Ion-Induced Swelling Behavior of Articular Cartilage due to Non-Newtonian Flow and Its Effects on Fluid Pressure and Solid Displacement.

J I Siddique, Umair Farooq, Usman Ali, Aftab Ahmed
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Abstract

In this study, we examine the behavior of articular cartilage equilibrated in a salt (NaCl) solution during non-Newtonian fluid flow that follows an Ostwald-de Waele model. A linearly elastic and isotropic rectangular strip of cartilage is considered for analysis. A continuum theory of mixtures has been employed to develop a coupled system of partial differential equations for the solid displacement and the fluid pressure by considering the important factor of the ion concentration by assuming the cartilage as a deformable porous media. The coupled system of partial differential equations is solved using the numerical method named method of lines. In most cases, shear-thinning fluid is compared to the shear-thickening fluid to magnify the difference. Graphical results show that shear-thickening fluids bring more solid deformation and shows less fluid pressure in comparison to the shear-thinning fluids.

非牛顿流引起的关节软骨离子诱导膨胀行为及其对流体压力和固体位移的影响
在这项研究中,我们按照奥斯特瓦尔德-德韦勒模型,研究了在盐(NaCl)溶液中平衡的关节软骨在非牛顿流体流动过程中的行为。分析考虑的是线性弹性和各向同性的矩形软骨条。假设软骨为可变形的多孔介质,考虑到离子浓度这一重要因素,采用混合物连续理论建立了固体位移和流体压力的偏微分方程耦合系统。该耦合偏微分方程系采用名为线性法的数值方法求解。在大多数情况下,将剪切稀化流体与剪切增稠流体进行比较以放大差异。图形结果表明,与剪切稀化流体相比,剪切增稠流体带来的固体变形更大,流体压力更小。
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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