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Mechanism of Shallow Soil Cave-Type Karst Collapse Induced by Water Inrush in Underground Engineering Construction

机译:地下工程建设中涌出浅层土洞型岩溶塌陷机理

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Water inrush disasters are the main cause of karst collapse. In this study, a physical model test was conducted to investigate the mechanism of karst collapse. The formation, expansion, and variation of a soil cave induced by water inrush were studied, including the expansion pattern of soil cavities, the voids between the bottom of the hole, cavity disengagement, wall collapse, and soil cavity expansion. The variation of shear stress in soil under the dynamic change in groundwater level was simulated and analyzed using a finite-difference method. When the groundwater level falls, the expansion and collapse of a soil cave are caused by the concentrated action of shear stress on the arch foot of the soil cave. Results of this study deepen the understanding of karst collapse induced by water inrush in underground engineering and provide guidance for the prevention and control of karst ground collapse. (C) 2019 American Society of Civil Engineers.
机译:潮水灾害是喀斯特崩溃的主要原因。 在这项研究中,进行了物理模型测试以研究喀斯特崩溃的机制。 研究了由水涌诱导的土壤洞穴的形成,膨胀和变化,包括土壤腔的膨胀模式,孔底部之间的空隙,腔脱离,壁塌陷和土腔膨胀。 利用有限差分法模拟和分析了地下水位动态变化下土壤中剪切应力的变化。 当地下水位下降时,土壤洞穴的膨胀和塌陷是由剪切应力对土洞拱脚的集中作用引起的。 该研究的结果深化了地下工程中涌入岩溶塌陷的理解,为喀斯特地面崩溃的预防和控制提供了指导。 (c)2019年美国土木工程师协会。

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