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E-raamat: Flashback Mechanisms in Lean Premixed Gas Turbine Combustion

(Professor of Energy Technology, Duesseldorf University of Applied Sciences, Duesseldorf, Germany), (Group Manager of Combustor Technology, Alstom Ltd., Baden, Switzerland)
  • Formaat: EPUB+DRM
  • Ilmumisaeg: 01-Dec-2014
  • Kirjastus: Academic Press Inc
  • Keel: eng
  • ISBN-13: 9780128008263
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  • Formaat: EPUB+DRM
  • Ilmumisaeg: 01-Dec-2014
  • Kirjastus: Academic Press Inc
  • Keel: eng
  • ISBN-13: 9780128008263
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Blending fuels with hydrogen offers the potential to reduce NOx and CO2 emissions in gas turbines, but doing so introduces potential new problems such as flashback. Flashback can lead to thermal overload and destruction of hardware in the turbine engine, with potentially expensive consequences. The little research on flashback that is available is fragmented.Flashback Mechanisms in Lean Premixed Gas Turbine Combustion by Ali Cemal Benim will address not only the overall issue of the flashback phenomenon, but also the issue of fragmented and incomplete research.
  • Presents a coherent review of flame flashback (a classic problem in premixed combustion) and its connection with the growing trend of popularity of more-efficient hydrogen-blend fuels
  • Begins with a brief review of industrial gas turbine combustion technology
  • Covers current environmental and economic motivations for replacing natural gas with hydrogen-blend fuels

Muu info

A concise but comprehensive book addressing both the overall issue of flashback phenomena in combustion and the issue of fragmented and incomplete research on the subject.
Author Bios vii
Preface ix
Chapter 1 Introduction
1(4)
Chapter 2 Concepts Related to Combustion and Flow in Premix Burners
5(14)
2.1 Laminar Premixed Flames
5(6)
2.2 Turbulent Premixed Flames
11(4)
2.3 Swirl Flow Aerodynamics
15(4)
Chapter 3 Properties of Hydrogen-Containing Fuels
19(6)
3.1 Flammability Limits of Hydrogen Fuel Blends
20(1)
3.2 Laminar Flame Speed of Hydrogen Fuel Blends
21(4)
Chapter 4 An Overview of Flashback Mechanisms
25(2)
Chapter 5 Flashback by Autoignition
27(14)
Chapter 6 Flashback Due to Combustion Instabilities
41(4)
Chapter 7 Flashback Due to Turbulent Flame Propagation in the Core Flow
45(14)
Chapter 8 Flashback Due to Flame Propagation in Boundary Layers
59(14)
8.1 Flame Propagation in Laminar Boundary Layers
59(3)
8.2 Flame Propagation in Turbulent Boundary Layers
62(11)
Chapter 9 Combustion-Induced Vortex Breakdown---Driven Flashback
73(30)
9.1 Flame Propagation in Vortex Tubes and Vortex Rings
74(4)
9.2 CIVB in Gas Turbine Combustors
78(14)
9.3 The Role of Quenching
92(11)
Chapter 10 Flameholding by Fuel Injection Jets
103(10)
10.1 Jet in Cross-Flow
103(1)
10.2 Jet Flames in Cross-Flow
104(9)
References 113(8)
Nomenclature 121