首页> 外文会议>Asian conference on remote sensing;ACRS >COUPLING A SLOPE STABILITY MODEL AND A FRACTURE FLOW MODEL FOR PREDICTING THE TIMING OF TYPHOON-INDICED LANDSLIDE
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COUPLING A SLOPE STABILITY MODEL AND A FRACTURE FLOW MODEL FOR PREDICTING THE TIMING OF TYPHOON-INDICED LANDSLIDE

机译:预测台风滑坡时间的边坡稳定模型与断裂流模型的耦合

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Triggering hydrology of landsliding can be different between climatic and geologic regions. In Taiwan, large portion of weathered rock fragments contained in mountainous hillslope soils led to a very high conductivity over near surface, and flows within bedrock fractures can be significantly recharged by typhoon rainfalls, and trigger landslides. A coupled model has therefore been developed to predict the timing of rainfall-induced landslides, by integrating a two-layered (soil and fractured bedrock) flow model and a slope stability model. The model was tested in an experiment site located at Hsiuluan Village, northern Taiwan and performed reasonably well in simulating the timing of landslide initiation for a 2004 landslide event. We suggest the model can be applied to other watersheds with similar environment, assuming that reliable rainfall estimates and soil physics data are available.
机译:气候地区和地质地区的滑坡触发水文情况可能不同。在台湾,山区的山坡土壤中包含的大部分风化岩石碎屑导致近地表具有很高的电导率,台风降雨可大大补充基岩裂缝内的流动,并引发滑坡。因此,通过结合两层(土壤和破裂基岩)流动模型和边坡稳定性模型,开发了一个耦合模型来预测降雨诱发的滑坡发生的时间。该模型在台湾北部Hsiuluan村的一个实验点进行了测试,并且在模拟2004年滑坡事件引发滑坡的时间方面表现相当不错。我们建议该模型可以应用于具有类似环境的其他流域,前提是可获得可靠的降雨估算和土壤物理数据。

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