格子Boltzmann方法
水电站模型
离散化
声子
玻尔兹曼方程
格子(音乐)
统计物理学
物理
平均自由程
各向同性
边值问题
格子气体自动机
凝聚态物理
弹道传导
机械
数学分析
散射
数学
量子力学
电子
天文
湍流
随机细胞自动机
雷诺数
声学
自动机
作者
Aydin Nabovati,Daniel P. Sellan,Cristina H. Amón
标识
DOI:10.1016/j.jcp.2011.03.061
摘要
The lattice Boltzmann method is a discrete representation of the Boltzmann transport equation that has been employed for modeling transport of particles of different nature. In the present work, we describe the lattice Boltzmann methodology and implementation techniques for the phonon transport modeling in crystalline materials. We show that some phonon physical properties, e.g., mean free path and group velocity, should be corrected to their effective values for one- and two-dimensional simulations, if one uses the isotropic approximation. We find that use of the D2Q9 lattice for phonon transport leads to erroneous results in transient ballistic simulations, and the D2Q7 lattice should be employed for two-dimensional simulations. Furthermore, we show that at the ballistic regime, the effect of direction discretization becomes apparent in two dimensions, regardless of the lattice used. Numerical methodology, lattice structure, and implementation of initial and different boundary conditions for the D2Q7 lattice are discussed in detail.
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