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Numerical Simulation of the Recirculation Flow during the Supersonic Separation of Moving Bodies

机译:移动体超音速分离过程中再循环流动的数值模拟

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The features of a flow generated during the injection of a supersonic small body (pellet) from the channel of a spherically blunted cylinder into a supersonic flow are studied. The cylinder’s diameter is 35 times larger than the diameter of the injected body. The numerical simulation is carried out using multilevel Cartesian grids with the local adaptation based on the wavelet analysis. The body’s motion is simulated by the free boundary method. The dynamics of the moving body’s interaction with the bow shock from the cylinder, the formation of the reverse flow region between the bodies, its evolution and disappearance, and the subsequent establishment of a stationary flow are studied. The decrease of the main body’s drag to 20% of the initial value is demonstrated.
机译:研究了从球形钝的气缸的通道注入超音速小体(颗粒)期间产生的流动的特征。 气缸的直径比注入体的直径大35倍。 数值模拟使用多级笛卡尔电网进行基于小波分析的本地自适应进行。 通过自由边界方法模拟身体的运动。 研究了移动体与圆柱体的弓形冲击的相互作用的动态,研究了身体之间的反向流动区域,其进化和消失的逆流区域,以及随后的静止流动的建立。 展示了主体拖拉至20%的初始值的降低。

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