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Performance evaluation of Maxwell and Cercignani-Lampis gas-wall interaction models in the modeling of thermally driven rarefied gas transport

机译:Maxwell和Cercignani-Lampis气壁相互作用模型在热驱动稀薄气体传输模型中的性能评估

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摘要

A systematic study on the performance of two empirical gas-wall interaction models, the Maxwell model and the Cercignani-Lampis (CL) model, in the entire Knudsen range is conducted. The models are evaluated by examining the accuracy of key macroscopic quantities such as temperature, density, and pressure, in three benchmark thermal problems, namely the Fourier thermal problem, the Knudsen force problem, and the thermal transpiration problem. The reference solutions are obtained from a validated hybrid DSMC-MD algorithm developed in-house. It has been found that while both models predict temperature and density reasonably well in the Fourier thermal problem, the pressure profile obtained from Maxwell model exhibits a trend that opposes that from the reference solution. As a consequence, the Maxwell model is unable to predict the orientation change of the Knudsen force acting on a cold cylinder embedded in a hot cylindrical enclosure at a certain Knudsen number. In the simulation of the thermal transpiration coefficient, although all three models overestimate the coefficient, the coefficient obtained from CL model is the closest to the reference solution. The Maxwell model performs the worst. The cause of the overestimated coefficient is investigated and its link to the overly constrained correlation between the tangential momentum accommodation coefficient and the tangential energy accommodation coefficient inherent in the models is pointed out. Directions for further improvement of models are suggested.
机译:在整个努德森范围内,对麦克斯韦模型和塞西尼亚尼-兰皮斯(CL)模型这两个经验性气-墙相互作用模型的性能进行了系统研究。通过在三个基准热问题(即傅立叶热问题,克努森力问题和热蒸腾问题)中检查关键的宏观量(例如温度,密度和压力)的准确性来评估模型。参考解决方案是从内部开发的经过验证的混合DSMC-MD算法获得的。已经发现,虽然两个模型在傅立叶热问题中都可以很好地预测温度和密度,但从麦克斯韦模型获得的压力曲线却呈现出与参考溶液相反的趋势。结果,麦克斯韦(Maxwell)模型无法预测以一定克努森数作用在嵌入热圆柱体外壳中的冷圆柱体上的克努森力的方向变化。在热蒸腾系数的模拟中,尽管所有三个模型都高估了该系数,但从CL模型获得的系数最接近参考解。麦克斯韦模型表现最差。研究了过高估计系数的原因,并指出了其与模型固有的切向动量调节系数和切向能量调节系数之间过于严格的相关性的联系。建议了进一步改进模型的方向。

著录项

  • 作者

    Liang Tengfei; Li Qi; Ye Wenjing;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:25:11

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