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首页> 外文期刊>The Journal of Chemical Physics >Constructing many-body dissipative particle dynamics models of fluids from bottom-up coarse-graining
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Constructing many-body dissipative particle dynamics models of fluids from bottom-up coarse-graining

机译:构建自下而上粗晶体的多体耗散粒子动力学模型

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摘要

Since their emergence in the 1990s, mesoscopic models of fluids have been widely used to study complex organization and transport phenomena beyond the molecular scale. Even though these models are designed based on results from physics at the meso- and macroscale, such as fluid mechanics and statistical field theory, the underlying microscopic foundation of these models is not as well defined. This paper aims to build such a systematic connection using bottom-up coarse-graining methods. From the recently developed dynamic coarse-graining scheme, we introduce a statistical inference framework of explicit many-body conservative interaction that quantitatively recapitulates the mesoscopic structure of the underlying fluid. To further consider the dissipative and fluctuation forces, we design a novel algorithm that parameterizes these forces. By utilizing this algorithm, we derive pairwise decomposable friction kernels under both non-Markovian and Markovian limits where both short- and long-time features of the coarse-grained dynamics are reproduced. Finally, through these new developments, the many-body dissipative particle dynamics type of equations of motion are successfully derived. The methodologies developed in this work thus open a new avenue for the construction of direct bottom-up mesoscopic models that naturally bridge the meso- and macroscopic physics.
机译:自20世纪90年代出现以来,介观流体模型已被广泛用于研究分子尺度以外的复杂组织和输运现象。尽管这些模型是基于介于宏观和宏观的物理学的结果,如流体力学和统计场论设计的,但这些模型的基础微观基础并没有得到很好的定义。本文旨在使用自下而上的粗粒化方法建立这样一个系统的连接。从最近发展起来的动态粗粒化方案中,我们引入了一个显式多体保守相互作用的统计推断框架,定量地再现了底层流体的介观结构。为了进一步考虑耗散和波动力,我们设计了一种新的参数化算法。利用该算法,我们得到了非马尔可夫和马尔可夫极限下的成对可分解摩擦核,其中粗粒度动力学的短时间和长时间特征都得到了再现。最后,通过这些新的发展,成功地导出了多体耗散粒子动力学类型的运动方程。因此,这项工作中开发的方法为直接自下而上的介观模型的构建开辟了一条新的途径,该模型自然地连接了介观和宏观物理。

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