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Monte Carlo simulation of nonlinear Couette flow in a dilute gas

机译:稀薄气体中非线性Couette流的蒙特卡洛模拟

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The direct simulation Monte Carlo method is applied to solve the Boltzmann equation in the steady planar Couette flow for Maxwell molecules and hard spheres. Nonequilibrium boundary conditions based on the solution of the Bhatnagar-Gross-Krook (BGK) model for the Couette flow are employed to diminish the influence of finite-size effects. Non-Newtonian properties are characterized by five independent generalized transport coefficients: a viscosity function, a thermal conductivity function, two viscometric functions, and a cross coefficient measuring the heat flux orthogonal to the thermal gradient. These coefficients depend nonlinearly on the shear rate. The simulation results are compared with theoretical predictions given by the Grad method and the BGK and the ellipsoidal statistical (ES) models. It is found that the kinetic models present a good agreement with the simulation, especially in the case of the ES model, while the Grad method is only qualitatively reliable for the momentum transport. In addition, the velocity distribution function is also measured and compared with the BGK and ES distributions. (C) 2000 American Institute of Physics. [S1070-6631(00)00811-4]. [References: 22]
机译:应用直接模拟蒙特卡罗方法求解麦克斯韦分子和硬球体在稳定平面Couette流中的Boltzmann方程。采用基于库特流的Bhatnagar-Gross-Krook(BGK)模型解的非平衡边界条件来减小有限尺寸效应的影响。非牛顿特性的特征在于五个独立的广义传输系数:粘度函数,导热率函数,两个粘度函数以及测量与热梯度正交的热通量的交叉系数。这些系数非线性地取决于剪切速率。仿真结果与Grad方法,BGK和椭圆统计(ES)模型给出的理论预测进行了比较。发现动力学模型与仿真具有良好的一致性,特别是在ES模型的情况下,而Grad方法对于动量传递仅在质量上可靠。另外,还测量了速度分布函数并将其与BGK和ES分布进行比较。 (C)2000美国物理研究所。 [S1070-6631(00)00811-4]。 [参考:22]

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