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Microscopic derivation of the hydrodynamics of active-Brownian-particle suspensions

机译:活性褐色粒子悬浮液流体动力学的显微衍生

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摘要

We derive the hydrodynamic equations of motion for a fluid of active particles described by underdamped Langevin equations that reduce to the active-Brownian-particle model, in the overdamped limit. The contraction into the hydrodynamic description is performed by locally averaging the particle dynamics with the nonequilibrium many-particle probability density, whose formal expression is found in the physically relevant limit of high friction through a multiple-time-scale analysis. This approach permits us to identify the conditions under which self-propulsion can be subsumed into the fluid stress tensor and thus to define systematically and unambiguously the local pressure of the active fluid.
机译:我们推导出通过减少到活性褐色粒子模型的欠压Langevin方程所描述的活性颗粒的流体的流体动力方程,以在覆盖限制中。通过局部平均颗粒动力学与非Quigibibium的颗粒动力学进行颗粒动力学来进行进入流体动力学描述的收缩,其形式表达通过多时间级分析在物理相关的高摩擦极限中找到。这种方法允许我们识别自推进的条件,在这种情况下可以归入流体应力张量,从而可以系统地和明确地限定活性流体的局部压力。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第6期|052142.1-052142.10|共10页
  • 作者单位

    Max Planck Institute for Mathematics in the Sciences Inselstr. 22 D-04103 Leipzig Germany Institut fuer Theoretische Physik Universitaet Leipzig Postfach 100 920 D-04009 Leipzig Germany;

    Institut fuer Theoretische Physik Universitaet Leipzig Postfach 100 920 D-04009 Leipzig Germany;

    Institut fuer Theoretische Physik Universitaet Leipzig Postfach 100 920 D-04009 Leipzig Germany;

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