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首页> 外文期刊>Annals of nuclear energy >The linearized Boltzmann equation with Cercignani-Lampis boundary conditions: Heat transfer in a gas confined by two plane-parallel surfaces
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The linearized Boltzmann equation with Cercignani-Lampis boundary conditions: Heat transfer in a gas confined by two plane-parallel surfaces

机译:具有Cercignani-Lampis边界条件的线性化Boltzmann方程:由两个平面平行的表面限制的气体中的热传递

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The analytical discrete-ordinates method is used to solve the problem of heat transfer for a single-species gas confined by two plane-parallel surfaces. The formulation of the problem is based on the linearized Boltzmann equation for rigid-sphere interactions between gas particles and the Cercignani-Lampis kernel for gas-surface interactions. Accurate numerical results are reported for the density, temperature, and heat-flow perturbations from a reference (equilibrium) state and are compared with similar results from five kinetic models. An interesting finding of this work is that there are combinations of the four numerical values of the accommodation coefficients used to define the Cercignani-Lampis boundary conditions that give rise to heat flows that are larger for the transition regime than for the free-molecular regime, an effect not observed when the standard (Maxwell) boundary conditions are used. (C) 2015 Elsevier Ltd. All rights reserved.
机译:分析离散坐标法用于解决由两个平面平行的表面约束的单一物种气体的传热问题。问题的提出是基于线性Boltzmann方程,用于气体颗粒之间的刚性球体相互作用,以及Cercignani-Lampis核用于气体-表面相互作用。报告了参考(平衡)状态下的密度,温度和热流扰动的精确数值结果,并将其与五个动力学模型的相似结果进行了比较。这项工作的有趣发现是,存在用于定义Cercignani-Lampis边界条件的调节系数的四个数值的组合,这些条件引起的热流在过渡状态下比在自由状态下大,使用标准(Maxwell)边界条件时未观察到效果。 (C)2015 Elsevier Ltd.保留所有权利。

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