Velocity transformation for compressible wall-bounded turbulent flows with and without heat transfer
ORAL
Abstract
We propose a transformation that maps mean velocity profiles of compressible wall-bounded turbulent flows to the incompressible law of the wall. Unlike existing approaches, the proposed transformation successfully collapses, without specific tuning, numerical simulation data from fully developed channel and pipe flows, and boundary layers with or without heat transfer. In all these cases, the transformation is successful across the entire inner layer of the boundary layer (including the viscous sublayer, buffer layer, and logarithmic layer), recovers the asymptotically exact near-wall behavior in the viscous sublayer, and is consistent with the near balance of turbulence production and dissipation in the logarithmic region of the boundary layer. The performance of the transformation is verified for compressible wall-bounded flows with edge Mach numbers ranging from 0 to 15 and friction Reynolds numbers ranging from 200 to 2000.
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Publication: Accepted for publication in the Proceedings of the National Academy of Sciences
Presenters
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Kevin P Griffin
Center for Turbulence Research, Center for Turbulence Research, Stanford University
Authors
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Kevin P Griffin
Center for Turbulence Research, Center for Turbulence Research, Stanford University
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Lin Fu
Center for Turbulence Research, currently at Hong Kong University of Science and Technology
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford University, Center for Turbulence Research, Stanford Univ