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Statistical mechanics of transport processes in active fluids: Equations of hydrodynamics

机译:活性流体运输过程的统计力学:流体动力学方程

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The equations of hydrodynamics including mass, linear momentum, angular momentum, and energy are derived by coarse-graining the microscopic equations of motion for systems consisting of rotary dumbbells driven by internal torques. In deriving the balance of linear momentum, we find that the symmetry of the stress tensor is broken due to the presence of non-zero torques on individual particles. The broken symmetry of the stress tensor induces internal spin in the fluid and leads us to consider the balance of internal angular momentum in addition to the usual moment of momentum. In the absence of spin, the moment of momentum is the same as the total angular momentum. In deriving the form of the balance of total angular momentum, we find the microscopic expressions for the couple stress tensor that drives the spin field. We show that the couple stress contains contributions from both intermolecular interactions and the active forces. The presence of spin leads to the idea of balance of moment of inertia due to the constant exchange of particles in a small neighborhood around a macroscopic point. We derive the associated balance of moment of inertia at the macroscale and identify the moment of inertia flux that induces its transport. Finally, we obtain the balances of total and internal energy of the active fluid and identify the sources of heat and heat fluxes in the system.
机译:包括质量,线性动量,角动量和能量的流体动力学的方程是通过粗大的运动的微观方程来源的,用于由内部扭矩驱动的旋转哑铃组成的系统。在衍生线性动量的平衡时,我们发现由于在个体颗粒上存在非零扭矩的存在,应力张量的对称性被破坏。压力张量的破裂对称性在流体中诱导内部旋转,并导致我们除了通常的动量时刻之外的内部角动量的平衡。在没有旋转的情况下,动量的时刻与总角度相同。在衍生总角度的平衡的形式时,我们找到了驱动旋转场的夫妻应激张量的微观表达。我们表明,夫妻应力包含分子间互动和主动力量的贡献。由于在宏观点周围的小邻域内的颗粒恒定交换,旋转的存在导致惯性矩的平衡。我们在宏观上获得了惯性矩的相关余额,并确定突起其运输的惯性助焊剂的时刻。最后,我们获得了活性流体的总和内能量的余量,并确定了系统中的热量和热通量的源。

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