A lumped model for long bone behavior based on poroelastic deformation and Darcy flow.

J. Tichy, B. Bou-Saïd
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Abstract

The present paper provides a simplified model for compact bone behavior by accounting for bone fluid flow coupled to the elasticity of the porous structure. The lumped model considers the bone material as a layered poroelastic structure and predicts normal pressure versus displacement, i.e, a stress-strain curve. There is a parametric dependency on porosity and permeability but, in addition, on pressure history. Specifically, the pressure impulse (the integral of pressure versus time) plays a key role. This factor is alluded to in several past studies, but not highlighted in a simplified fashion. Based on a global flow balance, bone displacement depends on the fluid flow in a channel according to the classical Darcy model of 1856, and on the rate of change of fluid within the porous solid according to the 1941 classical model of Biot. The present results agree with those of Perrin et al. which, in turn, agree with results of a detailed numerical simulation.
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基于孔隙弹性变形和达西流的长骨行为集总模型。
本文提供了一个简化的模型,通过计算骨流体流动耦合到多孔结构的弹性致密骨的行为。集总模型将骨材料视为层状孔弹性结构,并预测法向压力与位移,即应力-应变曲线。参数依赖于孔隙度和渗透率,此外还依赖于压力历史。具体来说,压力脉冲(压力对时间的积分)起着关键作用。这一因素在过去的几项研究中有所提及,但没有以简化的方式强调。基于全球流动平衡,骨位移取决于1856年经典达西模型中通道内的流体流动,以及1941年Biot经典模型中多孔固体内流体的变化率。本文的结果与Perrin等人的结果一致,而Perrin等人的结果又与详细的数值模拟结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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