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首页> 外文期刊>Journal of biomechanical engineering. >Finite Element Implementation of Mechanochemical Phenomena in Neutral Deformable Porous Media Under Finite Deformation
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Finite Element Implementation of Mechanochemical Phenomena in Neutral Deformable Porous Media Under Finite Deformation

机译:有限变形下中性可变形多孔介质中机械化学现象的有限元实现

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摘要

Biological soft tissues and cells may be subjected to mechanical as well as chemical (osmotic) loading under their natural physiological environment or various experimental conditions. The interaction of mechanical and chemical effects may be very significant under some of these conditions, yet the highly nonlinear nature of the set of governing equations describing these mechanisms poses a challenge for the modeling of such phenomena. This study formulated and implemented a finite element algorithm for analyzing mechanochemical events in neutral deformable porous media under finite deformation. The algorithm employed the framework of mixture theory to model the porous permeable solid matrix and interstitial fluid, where the fluid consists of a mixture of solvent and solute. A special emphasis was placed on solute-solid matrix interactions, such as solute exclusion from a fraction of the matrix pore space (solubility) and frictional momentum exchange that produces solute hindrance and pumping under certain dynamic loading conditions. The finite element formulation implemented full coupling of mechanical and chemical effects, providing a framework where material properties and response functions may depend on solid matrix strain as well as solute concentration. The implementation was validated using selected canonical problems for which analytical or alternative numerical solutions exist. This finite element code includes a number of unique features that enhance the modeling of mechanochemical phenomena in biological tissues. The code is available in the public domain, open source finite element program FEBio (http://mrl.sci.utah.edu/software).
机译:生物软组织和细胞可以在其自然生理环境或各种实验条件下经受机械以及化学(渗透)负荷。在这些条件中的某些条件下,机械效应和化学效应的相互作用可能非常重要,但是描述这些机制的控制方程组的高度非线性性质对此类现象的建模提出了挑战。这项研究制定并实现了一种有限元算法,用于分析有限变形下中性可变形多孔介质中的机械化学事件。该算法采用混合理论的框架来模拟多孔可渗透固体基质和间隙流体,其中流体由溶剂和溶质的混合物组成。特别强调了溶质与固体之间的相互作用,例如溶质从基体孔隙空间(溶解度)的一部分中排除,以及摩擦动量交换,这些动量交换在某些动态载荷条件下产生了溶质阻碍和泵浦作用。有限元配方实现了机械效果和化学效果的完全耦合,从而提供了一个框架,其中材料特性和响应函数可能取决于固体基质应变以及溶质浓度。使用选定的规范问题(存在分析或替代数字解决方案)验证了该实现。此有限元代码包含许多独特的功能,可增强对生物组织中机械化学现象的建模。该代码可在公共领域的开源有限元程序FEBio(http://mrl.sci.utah.edu/software)中获得。

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