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首页> 外文期刊>The Journal of the Acoustical Society of America >Investigation of the convergence of the mixed displacement-pressure formulation for three-dimensional poroelastic materials using hierarchical elements
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Investigation of the convergence of the mixed displacement-pressure formulation for three-dimensional poroelastic materials using hierarchical elements

机译:三维多孔弹性材料混合位移-压力公式的递阶收敛性研究

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摘要

Recently, a mixed pressure displacement {u, P} formulation based on Biot's poroelasticity equations has been presented for porous materials. This model leads to a reduction of the number of degrees of freedom required for the modeling of three-dimensional porous media in comparison to classical displacement-displacement {u, U} formulations. In this paper, an extension of the {u, P} formulation based on hierarchical elements is presented. First, a variant of the weak integral form of the {u, P} formulation is presented and its numerical implementation using hierarchical elements is detailed, together with the application of boundary and loading conditions. Numerical results are presented to show the accuracy and performance of the present approach. In particular, the importance of correctly capturing the coupling effects between the two phases is highlighted.
机译:近来,已经提出了基于Biot的孔隙弹性方程的混合压力位移{u,P}配方,用于多孔材料。与传统的位移-位移{u,U}公式相比,此模型可减少建模三维多孔介质所需的自由度数量。在本文中,提出了基于层次元素的{u,P}公式的扩展。首先,介绍了{u,P}公式的弱积分形式的变体,并详细说明了使用层次元素的数值实现方式以及边界条件和加载条件的应用。数值结果表明了该方法的准确性和性能。特别地,强调了正确捕获两个相之间的耦合效应的重要性。

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