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首页> 外文期刊>Transport in Porous Media >Stabilized Low-Order Explicit Finite Element Formulations for the Coupled Hydro-Mechanical Analysis of Saturated Poroelastic Media
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Stabilized Low-Order Explicit Finite Element Formulations for the Coupled Hydro-Mechanical Analysis of Saturated Poroelastic Media

机译:饱和多孔弹性介质水力耦合分析的稳定低阶显式有限元公式

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摘要

We developed new stabilized low-order explicit finite element formulations for analysing the fully coupled hydro-mechanical behaviour of fluid-saturated poroelastic media. For space stabilization, the low-order U-p finite element employs two stabilization schemes. One stabilization scheme is based on the polynomial pressure projection technique in the fluid phase. The other one assumes enhanced strain field for the solid-phase terms. For time stabilization, an unconditionally stable explicit integration formula is proposed for discretization in the time domain to eliminate the time-step-size sensitivity of the temporal discretization finite difference format. The performance of the proposed formulations is demonstrated through four numerical examples. The proposed formulations not only agree strongly with the analytical/reference solutions, but also yield unconditionally stable high-precision results that outperform the standard finite element combined finite difference scheme. The modelling results indicate the proposed schemes possess significant advantages in terms of precision and computational efficiency for large timescales and adaptability to space-domain discretization. The proposed schemes have great potential in engineering applications for large timescale problems.
机译:我们开发了新的稳定的低阶显式有限元公式,用于分析流体饱和多孔弹性介质的完全耦合流体力学行为。对于空间稳定,低阶U-p有限元采用两种稳定方案。一种稳定方案是基于流体相中的多项式压力投影技术。另一个假设固相项的应变场增强。为了保持时间稳定,提出了一种无条件稳定的显式积分公式,用于时域离散化,以消除时间离散化有限差分格式的时间步长敏感性。通过四个数值示例证明了所提出配方的性能。所提出的公式不仅与解析/参考解决方案非常吻合,而且还产生了无条件稳定的高精度结果,优于标准的有限元组合有限差分方案。建模结果表明,所提出的方案在精度和计算效率上都具有明显的优势,适用于大尺度时间尺度和对空间域离散化的适应性。所提出的方案在解决大型时间尺度问题方面具有巨大的工程应用潜力。

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