Stabilization and Dynamic of Premixed Swirling Flames: Prevaporized, Stratified, Partially, and Fully Premixed Regimes - Brossura

Palies, Paul

 
9780128199961: Stabilization and Dynamic of Premixed Swirling Flames: Prevaporized, Stratified, Partially, and Fully Premixed Regimes

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Stabilization and Dynamic of Premixed Swirling Flames: Prevaporized, Stratified, Partially, and Fully Premixed Regimes focuses on swirling flames in various premixed modes (stratified, partially, fully, prevaporized) for the combustor, and development and design of current and future swirl-stabilized combustion systems. This includes predicting capabilities, modeling of turbulent combustion, liquid fuel modeling, and a complete overview of stabilization of these flames in aeroengines. The book also discusses the effects of the operating envelope on upstream fresh gases and the subsequent impact of flame speed, combustion, and mixing, the theoretical framework for flame stabilization, and fully lean premixed injector design.

Specific attention is paid to ground gas turbine applications, and a comprehensive review of stabilization mechanisms for premixed, partially-premixed, and stratified premixed flames. The last chapter covers the design of a fully premixed injector for future jet engine applications.

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Informazioni sull?autore

Paul Palies is Principal Scientist at CFD Research Corporation in Huntsville, Alabama. He is a dedicated aeronautical research scientist and a specialist in propulsion including all aspects of combustion dynamics. He graduated from Ecole Centrale Paris in aerospace and from University of Paris XI in mechanics-physics. He holds a doctorate in combustion from Ecole Centrale Paris. He previously was a senior research scientist at the research center of United Technologies Corporation and worked with Pratt and Whitney’s main combustor team. He has a demonstrated experience in acoustics, combustion and fluid dynamics and is an expert in combustion dynamics applied to laboratory scale combustor and jet engines. He is the reviewer of several international conferences and journals, a full member of the AIAA Propellant and Combustion Technical Committee and the USNC/TAM AIAA Professional Society Representative.

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BCC

Stabilization and Dynamic of Premixed Swirling Flames

Prevaporized, Stratified, Partially, and Fully Premixed Regimes

Paul Palies

CFDRC, Huntsville, AL, USA

Stabilization and Dynamic of Premixed Swirling Flames

focuses on swirling flames in various premixed modes (prevaporized, stratified, partially, and fully premixed) for the combustor and the development and design of current and future swirl-stabilized combustion systems. This includes predicting capabilities, modelling of turbulent combustion, , and a complete overview of the topic of stabilization and combustion dynamics of these flames in aeroengines. The book also discusses the effects of the operating envelope on upstream fresh gases and the subsequent impact on flame speed/combustion/mixing. It presents a theoretical framework for flame stabilization. The last chapter covers the design of a fully premixed injector for future jet engine applications.

Key Features

  • Provides a comprehensive review of stabilization mechanisms for prevaporized, stratified, partially and fully premixed flames
  • Features a complete view of the challenges at the intersection of swirling flame/combustors, requirements and physics of fluids at work enabling the development of future gas turbine engine combustor
  • Describes the phenomenology of premixed combustion, driving mechanisms of combustion instability, and various investigation approaches and includes the presentation of the very latest numerical results and analyses of flashback, lean blowout and combustion instabilities

About the author

Paul Palies is Principal Scientist at CFDRC. He is a dedicated aeronautical research scientist and a specialist in propulsion including all aspects of combustion dynamics. He graduated from Ecole Centrale Paris in aerospace and from University of Paris XI in mechanics-physics. He holds a doctorate in combustion from Ecole Centrale Paris. He previously was a senior research scientist at the research center of United Technologies Corporation and worked with Pratt and Whitney’s main combustor team. He has a demonstrated experience in acoustics, combustion and fluid dynamics and is an expert in combustion dynamics applied to laboratory scale combustor and jet engines. He is the reviewer of several international conferences and journals, a full member of the AIAA Propellant and Combustion Technical Committee and the USNC/TAM AIAA Professional Society Representative.

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