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Unstructured LES of Reacting Multiphase Flows in Realistic Gas Turbine CombustorsAs part of the Accelerated Strategic Computing Initiative (ASCI) program, an accurate and robust simulation tool is being developed to perform high-fidelity LES studies of multiphase, multiscale turbulent reacting flows in aircraft gas turbine combustor configurations using hybrid unstructured grids. In the combustor, pressurized gas from the upstream compressor is reacted with atomized liquid fuel to produce the combustion products that drive the downstream turbine. The Large Eddy Simulation (LES) approach is used to simulate the combustor because of its demonstrated superiority over RANS in predicting turbulent mixing, which is central to combustion. This paper summarizes the accomplishments of the combustor group over the past year, concentrating mainly on the two major milestones achieved this year: 1) Large scale simulation: A major rewrite and redesign of the flagship unstructured LES code has allowed the group to perform large eddy simulations of the complete combustor geometry (all 18 injectors) with over 100 million control volumes; 2) Multi-physics simulation in complex geometry: The first multi-physics simulations including fuel spray breakup, coalescence, evaporation, and combustion are now being performed in a single periodic sector (1/18th) of an actual Pratt & Whitney combustor geometry.
Document ID
20040031696
Acquisition Source
Headquarters
Document Type
Other
Authors
Ham, Frank
(Stanford Univ. Stanford, CA, United States)
Apte, Sourabh
(Stanford Univ. Stanford, CA, United States)
Iaccarino, Gianluca
(Stanford Univ. Stanford, CA, United States)
Wu, Xiao-Hua
(Stanford Univ. Stanford, CA, United States)
Herrmann, Marcus
(Stanford Univ. Stanford, CA, United States)
Constantinescu, George
(Iowa Univ. IA, United States)
Mahesh, Krishnan
(Minnesota Univ. MN, United States)
Moin, Parviz
(Stanford Univ. Stanford, CA, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2003
Publication Information
Publication: Center for Turbulence Research Annual Research Briefs 2003
Subject Category
Fluid Mechanics And Thermodynamics
Funding Number(s)
CONTRACT_GRANT: NCC2-1371
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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