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A three-dimensional phonon energy transport model based on the non-dimensional lattice Boltzmann method

机译:基于无量纲格子玻尔兹曼方法的三维声子能量传输模型

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A new three-dimensional phonon energy transport model based on the non-dimensional lattice Boltzmann method (NDLBM) is developed to be applicable in the sub-continuum regime for diffusive and ballistic phonon transport. Two Knudsen numbers based on the base frequency and variable frequency, Kn(omega 0) and Kn(omega), are defined in order to isolate the effects of material size and phonon transfer frequency. Both the relaxation time and boundary conditions of the phonon Boltzmann transport equation are modeled in dimensionless form. The physical meaning of each component in the relaxation time and discontinuous boundary models is interpreted. By introducing the Boltzmann constant and Planck's constant, all other coefficients can be simplified into order of one. The transient dimensionless phonon probability distribution functions are solved by the Parallel NDLBM with D3Q27 grids. The dimensionless temperature distributions, i.e. the dimensionless phonon energy density distributions, compare favorably with previous experimental and numerical results for various Kn(omega 0). The effects of material size, temperature, and phonon transfer frequency are investigated. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种基于无量纲格子玻尔兹曼方法(NDLBM)的新型三维声子能量传输模型,适用于扩散和弹道声子传输的子连续谱体系。为了隔离材料尺寸和声子传递频率的影响,定义了两个基于基本频率和可变频率的Knudsen数Kn(ω0)和Kn(ω)。声子玻尔兹曼输运方程的弛豫时间和边界条件都以无量纲形式建模。解释了弛豫时间和不连续边界模型中每个成分的物理含义。通过引入玻尔兹曼常数和普朗克常数,可以将所有其他系数简化为1的阶数。具有D3Q27网格的并行NDLBM解决了瞬态无量纲声子概率分布函数。无量纲温度分布,即无量纲声子能量密度分布,与以前针对各种Kn(ω0)的实验和数值结果相比具有优势。研究了材料尺寸,温度和声子转移频率的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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