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The lattice Boltzmann Peierls Callaway equation for mesoscopic thermal transport modeling

机译:介观热传递模型的格子Boltzmann Peierls Callaway方程

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The lattice Boltzmann Peierls Callaway (LBPC) method is a recent development of the versatile lattice Boltzmann formalism aimed at a numerical experiment on mesoscale thermal transport in a multiphase phonon gas. Two aspects of mesoscopic thermal transport are discussed: the finite phonon mean free path and the interface thermal resistance. Based on the phonon momentum screening length measured in the LBPC computational apparatus, the validity of the Umklapp collision relaxation time in the Callaway collision operator is examined quantitatively. The discrete nature of the spatio-temporal domain in the LBPC method, along with the linear approximation of the exponential screening mechanism in the Callaway operator, reveals a large discrepancy between the effective phonon mean free path and the analytic phonon mean free path when the relaxation time is small. The link bounce back interface phonon collision rule is used to realize the interface thermal resistance between phonon gases with dissimilar dispersion relations. Consistent with the Callaway collision operator for the bulk phonon dynamics, the interface phonon collision process is regarded as a linear relaxation mechanism toward the local pseudo-equilibrium phonon distribution uniquely defined by the energy conservation principle. The interface thermal resistance is linearly proportional to the relaxation time of the proposed phonon interface collision rule.
机译:格子Boltzmann Peierls Callaway(LBPC)方法是通用格子Boltzmann形式主义的最新发展,旨在对多相声子气体中尺度热传输进行数值实验。讨论了介观热传递的两个方面:有限声子平均自由程和界面热阻。根据在LBPC计算设备中测得的声子动量筛选长度,定量检查Callaway碰撞算子中Umklapp碰撞弛豫时间的有效性。 LBPC方法中时空域的离散性质,以及Callaway算子中指数筛选机制的线性逼近,表明弛豫时有效声子平均自由路径与解析声子平均自由路径之间存在较大差异。时间很小。链接反弹界面声子碰撞规则用于实现具有不同色散关系的声子气体之间的界面热阻。与体声子动力学的Callaway碰撞算子一致,界面声子碰撞过程被视为一种线性弛豫机制,朝着由能量守恒原理唯一定义的局部拟平衡声子分布发展。界面热阻与提出的声子界面碰撞规则的弛豫时间成线性比例关系。

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