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DSMC method on aerodynamic heating and temperature characteristic of Hypersonic rarefied flows

机译:高音稀土流动空气动力加热和温度特性的DSMC方法

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Aerodynamic heating is one of important factors affecting hypersonic aircraft design. The direct simulation Monte Carlo method (DSMC) has evolved years into a powerful numerical technique for the computation of complex, nonequilibrium gas flows. In atmospheric target, nonequilibrium conditions occur at high altitude and in regions of flow fields with small length scales. In this paper, the theoretical basis of the DSMC technique is discussed. In addition, the methods used in DSMC are described for simulation of high temperature, real gas effects and gas-surface interactions. Combined with the solution of heat transfer in material, heat-flux distribution and temperature distribution of the different shape structures was calculated in rarefied conditions.
机译:空气动力学加热是影响超音速飞机设计的重要因素之一。直接仿真蒙特卡罗方法(DSMC)已经发展到了一种强大的数值技术,以计算复杂,非醌气流。在大气目标中,高海拔和流场区域的非Quibibribibim条件发生,具有小的长度尺度。在本文中,讨论了DSMC技术的理论基础。此外,描述了DSMC中使用的方法,用于模拟高温,真实气体效应和气体表面相互作用。结合材料中的热传递溶液,在稀释条件下计算了不同形状结构的热通量分布和温度分布。

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