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Unsteady combustor physics

Author: Timothy C Lieuwen
Publisher: Cambridge ; New York : Cambridge University Press, 2013.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Developing clean, sustainable energy systems is a pre-eminent issue of our time. Most projections indicate that combustion-based energy conversion systems will continue to be the predominant approach for the majority of our energy usage. Unsteady combustor issues present the key challenge associated with the development of clean, high-efficiency combustion systems such as those used for power generation, heating or  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
(DLC) 2012009207
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Timothy C Lieuwen
ISBN: 9781283638647 1283638649 9781139059961 1139059963
OCLC Number: 816243495
Description: 1 online resource (xix, 405 pages) : illustrations
Contents: 1. Overview and basic equations; 2. Decomposition and evolution of disturbances; 3. Hydrodynamic flow stability part I: introduction; 4. Hydrodynamic flow stability part II: common combustor flowfields; 5. Acoustic wave propagation part I: basic concepts; 6. Acoustic wave propagation part II: heat release, complex geometry, and mean flow effects; 7. Flame-flow interactions; 8. Ignition; 9. Internal flame processes; 10. Flame stabilization, flashback, flameholding and blowoff; 11. Forced response part I: flamelet dynamics; 12. Forced response part II: heat release dynamics.
Responsibility: Tim C. Lieuwen.

Abstract:

This book concerns unsteady combusting flows, emphasising system dynamics that occur at the intersection of the combustion, fluid mechanics and acoustics disciplines - in essence, combustor physics.  Read more...

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'... a text that is very accessible and ... a valuable reference for the seasoned researcher ... can act as an introduction to combustion for those coming strictly from a physical acoustics or fluid Read more...

 
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