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首页> 外文期刊>KSCE journal of civil engineering >Study on the Hydromechanical Behavior of Single Fracture under Normal Stresses
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Study on the Hydromechanical Behavior of Single Fracture under Normal Stresses

机译:正应力作用下单个断裂的流体力学行为研究

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The coupling between hydraulic and mechanical behavior of the fractured rock mass is of great significance for various civil and environmental engineering projects. In order to study the hydro-mechanical behavior of single fracture, seepage tests under different confining pressures and fracture water pressures were conducted on single shear fractures produced by triaxial loading of diabase rock samples from Danjiangkou Water Reservoir, China. Test results show that fluid pressure acting on fracture surfaces has strong influences on the hydraulic behavior of the fracture. Based on the classic Biot poroelasticity theory and by taking the fracture as assembling of a set of voids in rock mass, a generalized Biot coefficient is introduced to describe the interaction effect between pore fluid pressure and fracture deformation. Then, a nonlinear constitutive equation for single fracture under both normal stress and fluid pressure is developed. Later, the mechanical deformation of the fracture is related to the fracture hydraulic conductivity through "cubic law", so that a coupled mechanical-hydraulic model is proposed. All the four parameters involved in this model have their physical significances and can be determined through mechanical compression tests and seepage tests. A first validity of the model is made by predicting the variation of fracture flowrates versus normal stress under different fluid pressures.
机译:裂隙岩体的水力和力学行为之间的耦合对于各种土木和环境工程项目具有重要意义。为了研究单裂缝的流体力学行为,对丹江口水库辉绿岩岩样三轴加载产生的单剪裂缝进行了不同围压和裂缝水压的渗流试验。试验结果表明,作用在裂缝表面的流体压力对裂缝的水力行为有很大的影响。基于经典的Biot孔隙弹性理论,并以裂缝为一组岩体中的空隙的集合,引入广义的Biot系数来描述孔隙流体压力与裂缝变形之间的相互作用。然后,建立了在正应力和流体压力作用下单个断裂的非线性本构方程。后来,通过“立方定律”将裂缝的机械变形与裂缝的水力传导率联系起来,从而提出了一种机械液压耦合模型。该模型涉及的所有四个参数都有其物理意义,可以通过机械压缩试验和渗透试验确定。该模型的第一个有效性是通过预测在不同流体压力下裂缝流速相对于法向应力的变化而得出的。

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