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A linearization of Mieussens's discrete velocity model for kinetic equations

机译:Mieussens动力学方程离散速度模型的线性化

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A linearization is developed for Mieussens's discrete velocity model (see, e.g., [L. Mieussens, Discrete-velocity models and numerical schemes for the Boltzmann-BGK equation in plane and axisymmetric geometries, J. Comput. Phys. 162 (2000) 429-466]) for kinetic equations. The basic idea is to use a linearized expression of the reference distribution function in the kinetic equation, instead of its exact expression, in the numerical scheme. This modified scheme is applied to various kinetic models, which include the BGK model, the ES-BGK model, the BGK model with velocity-dependent collision frequency, and the recently proposed ES-BGK model with velocity-dependent collision frequency. One-dimensional stationary shock waves and stationary planar Couette flow, which are two benchmark problems for rarefied gas flows, are chosen as test examples. Molecules are modeled as Maxwell molecules and hard sphere molecules. It is found that results from the modified scheme are very similar to results from the original Mieussens's numerical scheme for various kinetic equations in almost all tests we did, while, depending on the test case, 20-40 percent of computational time can be saved. The application of the method is not affected by the Knudsen number and molecular models, but is restricted to lower Mach numbers for the BGK (or the ES-BGK) model with velocity-dependent collision frequency.
机译:针对Mieussens的离散速度模型开发了线性化方法(例如,参见[L. Mieussens,离散速度模型和平面和轴对称几何中Boltzmann-BGK方程的数值方案,J。Comput。Phys。162(2000)429- 466])。基本思想是在动力学方案中使用动力学方程式中参考分布函数的线性表达式,而不是其精确表达式。该改进方案应用于各种动力学模型,包括BGK模型,ES-BGK模型,具有与速度有关的碰撞频率的BGK模型以及最近提出的具有与速度有关的碰撞频率的ES-BGK模型。选择一维固定冲击波和固定平面库埃特流量作为稀薄气体流量的两个基准问题,作为测试示例。分子被建模为麦克斯韦分子和硬球分子。我们发现,在几乎所有我们进行的测试中,修改后的方案的结果与原始Mieussens数值方案的各种动力学方程式的结果非常相似,而根据测试用例,可以节省20-40%的计算时间。该方法的应用不受Knudsen数和分子模型的影响,但限于速度依赖的碰撞频率的BGK(或ES-BGK)模型的较低马赫数。

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