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活性流体中输运过程的统计力学。II. 活性布朗粒子的流体动力学方程。

Statistical mechanics of transport processes in active fluids. II. Equations of hydrodynamics for active Brownian particles.

作者信息

Epstein Jeffrey M, Klymko Katherine, Mandadapu Kranthi K

机构信息

Department of Physics, University of California, Berkeley, California 94720, USA.

Department of Chemistry, University of California, Berkeley, California 94720, USA.

出版信息

J Chem Phys. 2019 Apr 28;150(16):164111. doi: 10.1063/1.5054912.

Abstract

We perform a coarse-graining analysis of the paradigmatic active matter model, active Brownian particles, yielding a continuum description in terms of balance laws for mass, linear and angular momentum, and energy. The derivation of the balance of linear momentum reveals that the active force manifests itself directly as a continuum-level body force proportional to an order parameter-like director field, which therefore requires its own evolution equation to complete the continuum description of the system. We derive this equation, demonstrating in the process that bulk currents may be sustained in homogeneous systems only in the presence of interparticle aligning interactions. Furthermore, we perform a second coarse-graining of the balance of linear momentum and derive the expression for active or swim pressure in the case of mechanical equilibrium.

摘要

我们对典型的活性物质模型——活性布朗粒子进行了粗粒化分析,得到了关于质量、线性和角动量以及能量的平衡定律的连续描述。线性动量平衡的推导表明,活性力直接表现为与类似序参量的指向矢场成正比的连续体体力,因此需要其自身的演化方程来完成系统的连续描述。我们推导了这个方程,在此过程中证明了只有在存在粒子间排列相互作用的情况下,均匀系统中才可能维持体电流。此外,我们对线性动量平衡进行了第二次粗粒化,并推导了机械平衡情况下活性压力或游动压力的表达式。

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