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David S-K. Ting - Compressed Air Energy Storage: Types, systems and applications

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David S-K. Ting Compressed Air Energy Storage: Types, systems and applications
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Compressed Air Energy Storage: Types, systems and applications: summary, description and annotation

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The intermittency of renewable energy sources is making increased deployment of storage technology necessary. Technologies are needed with high round-trip efficiency and at low cost to allow renewables to undercut fossil fuels. The cost of lithium batteries has fallen, but producing them comes with a substantial carbon footprint, as well as a cost to the local environment.

Compressed air energy storage (CAES) uses excess electricity, particularly from wind farms, to compress air. Re-expansion of the air then drives machinery to recoup the electric power. Prototypes have capacities of several hundred MW. Challenges lie in conserving the thermal energy associated with compressing air and leakage of that heat, materials, power electronics, connection with the power generator, and grid integration.

This comprehensive book provides a systematic overview of the current state of CAES technology. After an introduction to motivation and principles, the key components are covered, and then the principal types of systems in the order of technical maturity: diabatic, adiabatic, and isothermal. Experts from industry write about their experiences with existing major systems and prototypes. Economic aspects, power electronics and machinery, as well as special systems for offshore applications, are dealt with.

Researchers in academia and industry alike, in particular at energy storage technology manufacturers and utilities, as well as advanced students and energy experts in think tanks will find this work valuable reading.

David S-K. Ting: author's other books


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Contents

David S-K. Ting and Jacqueline A. Stagner

Mohsen Mehri

Xinjing Zhang, Haisheng Chen, Yujie Xu, Xuezhi Zhou and Huan Guo

Mehdi Ebrahimi, David Brown, David S-K. Ting, Rupp Carriveau and Andrew McGillis

Li Li and Xiao Lin

Marcos A. Salvador, Lenon Schmitz, Telles B. Lazzarin and Roberto F. Coelho

Bernardo Llamas, Eva M. Blanco-Brox, Mara C. Castaeda and Gabriel Barthelemy

Jieren Ke, Wei He, Mark Dooner, Xing Luo and Jihong Wang

Thabo G. Hlalele, Jiangfeng Zhang, Raj Naidoo and Ramesh C. Bansal

Erik R. Steeb and George Xydis,

Raghuveera Sai Sarath Dittakavi, David S-K. Ting, Rupp Carriveau and Mehdi Ebrahimi

Daniel Chidiebere Onwuchekwa

IET ENERGY ENGINEERING 184

Compressed Air Energy Storage

Compressed Air Energy
Storage

Types, systems and applications

Edited by
David S-K. Ting and Jacqueline A. Stagner

The Institution of Engineering and Technology

Published by The Institution of Engineering and Technology, London, United Kingdom

The Institution of Engineering and Technology is registered as a Charity in England & Wales (no. 211014) and Scotland (no. SC038698).

The Institution of Engineering and Technology 2021

First published 2021

This publication is copyright under the Berne Convention and the Universal Copyright Convention. All rights reserved. Apart from any fair dealing for the purposes of research or private study, or criticism or review, as permitted under the Copyright, Designs and Patents Act 1988, this publication may be reproduced, stored or transmitted, in any form or by any means, only with the prior permission in writing of the publishers, or in the case of reprographic reproduction in accordance with the terms of licences issued by the Copyright Licensing Agency. Enquiries concerning reproduction outside those terms should be sent to the publisher at the undermentioned address:

The Institution of Engineering and Technology

Michael Faraday House

Six Hills Way, Stevenage

Herts, SG1 2AY, United Kingdom

www.theiet.org

While the authors and publisher believe that the information and guidance given in this work are correct, all parties must rely upon their own skill and judgement when making use of them. Neither the authors nor publisher assumes any liability to anyone for any loss or damage caused by any error or omission in the work, whether such an error or omission is the result of negligence or any other cause. Any and all such liability is disclaimed.

The moral rights of the authors to be identified as authors of this work have been asserted by them in accordance with the Copyright, Designs and Patents Act 1988.

British Library Cataloguing in Publication Data

A catalogue record for this product is available from the British Library

ISBN 978-1-83953-195-8 (Hardback)

ISBN 978-1-83953-196-5 (PDF)

Typeset in India by MPS Limited

Printed in the UK by CPI Group (UK) Ltd, Croydon

Other volumes in this series:

Volume 1Power Circuit Breaker Theory and Design C.H. Flurscheim (Editor)
Volume 4Industrial Microwave Heating A.C. Metaxas and R.J. Meredith
Volume 7Insulators for High Voltages J.S.T. Looms
Volume 8Variable Frequency AC Motor Drive Systems D. Finney
Volume 10SF6 Switchgear H.M. Ryan and G.R. Jones
Volume 11Conduction and Induction Heating E.J. Davies
Volume 13Statistical Techniques for High Voltage Engineering W. Hauschild and W. Mosch
Volume 14Uninterruptible Power Supplies J. Platts and J.D. St Aubyn (Editors)
Volume 15Digital Protection for Power Systems A.T. Johns and S.K. Salman
Volume 16Electricity Economics and Planning T.W. Berrie
Volume 18Vacuum Switchgear A. Greenwood
Volume 19Electrical Safety: A guide to causes and prevention of hazards J. Maxwell Adams
Volume 21Electricity Distribution Network Design, 2nd Edition E. Lakervi and E.J. Holmes
Volume 22Artificial Intelligence Techniques in Power Systems K. Warwick, A.O. Ekwue and R. Aggarwal (Editors)
Volume 24Power System Commissioning and Maintenance Practice K. Harker
Volume 25Engineers Handbook of Industrial Microwave Heating R.J. Meredith
Volume 26Small Electric Motors H. Moczala et al.
Volume 27ACDC Power System Analysis J. Arrillaga and B.C. Smith
Volume 29High Voltage Direct Current Transmission, 2nd Edition J. Arrillaga
Volume 30Flexible AC Transmission Systems (FACTS) Y-H. Song (Editor)
Volume 31Embedded generation N. Jenkins et al.
Volume 32High Voltage Engineering and Testing, 2nd Edition H.M. Ryan (Editor)
Volume 33Overvoltage Protection of Low-Voltage Systems, Revised Edition P. Hasse
Volume 36Voltage Quality in Electrical Power Systems J. Schlabbach et al.
Volume 37Electrical Steels for Rotating Machines P. Beckley
Volume 38The Electric Car: Development and future of battery, hybrid and fuel-cell cars M. Westbrook
Volume 39Power Systems Electromagnetic Transients Simulation J. Arrillaga and N. Watson
Volume 40Advances in High Voltage Engineering M. Haddad and D. Warne
Volume 41Electrical Operation of Electrostatic Precipitators K. Parker
Volume 43Thermal Power Plant Simulation and Control D. Flynn
Volume 44Economic Evaluation of Projects in the Electricity Supply Industry H. Khatib
Volume 45Propulsion Systems for Hybrid Vehicles J. Miller
Volume 46Distribution Switchgear S. Stewart
Volume 47Protection of Electricity Distribution Networks, 2nd Edition J. Gers and E. Holmes
Volume 48Wood Pole Overhead Lines B. Wareing
Volume 49Electric Fuses, 3rd Edition A. Wright and G. Newbery
Volume 50Wind Power Integration: Connection and system operational aspects B. Fox et al.
Volume 51Short Circuit Currents J. Schlabbach
Volume 52Nuclear Power J. Wood
Volume 53Condition Assessment of High Voltage Insulation in Power System Equipment R.E. James and Q. Su
Volume 55Local Energy: Distributed generation of heat and power J. Wood
Volume 56Condition Monitoring of Rotating Electrical Machines P. Tavner, L. Ran, J. Penman and H. Sedding
Volume 57The Control Techniques Drives and Controls Handbook, 2nd Edition B. Drury
Volume 58Lightning Protection V. Cooray (Editor)
Volume 59Ultracapacitor Applications J.M. Miller
Volume 62Lightning Electromagnetics V. Cooray
Volume 63Energy Storage for Power Systems, 2nd Edition A. Ter-Gazarian
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