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首页> 外文期刊>The Journal of Chemical Physics >Uncertainty quantification in MD simulations of concentration driven ionic flow through a silica nanopore. I. Sensitivity to physical parameters of the pore
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Uncertainty quantification in MD simulations of concentration driven ionic flow through a silica nanopore. I. Sensitivity to physical parameters of the pore

机译:MD模拟中浓度驱动的离子流通过二氧化硅纳米孔的不确定度量化。一,对孔的物理参数的敏感性

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In this article, uncertainty quantification is applied to molecular dynamics (MD) simulations of concentration driven ionic flow through a silica nanopore. We consider a silica pore model connecting two reservoirs containing a solution of sodium (Na~+) and chloride (Cl~-) ions in water. An ad hoc concentration control algorithm is developed to simulate a concentration driven counter flow of ions through the pore, with the ionic flux being the main observable extracted from the MD system. We explore the sensitivity of the system to two physical parameters of the pore, namely, the pore diameter and the gating charge. First we conduct a quantitative analysis of the impact of the pore diameter on the ionic flux, and interpret the results in terms of the interplay between size effects and ion mobility. Second, we analyze the effect of gating charge by treating the charge density over the pore surface as an uncertain parameter in a forward propagation study. Polynomial chaos expansions and Bayesian inference are exploited to isolate the effect of intrinsic noise and quantify the impact of parametric uncertainty on the MD predictions. We highlight the challenges arising from the heterogeneous nature of the system, given the several components involved, and from the substantial effect of the intrinsic thermal noise.
机译:在本文中,不确定性量化应用于浓度驱动的离子流通过二氧化硅纳米孔的分子动力学(MD)模拟。我们考虑了一个二氧化硅孔隙模型,该模型连接了两个包含钠离子(Na〜+)和氯离子(Cl〜-)的水溶液的储层。开发了一种专门的浓度控制算法,以模拟浓度驱动的离子通过孔的逆流,其中离子通量是从MD系统中提取的主要可观测量。我们探索该系统对孔的两个物理参数的敏感性,即孔径和选通电荷。首先,我们对孔径对离子通量的影响进行了定量分析,并根据尺寸效应和离子迁移率之间的相互作用来解释结果。其次,我们通过将孔表面的电荷密度作为前向传播研究中的不确定参数来分析门控电荷的影响。利用多项式混沌展开和贝叶斯推理来隔离本征噪声的影响,并量化参数不确定性对MD预测的影响。考虑到涉及的几个组件,我们强调了系统异质性带来的挑战,以及固有热噪声的巨大影响。

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