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DSMC Simulation of Binary Rarefied Gas Flows between Parallel Plates and Comparison to Other Methods

机译:DSMC模拟二元稀土气体在平行板之间流动并与其他方法进行比较

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The direct simulation Monte-Carlo (DSMC) method has been developed to solve the Boltzmann equation for binary gas mixtures with hard-sphere molecules. The method is applied for pressure and concentration driven flows between two parallel plates. The flow in both cases is maintained by external force, of which expression is derived from the linearized description of the flow. Simulations have been performed in the low Mach number limit in order to test the method against the accurate solution of the linearzied Boltzmann equation (LBE) with hard-sphere molecules. Very good agreement is obtained between the two situations. The results provided by the present method have also been compared to the corresponding ones of the McCormack kinetic model. It is shown that the agreement between the results obtained from the DSMC method with hard-sphere molecules and the McCormack kinetic model is satisfactory. Hence, it is concluded that the McCormack kinetic model provides reliable results for isothermal flows in comparison to the linearized Boltzmann equation for hard-sphere gases.
机译:已经开发了直接模拟Monte-Carlo(DSMC)方法以解决具有硬球分子的二元气体混合物的Boltzmann方程。该方法用于压力,浓缩驱动的两个平行板之间的流动。两种情况下的流动由外力维持,其中表达式从流动的线性化描述导出。已经在低马赫数限制中进行了模拟,以便用硬球分子测定线性玻璃钢板等式(LBE)的准确解决方案。在两种情况下获得了非常好的协议。通过本方法提供的结果也与相应的McCormack动力学模型进行了比较。结果表明,从具有硬球分子的DSMC方法和McCormack动力学模型获得的结果之间的协议令人满意。因此,结论是,与硬球气体的线性化Boltzmann方程相比,McCormack动力学模型为等温流提供了可靠的结果。

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