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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Modeling the mechanical behavior of semi-flexible polymer chains using a surrogate model based on a finite-element approach to Brownian polymer dynamics
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Modeling the mechanical behavior of semi-flexible polymer chains using a surrogate model based on a finite-element approach to Brownian polymer dynamics

机译:使用基于布朗聚合物动力学的有限元方法的替代模型对半柔性聚合物链的力学行为进行建模

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摘要

The micromechanical behavior of single polymer chains determines the macroscopic mechanics of a large number of synthetic and biological materials. An important tool for the study of polymers are Brownian dynamics simulations, classically based on bead-rod models. In a recent work by Cyron and Wall (2009), an advantageous approach in the finite-element framework was presented, where Brownian polymer dynamics have been described by a white noise driven stochastic partial differential equation (SPDE). In the present contribution, the SPDE is solved using a geometrically-exact Kirchhoff-Love beam element and a piecewise constant white noise approximation in time and space. The resulting numerical method is used to obtain mean force-extension data, to set up a surrogate model based on a Gaussian process, and to identify parameters through a fit to experimental data in a Bayesian framework. (C) 2019 Elsevier Ltd. All rights reserved.
机译:单个聚合物链的微观力学行为决定了大量合成和生物材料的宏观力学。聚合物动力学研究的重要工具是经典的基于珠棒模型的布朗动力学模拟。在Cyron和Wall(2009)的最新工作中,提出了一种在有限元框架中的有利方法,该方法通过白噪声驱动的随机偏微分方程(SPDE)描述了布朗聚合物动力学。在本贡献中,使用几何精确的基尔霍夫-洛夫光束元素和时空中的分段恒定白噪声近似来求解SPDE。所得的数值方法用于获得平均力-延伸数据,基于高斯过程建立替代模型,并通过与贝叶斯框架中的实验数据拟合来识别参数。 (C)2019 Elsevier Ltd.保留所有权利。

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