## Presented is a hydro-mechanical model that describes single-phase fluid flow in a deforming porous media with an existing weakness that can fracture. 提出的是一种流体力学模型，该模型描述了具有可能破裂的现有弱点的变形多孔介质中的单相流体流动。

Numerical Simulation of Fluid Induced Fracturing: Micro-seismicity and Fluid Type Dependency

## Fully coupled governing equations are developed for hydro-mechanical analysis of deforming porous medium with fractures based on the stress balance equation, the seepage continuity equation and the effective stress principle. 基于应力平衡方程、渗流连续性方程和有效应力原理，建立了全耦合控制方程，用于含裂缝变形多孔介质的流体力学分析。

A Seepage-Stress Coupling Model in Fractured Porous Media Based on XFEM

## Presented is a hydro-mechanical model that describes single-phase fluid flow in a deforming porous media with an existing weakness that can fracture. 提出的是一种流体力学模型，该模型描述了具有可能破裂的现有弱点的变形多孔介质中的单相流体流动。

Numerical Simulation of Fluid Induced Fracturing: Micro-seismicity and Fluid Type Dependency

## Fully coupled governing equations are developed for hydro-mechanical analysis of deforming porous medium with fractures based on the stress balance equation, the seepage continuity equation and the effective stress principle. 基于应力平衡方程、渗流连续性方程和有效应力原理，建立了全耦合控制方程，用于含裂缝变形多孔介质的流体力学分析。

A Seepage-Stress Coupling Model in Fractured Porous Media Based on XFEM

## Summary The new two-phase model for a compressible fluid flow in deforming porous media is presented. 总结 介绍了变形多孔介质中可压缩流体流动的新两相模型。

Two-Phase Computational Model for Wave Propagation in Deforming Saturated Porous Medium

## Deforming Porous 变形多孔

Deforming Porous 变形多孔
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