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首页> 外文期刊>KSCE journal of civil engineering >Centrifuge Modeling of Embankment Failure due to Underground Cavity and Its Electrical Resistivity Monitoring
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Centrifuge Modeling of Embankment Failure due to Underground Cavity and Its Electrical Resistivity Monitoring

机译:地下腔及电阻率监测引起的路堤故障的离心模型

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In this paper, embankment or levee failure due to the interaction between a cavity within an embankment body and high water level was simulated in a centrifuge test and monitored by electrical resistivity tomography (ERT) survey technique. As the centrifuge modeling is an effective research tool for levee stability analysis and the ERT survey is generally adopted in field for health monitoring of levee, physical modeling of levee stability problem and its monitoring by the ERT survey in the centrifuge provides a great opportunity for researchers. Initially, 1 g preliminary test was performed for simulating the underground cavity using a buried ice block to ensure the simulation of such cavity in the centrifuge model. Subsequently, 20 g centrifuge test was performed. At the 20 g-level, over the three stages' water level in river side was maintained to simulate expansion of the underground cavity with increase in groundwater level. Continuous ERT survey was simultaneously conducted to monitor the variation of internal state of the embankment body. During the final high water level, subsidence of levee surface occurred at the vertical location on top of the cavity which can lead to embankment failure. The ERT results (two dimensional contour plots) from the centrifuge test correspond well to the expected process of levee subsidence caused by upward development of inner cavity by showing definite resistivity difference between the cavity and adjacent soil. From the centrifuge test, it is concluded that the cavity within the embankment body could induce failure upon interacting with the high water level, and the ERT monitoring could effectively capture the geotechnical process which shows the upward development of underground cavity.
机译:在本文中,在离心机测试中模拟了在离心机测试中和高水位之间的腔体之间的相互作用导致的堤防或堤坝失效,并通过电阻率断层扫描(ERT)测量技术进行监测。随着离心机建模是堤坝稳定性分析的有效研究工具,堤防堤防现场采用了堤坝的健康监测,堤坝稳定性问题的物理建模,并通过离心机的ERT调查监测为研究人员提供了一个很好的机会。最初,使用掩埋冰块模拟地下腔进行初步测试,以确保在离心模型中模拟这种空腔。随后,进行20g离心机试验。在20 G级,在河边的三个阶段的水位上被维持以模拟地下腔的膨胀随着地下水位的增加。同时进行连续的ERT调查,以监测堤防体内内部状态的变化。在最终的高水位期间,堤坝表面的沉降在腔顶部的垂直位置发生,这可能导致堤防失败。来自离心机测试的ERER结果(二维轮廓图)对应于内腔向上发展引起的堤坝的预期过程,通过显示空腔和相邻土壤之间的确定电阻差异。从离心测试中,得出结论,堤防体内的腔在与高水位相互作用时可以引起失效,并且ERT监测可以有效地捕获岩土工程,该过程显示地下腔的上升腔的上升开发。

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