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Failure Mode of the Water-filled Fractures under Hydraulic Pressure in Karst Tunnels

机译:岩溶隧道水力充填裂缝的破坏模式

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摘要

Water-filled fractures continue to grow after the excavation of karst tunnels, and the hydraulic pressure in these fractures changes along with such growth. This paper simplifies the fractures in the surrounding rock as flat ellipses and then identifies the critical hydraulic pressure values required for the occurrence of tensile-shear and compression-shear failures in water-filled fractures in the case of plane stress. The occurrence of tensile-shear fracture requires a larger critical hydraulic pressure than compression-shear failure in the same fracture. This paper examines the effects of fracture strike and lateral pressure coefficient on critical hydraulic pressure, and identifies compression-shear failure as the main failure mode of water-filled fractures. This paper also analyses the hydraulic pressure distribution in fractures with different extensions, and reveals that hydraulic pressure decreases along with the continuous growth of fractures and cannot completely fill a newly formed fracture with water. Fracture growth may be interrupted under the effect of hydraulic tensile shear.
机译:岩溶隧道开挖后,充满水的裂缝继续增长,这些裂缝中的水力压力随着裂缝的增长而变化。本文将平坦的椭圆简化为围岩中的裂缝,然后确定了在平面应力情况下充水裂缝中发生拉伸剪切和压缩剪切破坏所需的临界液压值。与相同断裂中的压缩剪切破坏相比,拉伸剪切断裂的发生需要更大的临界液压。本文研究了裂缝走向和侧向压力系数对临界水压的影响,并将压剪破坏确定为充水裂缝的主要破坏方式。本文还分析了不同延伸裂缝中的水力压力分布,揭示了水力压力随着裂缝的不断增长而降低,不能完全填充新形成的裂缝。在水力拉伸剪切作用下,断裂的生长​​可能会中断。

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