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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >An implicit joint-continuum model for the hydro-mechanical analysis of fractured rock masses
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An implicit joint-continuum model for the hydro-mechanical analysis of fractured rock masses

机译:裂缝岩体水力力学分析的隐含关节连续模型

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摘要

Fractures control the hydro-mechanical behavior of rock masses. Explicit numerical analyses require detailed information on fracture properties, spacing, and orientation. This paper advances an implicit joint-continuum model for the coupled hydro-mechanical analysis of regularly spaced-persistent fractured rock masses. The stiffness tensor combines the compliance of each fracture set and the intact rock; similarly, the permeability tensor adds the fluid transport through fractures and the matrix. The fully coupled hydro-mechanical analysis incorporates the rock mass stiffness and permeability tensors, and satisfies force equilibrium and macroscopic fluid mass balance. We implement the implicit joint-continuum model within a finite element framework and verify the numerical simulator against closed-form solutions for simple boundary conditions. The application of the code to the hydraulic stimulation of a fractured rock mass shows the effect of stress anisotropy and fracture orientation on the development of open-mode discontinuities (i.e., hydraulic fracture) and hydro-shearing. The implicit joint-continuum model can be readily extended to more complex coupled processes, including thermal and chemical phenomena.
机译:骨折控制岩体的水力力学行为。明确的数值分析需要有关骨折性质,间距和方向的详细信息。本文推进了耦合水力力学分析的隐含关节连续模型,对定期间隔持续的骨折岩体。刚度张量相结合了每个骨折组和完整岩石的顺应性;类似地,渗透性张量通过裂缝和基质增加流体输送。完全耦合的水力力学分析包括岩石质量刚度和渗透性张量,满足力平衡和宏观液体质量平衡。我们在有限元框架内实现了隐式的关节连续内模型,并验证了用于简单边界条件的闭合解决方案的数值模拟器。将代码应用于骨质岩体的液压刺激表明应力各向异性和断裂取向对开放式不连续性(即液压断裂)和水力剪切的影响。隐式关节连续模型可以容易地扩展到更复杂的耦合过程,包括热和化学现象。

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