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Experimental investigation and numerical simulation on the effect of fissure water pressure in vertical sliding surface

机译:垂直滑动面裂隙水压力影响的试验研究与数值模拟

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This paper studies the effect of fissure water pressure in different fractures on the critical angle of landslide by laboratory investigation and numerical simulation in order to understand the mechanisms of fissure water pressure on landslide stability. Laboratory observations show that the effect of fissure water pressure on the critical angle of landslide is little when the distance between water-holding fracture and slope toe is three times greater than the depth of fissure water. These experimental results are also simulated by a three-dimensional face-to-face contact discrete element method. This method has included the fissure water pressure and can accurately calculate the critical angle of jointed slope when fissure water pressure in vertical sliding surface exists. Numerical results are in good agreement with experimental observations. It is revealed that the location of water-holding structural surface is important to landslide stability. The ratio of the distance between water-holding fissure and slope toe to the depth of fissure water is a key parameter to justify the effect of fissure water pressure on the critical angle of landslide.
机译:本文通过实验室研究和数值模拟研究了不同裂缝中裂隙水压力对滑坡临界角的影响,以了解裂隙水压力对滑坡稳定性的影响机理。室内观测表明,持水裂缝与坡脚之间的距离是裂隙水深的三倍时,裂隙水压力对滑坡临界角的影响很小。这些实验结果也通过三维面对面接触离散元方法进行了模拟。该方法包括了裂隙水压力,当存在垂直滑动面的裂隙水压力时,可以准确计算节理边坡的临界角。数值结果与实验结果吻合良好。结果表明,保水结构面的位置对滑坡的稳定性很重要。持水裂缝与坡脚之间的距离与裂缝水深度的比值是证明裂缝水压对滑坡临界角的影响合理的关键参数。

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