ISSN 1003-8035 CN 11-2852/P

    贵州毕节一字岩崩塌失稳机理与动力演化研究

    Failure mechanism and dynamic evolution of the Yiziyan rockfall in Bijie County, Guizhou Province, China

    • 摘要: 我国西南岩溶地区地质构造复杂,受强降雨与岩溶作用等共同影响,危岩崩塌事件频发,造成严重的人员与财产损失。文章通过现场调查和3DEC模拟等手段对2023年6月20日贵州毕节一字岩危岩带失稳机理与动力演化规律开展研究。结合无人机点云数据、现场节理勘测和随机裂隙网络,构建了可反映一字岩真实地形特征的三维地质离散元模型,模拟了在岩溶风化侵蚀与降雨静水压力耦合作用下基底失效后缘裂隙扩展引发的危岩体整体失稳过程。研究结果表明:一字岩在岩溶侵蚀和静水压力共同作用下,基座逐渐失效引起重心偏移、裂隙贯通及基座底部应力集中,最终导致危岩体失稳并发生典型倾倒式崩塌。数值模拟结果经灾害现场影像校验,重构了一字岩崩塌在岩溶、降雨耦合作用下危岩体失稳启动—凌空加速—破碎解体—碎屑堆积的全动力过程,厘清了危岩体解体破碎与堆积过程的空间分布规律,为西南岩溶山区类似危岩体的稳定性评价与灾害防控提供理论参考。

       

      Abstract: The karst regions of Southwest China are prone to frequent rockfall hazards due to their complex geological structures and the combined effects of intense rainfall and active karst processes. This study investigates the failure mechanism and dynamic evolution of the Yiziyan rockfall that collapsed on June 20, 2023, in Bijie, Guizhou. Integrated UAV-derived point cloud data, field structural surveys, and a stochastic joint network, a 3D discrete-element model was developed to realistically represent the terrain and structural features of the slope. The model simulates the progressive destabilization process triggered by the coupled action of karst weathering-induced basal degradation and hydrostatic pressure within rear tension cracks. Numerical results reveal that basal erosion causes a progressive shift in the center of gravity, enhances crack connectivity, and intensifies stress concentration at the toe, ultimately triggering a typical toppling-type collapse. The simulated failure sequence —initiation, toppling, fragmentation, and deposition—is consistent with video records from the event, clarifying the spatial pattern of block breakage and debris accumulation. These findings provide new insights into the failure process of karst-induced rockfalls and offer a scientific basis for hazard assessment and risk mitigation in similar mountainous areas of Southwest China.

       

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