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The analysis of slippage failure of the HuangNanBei slope under dry-wet cycles in the three gorges reservoir region, China

机译:三峡库区干湿循环下黄南北坡滑坡失效分析

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The purpose of this paper is to study the sliding failure of the jointed rock slope caused by the degradation of rock mass mechanics under dry-wet cycles. Based on the mechanical parameters of reservoir limestone obtained under different numbers of dry-wet cycles, a discrete element approach was adopted to analyze the slippage failure mode of HuangNanBei slope in the Three Gorges Reservoir Region. The Barton-Bandis nonlinear strength criterion for discontinuities was used to improve the Mohr-Coulomb (M-C) sliding model, and the modified M-C sliding model could make the shear strength parameters of the discontinuities change with the stress state. Under the modified model, there was a tendency for disintegration between blocks in the process of slippage, which was more in line with the actual working conditions and proved the validity and necessity of this model. Furthermore, the slip rate increased with the increase of dry-wet cycles, and the increase trend had not slowed down after 30?dry-wet cycles. The cumulative displacement from 0 to 30?dry-wet cycles was obtained by changing the mechanical parameters of the discontinuities every 10 steps to simulate each dry-wet cycle. The pattern of the cumulative displacement curve was consistent with the slip curve of the 30th dry-wet cycle, which indicated that the degradation of the rock mass mechanics is irreversible. Consequently, strengthening the hydro-fluctuation belt is of great significance for disaster prevention and control in the reservoir region.
机译:本文的目的是研究由干湿循环下岩体质量力学的降解引起的连接岩边的滑动失效。基于在不同数量的干湿循环下获得的储层石灰石的机械参数,采用了一种离散元件来分析三峡库区黄南北坡的滑动失效模式。用于改善不连续性的Barton-Bandis非线性强度标准来改善Mohr-Coulomb(M-C)滑动模型,改性的M-C滑动模型可以使不连续性的剪切强度参数随压力状态而变化。在修改模型下,在滑动过程中块之间的倾向倾向,这更加符合实际工作条件,并证明了该模型的有效性和必要性。此外,随着干湿循环的增加,滑移率增加,30°后,增加趋势在30°后却没有放缓。干湿循环。通过改变每10步的不连续性的机械参数来模拟每个干湿循环来获得从0到30的累积位移。累积位移曲线的图案与第30个干湿循环的滑动曲线一致,这表明岩石质量力学的劣化是不可逆转的。因此,强化水力波动带对水库区域的防灾和控制具有重要意义。

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