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Verification of numerical codes for modeling of the flow and isotope separation in gas centrifuges

机译:验证用于气体离心机中流动和同位素分离建模的数字代码

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摘要

A new method for verification of numerical codes for modeling of gas flow and isotope separation in gas centrifuges (GC) is proposed. The method is based on a semi-analytical solution of the problem of gas circulation in the rotating cylinder (rotor) with an infinite length. The problem is solved for a small amplitude perturbation of the rigid rotation of the gas. It is assumed that the circulation drives, thermal or mechanical origin, vary with the coordinate along the rotation axis harmonically. Solution of the system of equations in partial derivatives is reduced to the solution of the system of ordinary differential equations which can be solved with any accuracy by well known methods. The gas circulation in the solution consists of the system of vortexes periodically located along the rotation axis. The comparison of the semi-analytical solution with the numerical one is possible provided that periodical boundary conditions are specified at the end caps of the rotor of GC. Special attention is paid to the case when the conventional rigid wall boundary conditions are specified at the end caps of the rotor. It is shown that the developed semi-analytical solution can be applied for the verification of the numerical codes in this case as well.
机译:提出了一种用于验证气体离心机(GC)中气体流动和同位素分离建模数值代码的新方法。该方法基于具有无限长度的旋转圆筒(转子)中气体循环问题的半解析解。解决了气体刚性旋转的小幅度扰动的问题。假定热或机械原点的循环驱动随着沿旋转轴的坐标而谐波变化。偏导数方程组的解被简化为常微分方程组的解,这可以通过众所周知的方法以任何精度求解。溶液中的气体循环由沿旋转轴周期性设置的涡旋系统组成。如果在GC转子的端盖处指定了周期性边界条件,则可以将半解析解与数值解进行比较。当在转子的端盖上规定了常规的刚性壁边界条件时,应特别注意这种情况。结果表明,在这种情况下,所开发的半解析解也可以应用于数字代码的验证。

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