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Effects of anisotropic permeability of fractured rock masses on underground oil storage caverns

机译:裂隙岩体各向异性渗透率对地下储油洞的影响

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An isotropic assumption is often applied to analyze permeability tests of in situ fractured rock mass, and the homogeneous hydraulic conductivities are then used directly in the seepage analysis. However, the hydraulic conductivities are normally anisotropic in fractured rock masses and the effects of the anisotropic permeability should be taken into account in rock engineering analysis, especially for seepage analysis of underground oil storage caverns. In this study, an underground oil storage cavern project is analyzed and the Oda's method is used to determine the anisotropy in permeability, where the anisot-ropy in permeability is determined using the fracture orientation and the in situ stress information from the field survey. The horizontal hydraulic conductivities are obtained based on the geometric average hydraulic conductivities from the injection tests of six boreholes. A typical cavern unit is numerical modeled using code FLAC. The effects of anisotropic permeability on water pressure, water quantities and critical gas pressure are studied carefully. The results indicate that most calculated results based on in situ hydraulic tests with isotropic permeability assumption can be used safely in the underground oil storage cavern project.
机译:各向同性假设通常用于分析原位裂隙岩体的渗透性测试,然后将均质水力传导率直接用于渗流分析。但是,在裂隙岩体中,水力传导率通常是各向异性的,因此在岩石工程分析中,尤其是在地下储油洞的渗流分析中,应考虑各向异性渗透率的影响。在这项研究中,分析了一个地下储油洞工程,并使用Oda方法确定渗透率的各向异性,其中渗透率的各向异性通过裂缝的方向和现场调查的现场应力信息确定。根据六个钻孔的注入试验的几何平均水力传导率获得水平水力传导率。典型的洞穴单位使用代码FLAC进行数值建模。仔细研究了各向异性渗透率对水压,水量和临界气压的影响。结果表明,基于各向同性渗透率假设的原位水力试验的大部分计算结果可安全用于地下储油洞工程。

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