Bulletin of the American Physical Society
74th Annual Meeting of the APS Division of Fluid Dynamics
Volume 66, Number 17
Sunday–Tuesday, November 21–23, 2021; Phoenix Convention Center, Phoenix, Arizona
Session Q24: Computational Fluid Dynamics: General II
8:00 AM–10:10 AM,
Tuesday, November 23, 2021
Room: North 224 B
Chair: Daniel Banuti, University of New Mexico
Abstract: Q24.00001 : Effect of the Gauss-Legendre node distribution on wall turbulence in Direct Numerical Simulations of periodic channel flows using a Discontinuous Galerkin method flow solver*
8:00 AM–8:13 AM
Presenter:
Marc Bolinches
Authors:
Marc Bolinches
Todd A Oliver
(University of Texas at Austin)
Karl Shulz
(University of Texas at Austin)
High-order (HO) methods in Computational Fluid Dynamics (CFD) are becoming increasingly popular. This is partly because of their higher accuracy for a given number of degrees of freedom but also due to an increased interest in the scale-resolving simulations of flows in complex geometries enabled by today’s computers. These HO methods are also particularly well suited for their implementation on Graphic Processor Units (GPU) increasing the range of flow complexity that can be solved.
HO methods are generally based on the Finite Element Method (FEM) which requires the definition of points internal to the element to achieve high orders. The choice of node distribution leads to different numerical schemes with different properties.
In this work we analyze the effect of the node distributions over the development of the boundary layer. We do this by simulations of the periodic channel flow with different distributions.
This material is based upon work supported by the Department of Energy, National Nuclear Security Administration under Award Number DE-NA0003969
*This material is based upon work supported by the Department of Energy, National Nuclear Security Administration under Award Number DE-NA0003969
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