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Some Applications of WCNS-E-5 on Shock-Wave/Boundary- Layer Interactions and Aerodynamic Heating Prediction in Hypersonic Flows

机译:WCNS-E-5在高超音速流中冲击波/边界层相互作用和空气动力学加热预测中的一些应用

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The explicit fifth-order weighted compact nonlinear scheme (WCNS-E-5) developed by Deng shows good dispersive and dissipative features, as well as robustness capturing discontinuities. In this paper some application studies of WCNS-E-5 are taken on shock-wave/boundary-layer interactions and aerodynamic heating prediction in hypersonic flows. Some simulations are done on three examples both with finite difference method of WCNS-E-5 and second-order finite volume method which is very common in engineering use. Some comparisons are made on grid convergence between the two methods through a deal of numerical tests on hollow cylinder-flare flow. Some more comparisons are made on the predictions for the aerodynamic heating over two hypersonic vehicle configurations using multi block grids, which are a blunt cone at mach 10.6 and a double-ellipsoid at mach 8.15.
机译:邓(Deng)开发的显式五阶加权紧致非线性方案(WCNS-E-5)具有良好的分散和耗散特性,以及鲁棒性捕获不连续性。在本文中,对WCNS-E-5的一些应用研究进行了研究,以研究高超声速流中的冲击波/边界层相互作用和空气动力学加热预测。在三个实例上都进行了一些仿真,包括WCNS-E-5的有限差分法和工程应用中非常普遍的二阶有限体积法。通过对空心圆柱扩口流的数值测试,对两种方法之间的网格收敛进行了一些比较。使用多块网格对两种高超音速飞行器配置的空气动力学加热的预测进行了更多的比较,这些网格是在10.6马赫的钝锥和在8.15马赫的双椭圆体。

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