tax on electricity pricing are considered. In presenting this wide survey of gas turbine cycles for power generation the author calls on both his academic experience (at Cambridge and Liverpool Universities, the Gas Turbine Laboratory at MIT and Penn State University) and his industrial work (primarily with Rolls Royce, plc.) The book will be essential reading for final year and masters students in mechanical engineering, and for practising engineers.
Reviews / Votes
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More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Elsevier Science & Technology
Target group
Professional and scholarly
Product notice
Laminated cover
Dimensions
Height: 243 mm
Width: 177 mm
Thickness: 14 mm
Weight
572 gr
ISBN-13
978-0-08-044273-0 (9780080442730)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

E-Book
10/2013
Elsevier
€124.00
Available for download
Person
Content
A brief review of power generation thermodynamics. Reversibility and Availability. Basic gas turbine cycles. Cycle effeciency with turbine cooling. Full calculations of plant effeciency. Wet gas turbine plants. The combined cycle gas turbine (CCGT). Novel gas turbine cycles. The gas turbine as a cogeneration plant.