UFR 3-36 Evaluation: Difference between revisions
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with the wall pressure <math> p </math>, the freestream pressure <math>p_\infty</math>, the freestream density <math>\rho_\infty</math>, the freestream velocity <math>U_\infty</math> and the wall shear stress <math>\tau_w</math>. | with the wall pressure <math> p </math>, the freestream pressure <math>p_\infty</math>, the freestream density <math>\rho_\infty</math>, the freestream velocity <math>U_\infty</math> and the wall shear stress <math>\tau_w</math>. | ||
<div id="figure4"></div> | |||
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|[[Image:Figure4 uUin.png|370px]]||[[Image:Figure4 cp.png|370px]] | |||
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!align="center" colspan="2"|Figure 3: velocity profiles along x-axis. Solid line: uDNS, dashed line: SSGLRR-<math>\omega</math>, dashdotted line: k-<math>\omega</math> | |||
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Revision as of 16:49, 7 December 2022
HiFi-TURB-DLR rounded step
Semi-confined flows
Underlying Flow Regime 3-36
Evaluation
The RANS simulations described in a previous section are compared and assessed to uDNS computation results preformed by UNIBG. The setup and results of this uDNS computation can be found under Lib:DNS 1-5.
Comparison of uDNS results with RANS results
Figure 3: Skin friction and pressure coefficient on the body wall. Solid line: uDNS, dashed line: SSGLRR-, dashdotted line: k- |
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Non-dimensional quantities:
- Pressure coefficient:
- Skin-friction coefficient:
with the wall pressure , the freestream pressure , the freestream density , the freestream velocity and the wall shear stress .
File:Figure4 cp.png | |
Figure 3: velocity profiles along x-axis. Solid line: uDNS, dashed line: SSGLRR-, dashdotted line: k- |
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Contributed by: Erij Alaya and Cornelia Grabe — Deutsches Luft-und Raumfahrt Zentrum (DLR)
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