首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >A COMPARATIVE STUDY OF SUBMICRON PHONON TRANSPORT USING THE BOLTZMANN TRANSPORT EQUATION AND THE LATTICE BOLTZMANN METHOD
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A COMPARATIVE STUDY OF SUBMICRON PHONON TRANSPORT USING THE BOLTZMANN TRANSPORT EQUATION AND THE LATTICE BOLTZMANN METHOD

机译:利用Boltzmann输运方程和Lattice Boltzmann方法对亚微米声子输运的比较研究

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摘要

The subcontinuum energy transport mechanism in solids can be explained by the Lattice Boltzmann Method (LBM), a discrete representation of the Boltzmann Transport Equation (BTE). The present study focuses on a detailed comparison of the LBM and BTE. Results reveal that at continuum scale, the LBM follows the BTE almost precisely. However, as the device dimensions are reduced, approaching the ballistic limit, the LBM deviates from the BTE results in terms of thermal property estimation. The inherent nonisotropic lattice configuration has a dominant contribution to the performance of the LBM. A threshold length scale is also proposed for successful implementation of the LBM solver.
机译:固体中的次连续谱能量传输机制可以通过格子Boltzmann方法(LBM)来解释,该方法是Boltzmann传输方程(BTE)的离散表示。本研究着重于LBM和BTE的详细比较。结果表明,在连续范围内,LBM几乎完全遵循BTE。然而,随着器件尺寸的减小,接近弹道极限,就热性能估计而言,LBM偏离了BTE结果。固有的非各向同性晶格结构对LBM的性能起主要作用。还提出了一个阈值长度刻度,以成功实施LBM求解器。

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