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Thermoelastic Analysis of Porous Media Using a Multiscale Asymptotic Expansion Homogenization Method

机译:多尺度渐近膨胀均质方法的多孔介质热弹性分析

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In this study, a multiscale finite element analysis coupled with the asymptotic expansion homogenization (AEH) method is employed to investigate the linear thermoelastic behavior of a porous medium. A stochastic method using a mixture of Gaussian functions distribution is used to generate microstructures. The simulated microstructures are produced based on the porosity of a Marcellus shale sample. The AEH method is used to determine the homogenized material properties of simulated random microstructures. A porous medium with material and transport properties that vary between the bedding layers and the matrix is generated. The influence of gas pressure, as well as thermal and mechanical loading on the porous medium is studied and the influence of the pore size and porosity of microstructures on the evolution of stress is investigated.
机译:在该研究中,采用与渐近膨胀均质化(AEH)方法耦合的多尺度有限元分析来研究多孔介质的线性热弹性行为。 使用高斯函数分布混合物的随机方法用于产生微结构。 模拟微结构基于Marcellus页岩样品的孔隙率产生。 AEH方法用于确定模拟随机微结构的均质材料特性。 产生具有在床上用品和基质之间变化的材料和运输性质的多孔介质。 研究了气体压力以及热和机械负载对多孔介质的影响,研究了孔径和微观结构孔隙率对应力演化的影响。

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