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首页> 外文期刊>International Journal of Heat and Mass Transfer >Shock wave diffraction about a wedge in a gas-microdroplet mixture
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Shock wave diffraction about a wedge in a gas-microdroplet mixture

机译:气体-微滴混合物中楔形物的冲击波衍射

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Shock wave interacts with the droplets as a high-speed flight vehicle penetrates cloud or rain storm in the earth's atmosphere. Interaction of the shock with the gas-droplet two-phase medium significantly affects the aerodynamic performance of the flight vehicle. In the present paper, we investigate the aerodynamic field and wall variables as the moving shock wave diffracts over a wedge in the droplet-gas mixture. We used the compressible two-fluid model equations that have been solved by the HLL-based weighted average flux (WAF) method. The viscous drag force and the heat transfer terms have been included in the model to let the gas and the droplet phases interact. We investigate the effects of the three parameters associated with the microdroplets: the void fraction, the size and the material. We elaborate how the relaxation zone created by the shock wave diffraction is structured and changed in the droplet-gas mixture.
机译:当高速飞行器穿透地球大气层中的云或暴雨时,冲击波与液滴相互作用。冲击与液滴两相介质的相互作用显着影响飞行器的空气动力学性能。在本文中,我们研究了气动冲击场和壁面变量,它们是运动的冲击波在液滴-气体混合物中的楔形上衍射时产生的。我们使用通过基于HLL的加权平均通量(WAF)方法求解的可压缩两流体模型方程。模型中包括粘性阻力和热传递项,以使气相和液滴相相互作用。我们研究了与微滴相关的三个参数的影响:空隙率,大小和材料。我们阐述了在液滴-气体混合物中由冲击波衍射产生的弛豫区是如何构成和变化的。

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