Verification and Validation of the K-Kl Turbulence Model in Fun3d and Cfl3d Codes

Verification and Validation of the K-Kl Turbulence Model in Fun3d and Cfl3d Codes

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Publisher's Synopsis

The implementation of the k-kL turbulence model using multiple computational uid dy- namics (CFD) codes is reported herein. The k-kL model is a two-equation turbulence model based on Abdol-Hamid's closure and Menter's modi cation to Rotta's two-equation model. Rotta shows that a reliable transport equation can be formed from the turbulent length scale L, and the turbulent kinetic energy k. Rotta's equation is well suited for term-by-term mod- eling and displays useful features compared to other two-equation models. An important di erence is that this formulation leads to the inclusion of higher-order velocity derivatives in the source terms of the scale equations. This can enhance the ability of the Reynolds- averaged Navier-Stokes (RANS) solvers to simulate unsteady ows. The present report documents the formulation of the model as implemented in the CFD codes Fun3D and CFL3D. Methodology, veri cation and validation examples are shown. Attached and sepa- rated ow cases are documented and compared with experimental data. The results show generally very good comparisons with canonical and experimental data, as well as matching results code-to-code. The results from this formulation are similar or better than results using the SST turbulence model. Abdol-Hamid, Khaled S. and Carlson, Jan-Renee and Rumsey, Christopher L. Langley Research Center NASA-TM-2015-218968, NF1676L-22522, L-20609

Book information

ISBN: 9781794002876
Publisher: Amazon Digital Services LLC - KDP Print US
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 32
Weight: 100g
Height: 279mm
Width: 216mm
Spine width: 2mm