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Phonon vortex dynamics in graphene ribbon by solving Boltzmann transport equation with ab initio scattering rates

机译:通过用AB Initio散射率求解Boltzmann Transport Quistation的石墨烯带中的旋涡动力学

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摘要

In this work, we study thermal phonon vortex in graphene ribbon by a discrete-ordinate solution of phonon Boltzmann equation under Callaway's dual relaxation model. The phonon scattering rates of normal and resistive processes are acquired from ab initio calculation without need of any empirical input parameters. The temperature, size and isotope effects on transition from phonon vortex transport to conventional Fourier's heat conduction in both simple and complex geometries are investigated. The physical mechanism for the evolution of phonon vortex is declared by wide phonon mean free path distribution of resistive processes. A hierarchical vortex series is obtained with primary, secondary and terniary vortexes in a complicated geometry. The present work provides an accurate and efficient multi-scale numerical framework for modeling hydrodynamic phonon transport in high-thermal-conductivity materials and also sheds light on the heat dissipation applications.
机译:在这项工作中,我们通过在Callaway的双放松模型下的Charon Boltzmann方程的离散纵坐标解决方案来研究石墨烯带中的热敏声音涡流。从AB Initio Calculation获取正常和电阻过程的声子散射速率,而无需任何经验输入参数。研究了在简单和复杂的几何形状中对传感器涡旋输送到传统傅里叶的热传导的温度,尺寸和同位素效应。通过电阻过程的宽声音意味着自由路径分布宣称声子涡旋的演变的物理机制。在复杂的几何形状中使用初级,次级和锭剂涡旋获得分层涡旋系列。本作本作提供了一种准确效率高效的多尺度数值框架,用于在高导热材料中建模流体动力学传输,并在散热应用上脱光。

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  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第4期|120981.1-120981.13|共13页
  • 作者单位

    Institute of Industrial Science The University of Tokyo Tokyo 153-8505 Japan;

    Institute of Industrial Science The University of Tokyo Tokyo 153-8505 Japan Center for Phononics and Thermal Energy Science School of Physics Science and Engineering Tongji University Shanghai 200092 China;

    Institute of Industrial Science The University of Tokyo Tokyo 153-8505 Japan;

    Institute of Industrial Science The University of Tokyo Tokyo 153-8505 Japan UMMS CNRS-I1S UMI 2820 The University of Tokyo Tokyo 153-8505 Japan;

    Department of Engineering Mechanics Tsinghua University Beijing 100084 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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