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首页> 外文期刊>AIAA Journal >Hybrid Particle-Continuum Simulations of Hypersonic Flow over a Hollow-Cylinder-Flare Geometry
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Hybrid Particle-Continuum Simulations of Hypersonic Flow over a Hollow-Cylinder-Flare Geometry

机译:空心圆柱扩口几何上高超音速流动的混合粒子连续模拟

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摘要

A modular particle-continuum numerical method is used to simulate steady-state hypersonic flow over a hollow-cylinder-flare geometry. The resulting flowfield involves a mixture of rarefied nonequilibrium flow and high-density continuum flow. The hybrid particle-continuum method loosely couples direct simulation Monte Carlo and Navier-Stokes methods, which operate in different regions, use different mesh densities, and are updated using different-sized time steps. Hybrid numerical results are compared with full particle and full continuum simulations as well as with experimental data. The hybrid particle-continuum simulations are demonstrated to reproduce experimental and full particle simulation results for surface and flowfield properties including velocity slip, temperature jump, thermal nonequilibrium, heating rates, and pressure distributions with high accuracy. The hybrid method, which uses particle simulation next to the surface, is also shown to predict accurate heating rates even when a highly dissipative numerical scheme is used for the continuum solver. For this particular flow, a hybrid simulation is obtained with modest computational savings over full particle simulation.
机译:使用模块化粒子连续谱数值方法来模拟空心圆柱扩口几何形状上的稳态高超声速流动。产生的流场涉及稀疏非平衡流和高密度连续流的混合。混合粒子连续谱方法松散地耦合了直接模拟Monte Carlo和Navier-Stokes方法,它们在不同区域中运行,使用不同的网格密度,并使用不同大小的时间步长进行更新。将混合数值结果与完整粒子和完整连续体模拟以及实验数据进行比较。证明了混合粒子连续模拟可以高精度地重现表面和流场特性的实验和全粒子模拟结果,包括速度滑移,温度跳跃,热不平衡,加热速率和压力分布。即使在连续性求解器中使用高度耗散的数值方案时,也显示了在表面附近使用粒子模拟的混合方法可以预测准确的加热速率。对于这种特殊的流动,获得的混合模拟的计算量要比全粒子模拟的计算量小。

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