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Temporal-adaptive Euler/Navier-Stokes algorithm for unsteady aerodynamic analysis of airfoils using unstructured dynamic meshes

机译:基于非结构化动态网格的机翼非稳态气动分析的时间自适应Euler / Navier-Stokes算法

摘要

A temporal adaptive algorithm for the time-integration of the two-dimensional Euler or Navier-Stokes equations is presented. The flow solver involves an upwind flux-split spatial discretization for the convective terms and central differencing for the shear-stress and heat flux terms on an unstructured mesh of triangles. The temporal adaptive algorithm is a time-accurate integration procedure which allows flows with high spatial and temporal gradients to be computed efficiently by advancing each grid cell near its maximum allowable time step. Results indicate that an appreciable computational savings can be achieved for both inviscid and viscous unsteady airfoil problems using unstructured meshes without degrading spatial or temporal accuracy.
机译:提出了一种二维二维Euler或Navier-Stokes方程时间积分的时间自适应算法。流动求解器包括对流项的迎风分流空间离散化,以及非结构三角形网格上的剪应力和热通量项的中心差分。时间自适应算法是时间精确的积分过程,该过程允许通过将每个网格单元推进到其最大允许时间步长附近来有效地计算具有高空间和时间梯度的流。结果表明,在不降低空间或时间精度的情况下,使用非结构化网格可以解决不粘和粘稠的非定常翼型问题,并节省大量计算量。

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