Test code for the assessment and improvement of Reynolds stress models
M. W. Rubesin, J. R. Viegas, D. Vandromme, H. Ha Minh
Abstract
M. W. Rubesin, J. R. Viegas, D. Vandromme, H. Ha Minh
Abstract
An existing two-dimensional, compressible flow, Navier-Stokes computer code, containing a full Reynolds stress turbulence model, was adapted for use as a test bed for assessing and improving turbulence models based on turbulence simulation experiments. To date, the results of using the code in comparison with simulated channel flow and over an oscillating flat plate have shown that the turbulence model used in the code needs improvement for these flows. It is also shown that direct simulation of turbulent flows over a range of Reynolds numbers are needed to guide subsequent improvement of turbulence models.
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An existing two-dimensional, compressible flow, Navier-Stokes computer code, containing a full Reynolds stress turbulence model, was adapted for use as a test bed for assessing and improving turbulence models based on turbulence simulation experiments. To date, the results of using the code in comparison with simulated channel flow and over an oscillating flat plate have shown that the turbulence model used in the code needs improvement for these flows. It is also shown that direct simulation of turbulent flows over a range of Reynolds numbers are needed to guide subsequent improvement of turbulence models.
Key concepts: Turbulence, Reynolds stress equation model, K-epsilon turbulence model, Reynolds stress, Reynolds decomposition, Reynolds number, K-omega turbulence model, Mechanics