首页> 外文期刊>The Journal of Chemical Physics >Parallel O(N) Stokes' solver towards scalable Brownian dynamics of hydrodynamically interacting objects in general geometries
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Parallel O(N) Stokes' solver towards scalable Brownian dynamics of hydrodynamically interacting objects in general geometries

机译:平行O(n)斯托克斯的求解器朝着一般几何形状中的流体动力学互动物体的可伸缩布朗动态

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An efficient parallel Stokes' solver has been developed for complete description of hydrodynamic interactions between Brownian particles in bulk and confined geometries. A Langevin description of the particle dynamics is adopted, where the long-range interactions are included using a Green's function formalism. A scalable parallel computational approach is presented, where the general geometry Stokeslet is calculated following a matrix-free algorithm using the general geometry Ewald-like method. Our approach employs a highly efficient iterative finite-element Stokes' solver for the accurate treatment of long-range hydrodynamic interactions in arbitrary confined geometries. A combination of mid-point time integration of the Brownian stochastic differential equation, the parallel Stokes' solver, and a Chebyshev polynomial approximation for the fluctuation-dissipation theorem leads to an O(N) parallel algorithm. We illustrate the new algorithm in the context of the dynamics of confined polymer solutions under equilibrium and non-equilibrium conditions. The method is then extended to treat suspended finite size particles of arbitrary shape in any geometry using an immersed boundary approach. (C) 2017 Author(s).
机译:已经开发了一种有效的平行斯托克斯的解算器,用于完全描述块状和限制几何形状中的布朗粒子之间的流体动力相互作用。采用Langevin对粒子动态的描述,其中使用绿色的功能形式主义包括远程相互作用。提出了一种可伸缩的并行计算方法,其中使用一般几何ewald方法按矩阵算法计算一般的几何偶数。我们的方法采用了一种高效的迭代有限元Stokes的求解器,用于准确处理任意限制几何形状中的远程流体动力学相互作用。布朗随机微分方程,并行斯托克斯求解器,以及一个Chebyshev多项式逼近的对波动耗散定理导致的O(N)并行算法的中点时间积分的组合。我们在平衡和非平衡条件下的狭窄聚合物溶液的动态的上下文中说明了新算法。然后将该方法延伸以使用浸没的边界方法在任何几何形状中处理悬浮的有限尺寸颗粒。 (c)2017年作者。

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