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Three-dimensional solutions of the Boltzmann equation: Heat transport at long mean free paths - art. no. 056708

机译:玻尔兹曼方程的三维解:长平均自由程的传热-艺术。没有。 056708

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摘要

A kinetic transport model for arbitrary meshes, is presented and the method is applied to heat transfer in a rare gas between, parallel plates at different temperatures. The method uses "propagating" rays for tracking the transport of particles throughout the phase space in three-dimensional spatial meshes. Two collision operators are tested with the model, a simple monoenergetic operator and the Bhatnagar-Gross-Krook (BGK) model. Results are generated for several Knudsen numbers in the transition regime. The results of the kinetic simulation, which employ the BGK operator, compare favorably with those of a finite-difference solution of the Boltzmann equation using the BGK collision, operator [T. Ohwada, Phys. Fluids 8, 2153 (1996)]. In addition, the results for both collision models exhibit fair agreement, with experimental data of Teagan and Springer. [References: 22]
机译:提出了任意网格的动力学传输模型,并将该方法应用于不同温度下平行板之间稀有气体中的热传递。该方法使用“传播”射线在三维空间网格中跟踪整个相空间中粒子的传输。该模型测试了两个碰撞算子,一个简单的单能算子和Bhatnagar-Gross-Krook(BGK)模型。在过渡状态下生成了几个克努森数的结果。使用BGK算子的动力学模拟结果与使用BGK碰撞算子[T.]的Boltzmann方程的有限差分解的结果相比较。大和田流体8,2153(1996)]。此外,两个碰撞模型的结果与Teagan和Springer的实验数据都显示出合理的一致性。 [参考:22]

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