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首页> 外文期刊>International journal of geomechanics >Seepage Characteristics of Triaxial Compression-Induced Fractured Rocks under Varying Confining Pressures
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Seepage Characteristics of Triaxial Compression-Induced Fractured Rocks under Varying Confining Pressures

机译:不同限制压力下三轴压缩引起的裂缝岩体的渗流特性

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In water-rich rock masses from underground excavations, the flow pressure and confining pressure significantly affect the seepage properties of the fractured rock induced by complex stress. To understand the seepage mechanism of fractured rocks under stress, seepage tests on fractured granite and slate specimens after triaxial compression were carried out under confining pressures from 1 to 10 MPa by using the self-developed temperature-stress-seepage coupling test system. The evolution from linear to nonlinear seepage process is comprehensively investigated by changing the seepage pressures gradient. The flow rate increases when increasing the seepage pressure gradient and decreases when increasing the confining pressure. To illustrate the influence of fracture morphology on the physical mechanism of seepage, fracture surfaces of rock specimens after seepage tests were scanned by a three-dimensional structural optical scanner. The fracture surface morphology of different rock types influences the seepage mechanism in different ways. Under the same seepage condition, the first-order waviness has a greater influence on reducing the critical Reynolds number. The larger the waviness, the more easily the nonlinear seepage occurs in the rock fractures. The relationship between the seepage pressure gradient and the flow rate has been well described by the Forchheimer equation, and the seepage process can be divided into Darcy flow and nonlinear flow. Under the same seepage pressure gradient, the Reynolds number decreases as the confining pressure increases. The nonlinear seepage feature tends to be more evident when increasing the confining pressure. The nonlinear factorE= 0.1 was determined to be the key point to solve the critical Reynolds number and the threshold for nonlinear flow. The Euler numbers of granite fractures are two orders of magnitude larger than that of slate fractures. This is because the first-order waviness on granite fractures fluctuates more significantly than those of slate fractures, leading to a large local resistance loss.
机译:从地下挖掘的富含水中的岩石质量,流量压力和限制压力显着影响复杂应力诱导的裂缝岩的渗流性质。为了了解压力下裂缝岩石的渗流机制,通过使用自发出的温度 - 胁迫 - 渗流耦合测试系统,在三轴压缩后对裂缝花岗岩和板岩样品的渗出试验。通过改变渗流压力梯度,全面研究了从线性到非线性渗漏过程的演变。当增加渗漏压力梯度时,流速增加并且在增加限制压力时降低。为了说明骨折形态对渗流的物理机制的影响,通过三维结构光学扫描仪扫描渗流测试后岩石样品的断裂表面。不同岩石类型的断裂表面形态以不同的方式影响渗流机制。在相同的渗流条件下,一阶波纹对减少临界雷诺数具有更大的影响。波纹越大,在岩石骨折中越容易发生非线性渗漏。渗流压力梯度与流速之间的关系已经通过了前轮方程很好地描述,并且渗流过程可以分为达西流动和非线性流动。在相同的渗流压力梯度下,随着限制的压力增加,雷诺数减小。当增加限制压力时,非线性渗流特征趋于更明显。非线性离子= 0.1被确定为求解临界雷诺数的关键点和非线性流量的阈值。花岗岩骨折的欧拉数量比平坦骨折的两个数量级。这是因为花岗岩骨折上的一阶波纹比石板骨折的波动更显着,导致局部抗性损失大。

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