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Three-Dimensional Navier-Stokes Calculations Using the Modified Space-Time CESE Method

机译:修正时空CESE方法的三维Navier-Stokes计算

摘要

The space-time conservation element solution element (CESE) method is modified to address the robustness issues of high-aspect-ratio, viscous, near-wall meshes. In this new approach, the dependent variable gradients are evaluated using element edges and the corresponding neighboring solution elements while keeping the original flux integration procedure intact. As such, the excellent flux conservation property is retained and the new edge-based gradients evaluation significantly improves the robustness for high-aspect ratio meshes frequently encountered in three-dimensional, Navier-Stokes calculations. The order of accuracy of the proposed method is demonstrated for oblique acoustic wave propagation, shock-wave interaction, and hypersonic flows over a blunt body. The confirmed second-order convergence along with the enhanced robustness in handling hypersonic blunt body flow calculations makes the proposed approach a very competitive CFD framework for 3D Navier-Stokes simulations.
机译:修改了时空守恒元素解元素(CESE)方法,以解决高纵横比,粘性,近壁网格的鲁棒性问题。在这种新方法中,使用变量边缘和相应的相邻解元素评估因变量梯度,同时保持原始通量积分过程不变。因此,保留了优异的通量守恒特性,并且基于边缘的新梯度评估显着提高了在三维Navier-Stokes计算中经常遇到的高纵横比网格的鲁棒性。对于倾斜的声波传播,冲击波相互作用以及钝体上的高超音速流动,证明了所提出方法的准确性。经证实的二阶收敛性以及在处理高超音速钝体流计算中的增强的鲁棒性,使得所提出的方法成为用于3D Navier-Stokes模拟的非常有竞争力的CFD框架。

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    Chang Chau-lyan;

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  • 年度 2007
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