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Energy nonequipartition in gas mixtures of inelastic rough hard spheres: The tracer limit

机译:燃气混合物中的能量非燃气混合物:示踪器极限

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摘要

The dynamical properties of a tracer or impurity particle immersed in a host gas of inelastic and rough hard spheres in the homogeneous cooling state is studied. Specifically, the breakdown of energy equipartition as characterized by the tracer/host ratios of translational and rotational temperatures is analyzed by exploring a wide spectrum of values of the control parameters of the system (masses, moments of inertia, sizes, and coefficients of restitution). Three complementary approaches are considered. On the theoretical side, the Boltzmann and Boltzmann–Lorentz equations (both assuming the molecular chaos ansatz) are solved by means of a multitemperature Maxwellian approximation for the velocity distribution functions. This allows us to obtain explicit analytical expressions for the temperature ratios. On the computational side, two different techniques are used. First, the kinetic equations are numerically solved by the direct simulation Monte Carlo (DSMC) method. Second, molecular dynamics simulations for dilute gases are performed. Comparison between theory and simulations shows a general good agreement. This means that (i) the impact of the molecular chaos ansatz on the temperature ratios is not significant (except at high inelasticities and/or big impurities) and (ii) the simple Maxwellian approximation yields quite reliable predictions.
机译:研究了浸没在均匀冷却状态下在均匀冷却状态下的主体和粗糙的硬球的主体中浸没的示踪剂或杂质颗粒的动态性质。具体地,通过探索系统的控制参数的广谱值(质量,惯性,尺寸,尺寸系数,恢复系数的块状,尺寸,尺寸系数)的宽范围来分析所表征的能量备分标准的能量备分标准的击穿。考虑了三种补充方法。在理论侧,通过多温和的Maxwellian近似来解决螺栓坦,假设假设分子混沌Ansatz的玻璃板和Boltzmann-Lorentz方程(两者都是假设分子混沌ansatz。这使我们能够获得用于温度比的显式分析表达式。在计算侧,使用两种不同的技术。首先,通过直接仿真蒙特卡罗(DSMC)方法进行数值求解动力学方程。其次,进行稀释气体的分子动力学模拟。理论与仿真之间的比较显示了一般良好的一致性。这意味着(i)分子混沌Ansatz对温度比的影响不是显着的(除了高间隙和/或大杂质外)和(ii)简单的最大威斯近似产生了相当可靠的预测。

著录项

  • 来源
    《Physical review, E》 |2017年第2期|共9页
  • 作者单位

    Departamento de Física and Instituto de Computación Científica Avanzada (ICCAEx) Universidad de Extremadura 06006 Badajoz Spain;

    Gregorio Millán Institute of Fluid Dynamics Nanoscience and Industrial Mathematics Department of Materials Science and Engineering and Chemical Engineering Universidad Carlos III de Madrid 28911 Leganés Spain;

    Departamento de Física and Instituto de Computación Científica Avanzada (ICCAEx) Universidad de Extremadura 06006 Badajoz Spain;

    Departamento de Física and Instituto de Computación Científica Avanzada (ICCAEx) Universidad de Extremadura 06006 Badajoz Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 统计物理学;等离子体物理学;流体力学;
  • 关键词

    Energy; nonequipartition; mixtures;

    机译:能量;脱税;混合物;

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