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首页> 外文期刊>The European physical journal: Special topics >Energy-based coupling of smooth particle hydrodynamics and molecular dynamics with thermal fluctuations
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Energy-based coupling of smooth particle hydrodynamics and molecular dynamics with thermal fluctuations

机译:基于能量的光滑粒子流体动力学和分子动力学与热涨落的耦合

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摘要

We propose a thermodynamically consistent and energy conserving coupling scheme between the atomistic and the continuum domain.The coupling scheme links the two domains using the DPDE (Dissipative Particle Dynamics at constant Energy) thermostat and is designed to handle strong temperature gradients across the atomistic/continuum domain interface.The fundamentally different definitions of temperature in the continuum and atomistic domain–internal energy and heat capacity versus particle velocity–are accounted for in a straightforward and conceptually intuitive way by the DPDE thermostat. We verify the here proposed scheme using a fluid,which is simultaneously represented as a continuum using Smooth Particle Hydrodynamics,and as an atomistically resolved liquid using Molecular Dynamics.In the case of equilibrium contact between both domains,we show that the correct microscopic equilibrium properties of the atomistic fluid are obtained.As an example of a strong non-equilibrium situation, we consider the propagation of a steady shock-wave from the continuum domain into the atomistic domain, and show that the coupling scheme conserves both energy and shock-wave dynamics.
机译:我们提出了原子域和连续域之间的热力学一致且节能的耦合方案,该耦合方案使用DPDE(恒定能量下的耗散粒子动力学)恒温器将两个域链接在一起,并旨在处理原子/连续域上的强温度梯度。 DPDE恒温器以一种直接且概念上直观的方式解释了连续域和原子域中温度的根本不同定义(内部能量和热容量与粒子速度的关系)。我们使用流体验证了本文提出的方案,该流体同时使用“光滑粒子流体动力学”表示为连续体,并使用“分子动力学”表示为原子分解液。在两个域之间进行平衡接触的情况下,我们证明了正确的微观平衡性质作为强非平衡情况的一个例子,我们考虑了一个稳定的冲击波从连续域到原子域的传播,并表明耦合方案既节省了能量又节省了冲击波。动力学。

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