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首页> 外文期刊>Landslides >Field survey of a catastrophic high-speed long-runout landslide in Jichang Town, Shuicheng County, Guizhou, China, on July 23, 2019
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Field survey of a catastrophic high-speed long-runout landslide in Jichang Town, Shuicheng County, Guizhou, China, on July 23, 2019

机译:2019年7月23日,贵州市古城县古城镇古城镇灾难性高速长跑车滑坡的现场调查

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摘要

On July 23, 2019, a large catastrophic landslide was triggered by heavy rainfall at Jichang Town, Shuicheng County, Guizhou, China. This high-speed landslide was characterized by a short slip time, long slide distance, and great destructiveness. In less than 2 min, about 2 million m(3) of cataclastic basalt soil failed with a runout of about 1.25 km over a total vertical distance of about 465 m. The landslide destroyed 21 houses and caused 42 fatalities with 9 people missing. To understand the possible mechanisms for the high-speed and long-runout behavior of the landslide, a detailed field survey was conducted. A preliminary analysis was performed on the movement characteristics and formation mechanism of the landslide based on combining data from multitemporal optical satellite remote sensing images, aerial photography from an unmanned aerial vehicle, and InSAR. The historical remote sensing images, InSAR results, and geological monitoring data indicated no obvious deformation signs before the landslide, which implies that it occurred suddenly. The landslide was probably primarily induced by heavy rainfall, while the direct impact of road excavation was small. The terrain controls motion characteristics of the landslide and air blast effect is still visible at the leading edge of the landslide. The results of this study may provide basic data for further research on the mechanisms for landslide initiation and movement.
机译:2019年7月23日,中国贵州市水城县的吉昌镇的大雨引发了一个大型灾难性的滑坡。这种高速滑坡的特点是短暂的滑动时间,长距离和巨大的破坏性。在不到2分钟的时间内,大约200万米米(3)个Cataclastic玄武岩土壤失效,跳动量约为1.25千米,总垂直距离约为465米。滑坡摧毁了21所房屋,并引起了42人死亡,9人失踪。要了解滑坡高速和长跳道行为的可能机制,进行了详细的现场调查。基于组合数据来自多立体光学卫星遥感图像,来自无人驾驶飞行器的空中摄影的旧滑坡的运动特性和形成机制进行了初步分析。历史遥感图像,INSAR结果和地质监测数据表明滑坡前没有明显的变形迹象,这意味着它突然发生。滑坡可能主要是由大雨诱导的,而道路挖掘的直接影响很小。地形控制滑坡和空气喷射效果的运动特性在滑坡的前缘仍然可见。本研究的结果可以提供基本数据,以进一步研究滑坡启动和运动的机制。

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