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Tortuosity and the Averaging of Microvelocity Fields in Poroelasticity

机译:曲率和微流场的平均孔隙弹性

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摘要

The relationship between the macro- and microvelocity fields in a poroelastic representative volume element (RVE) has not being fully investigated. This relationship is considered to be a function of the tortuosity: a quantitative measure of the effect of the deviation of the pore fluid streamlines from straight (not tortuous) paths in fluid-saturated porous media. There are different expressions for tortuosity based on the deviation from straight pores, harmonic wave excitation, or from a kinetic energy loss analysis. The objective of the work presented is to determine the best expression for tortuosity of a multiply interconnected open pore architecture in an anisotropic porous media. The procedures for averaging the pore microvelocity over the RVE of poroelastic media by Coussy and by Biot were reviewed as part of this study, and the significant connection between these two procedures was established. Success was achieved in identifying the Coussy kinetic energy loss in the pore fluid approach as the most attractive expression for the tortuosity of porous media based on pore fluid viscosity, porosity, and the pore architecture. The fabric tensor, a 3D measure of the architecture of pore structure, was introduced in the expression of the tortuosity tensor for anisotropic porous media. Practical considerations for the measurement of the key parameters in the models of Coussy and Biot are discussed. In this study, we used cancellous bone as an example of interconnected pores and as a motivator for this study, but the results achieved are much more general and have a far broader application than just to cancellous bone.
机译:多孔弹性代表体积元(RVE)中宏观和微观速度场之间的关系尚未得到充分研究。这种关系被认为是曲折度的函数:定量测量孔隙流体流线偏离流体饱和的多孔介质中笔直(而非曲折)路径的影响。基于与直孔的偏离,谐波激励或动能损失分析,曲折度有不同的表达方式。提出的工作的目的是确定各向异性多孔介质中多重互连开孔结构的曲折性的最佳表达。作为研究的一部分,对Coussy和Biot在多孔弹性介质的RVE上平均孔隙微速度的程序进行了回顾,并确定了这两个程序之间的重要联系。基于孔隙流体粘度,孔隙率和孔隙结构,确定孔隙流体方法中的库西动能损失是多孔介质曲折性最吸引人的表达,从而获得了成功。织物张量是孔结构的3D度量,被引入到各向异性多孔介质曲折张量的表达中。讨论了在Coussy和Biot模型中测量关键参数的实际考虑。在这项研究中,我们以松质骨为例,将其作为相互连通的毛孔并作为该研究的动力,但所获得的结果更为普遍,其应用范围远不止于松质骨。

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