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Coupled hydro-mechanical model for fractured rock masses using the discontinuous deformation analysis

机译:不连续变形分析的裂隙岩体水力耦合模型

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摘要

A coupling analysis model is proposed to study the hydro-mechanical response of the fluid flow in fractured rock mass with the method of discontinuous deformation analysis (DDA). The DDA coupled hydro-mechanical model is interpreted in details by expressing the fracture fluid flow equations, the coupling process and the global coupled equations. For the mechanical response, the hydraulic pressure is determined first, followed by the coupled motion equations expressed under the DDA framework, to study the interaction between the fluid flow along the fractures and the movement of the rock blocks. In the fluid flow analysis, the cubic law is applied to study the steady flow along the fractures using the finite difference method (FDM). A real case of cavern excavation is analyzed by the proposed DDA coupled 2D hydro-mechanical model, to study the influence of fluid flow on the rock cavern stability during the excavation phase. The results show that the DDA coupled hydro-mechanical model is suitable for the stability and seepage analysis of practical engineering problems.
机译:提出了一种耦合分析模型,采用不连续变形分析法(DDA)研究裂隙岩体中流体的水力响应。通过表达压裂液流动方程,耦合过程和整体耦合方程来详细解释DDA耦合流体力学模型。对于机械响应,首先确定液压,然后确定在DDA框架下表达的耦合运动方程,以研究沿着裂缝的流体流动与岩石块的运动之间的相互作用。在流体流动分析中,使用有限差分法(FDM)将立方定律应用于研究沿裂缝的稳定流动。通过提出的DDA耦合2D流体力学模型分析了洞穴开挖的真实情况,以研究流体在开挖阶段对岩石洞穴稳定性的影响。结果表明,DDA耦合水力力学模型适用于实际工程问题的稳定性和渗流分析。

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