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Investigation of the hydraulic properties of deep fractured rocks around underground excavations using high-pressure injection tests

机译:使用高压注射试验对地下挖土机地下裂缝液压性能的研究

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Groundwater inrush during excavation is one of the greatest challenges in modem underground engineering. The characteristics of groundwater inrush induced by high-pressure water in fractured rocks are poorly understood, and the risk assessment of water inrush hazard associated with deep geological conditions remains to be improved. Here, we present an in situ high-pressure fluid injection experimental investigation of the hydraulic properties of deep natural fractured rocks. We observe that the injection rate increases as a nonlinear function of the injection pressure, and the process can be divided into an initial flow phase and a flow mutation phase, which indicates flow regime variations during fluid injection. Fluid injection primarily triggers fracture dilation and then results in an evident increase in rock permeability. A conceptual model involving multiple physical processes is derived to describe the permeability evolution and flow behavior of fractured rocks throughout the high-pressure fluid injection tests. The results provide valuable insight for evaluating the evolution of the hydraulic properties of the surrounding rocks in relation to water inrush and dewatering designs.
机译:挖掘过程中的地下水浪涌是调制解调器地下工程中最大的挑战之一。骨折岩石中高压水引起的地下水浪涌的特点知识差不多,以及与深层地质条件相关的水涌入危险的风险评估仍有待提高。在这里,我们提取了深度自然裂缝岩石液压性能的原位高压流体注入实验研究。我们观察到作为喷射压力的非线性函数的喷射率增加,并且该方法可以分成初始流动阶段和流动突变阶段,其指示流体喷射期间的流动调节变化。流体注射主要触发骨折扩张,然后导致岩石渗透性的显明。衍生涉及多种物理过程的概念模型,以描述整个高压流体喷射试验过程中骨折岩石的渗透性演化和流动。结果提供了有价值的见解,用于评估周围岩石的液压特性的演变与水中涌入和脱水设计。

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