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Modified Analytical Technique for Block Toppling Failure of Rock Slopes with Counter-Tilted Failure Surface

机译:岩石斜坡块膨胀失效的修改分析技术

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摘要

A broad mathematical technique for evaluating rock slope stability subjected to toppling of rock columns centered on limit equilibrium is presented. In the current analytical models for evaluating toppling of rock columns for the rock slopes, a single weak plane angle is assumed, running from the top surface of the slope and daylights on the toe of the slope. However, in some physical rock slopes, there exists counter-tilted failure surface within the rock masses of the rock slope and the weak plane may not daylight on the predictable point on the face of the slope following the assumed single weak plane angle. Therefore, applying the current analytical techniques in such conditions may not yield realistic results. A searching technique for estimating angles of counter-tilted failure surface is proposed and incorporated into the existing mathematical technique for evaluating toppling of rock columns centering on limit equilibrium principles. The physical slope with counter-tilted failure surface was comprehensively analyzed using the modified mathematical method and results were validated by numerical simulation using 3DEC 4.1 discrete element method. The influences of relative angles of the counter-tilted failure surfaces on the slope stability have been studied and the results show that, progressive increase of the counter-tilted failure surface angles lead to gradual increase in slope instability. The modified analytical method optimizes and combines the advantages of the traditional analytical techniques and could provide precise analytical method for evaluating stability of rock slopes with counter-tilted planar failure surfaces subjected to toppling of rock columns.
机译:提出了一种用于评估岩石坡稳定性的广泛的数学技术,其对极限均衡为中心的岩石柱的浇头。在用于评估岩石斜面岩石焊盘的膨胀的当前分析模型中,假设单个弱平面角度,从斜面的顶表面和斜面上的脚趾上的日光运行。然而,在一些物理摇滚斜面中,岩石斜面的岩石质量内的反向倾斜的故障表面,并且在假定的单个弱平面角度之后,弱平面可能不会在可预测点上的可预测点。因此,在这种条件下应用当前的分析技术可能不会产生现实的结果。提出了一种用于估计反向倾斜故障表面的角度的搜索技术,并结合到现有的数学技术中,用于评估岩柱倒塌在极限平衡原理上的跳跃。使用修改的数学方法综合分析了具有反向倾斜的故障表面的物理斜率,并通过使用3DEC 4.1离散元件方法进行数值模拟来验证结果。已经研究了对反倾斜故障表面对斜坡稳定性的相对角度的影响,结果表明,反向倾斜的故障表面角度的逐渐增加导致坡度不稳定性的逐渐增加。改进的分析方法优化并结合了传统的分析技术的优点,可以提供精确的分析方法,用于评估岩石斜面的稳定性,与岩柱倒塌的反倾斜平面故障表面进行岩石斜面。

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