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CFD SIMULATION OF 3D FLOWFIELD IN A GAS CENTRIFUGE

机译:气体离心机中3D流场的CFD模拟

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A CFD method was used to study the whole flow field in a gas centrifuge. In this paper, the VSM (Vector Splitting Method) of the FVM (Finite Volume Method) was used to solve the 3D Navier-Stokes equations. An implicit second-order upwind scheme was adopted. The numerical simulation was successfully performed on a parallel cluster computer and a convergence result was obtained. The simulation shows that: in the withdrawal chamber, a strong detached shock wave is formed in front of the scoop; as the radial position increases, the shock becomes stronger and the distance to scoop front surface is smaller. An oblique shock forms in the clearance between the scoop and the centrifuge wall; behind the shock-wave, the radially-inward motion of gas is induced because of the imbalance of the pressure gradient and the centrifugal force. In the separation chamber, a countercurrent is introduced. This indicates that CFD method can be used to study the complex three-dimensional flow field of gas centrifuges.
机译:CFD方法用于研究气体离心机的整个流场。在本文中,使用FVM(有限体积法)的VSM(矢量分裂法)求解3D Navier-Stokes方程。采用隐式二阶迎风方案。在并行集群计算机上成功进行了数值模拟,并获得了收敛结果。仿真表明:在出水室内,水勺前方形成了强烈的分离冲击波。随着径向位置的增加,冲击会更强,并且与铲子前表面的距离更小。铲子和离心机壁之间的间隙会产生倾斜冲击;在冲击波后面,由于压力梯度和离心力的不平衡而引起了气体的径向向内运动。在分离室中引入逆流。这表明CFD方法可用于研究气体离心机的复杂三维流场。

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