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兴仁“6·10”彭家洞高速滑坡运动特征与形成机理 被引量:3
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作者 廖德武 郑冰 +3 位作者 杜艳松 张君恺 兰中孝 吴正超 《地质科技通报》 CAS CSCD 北大核心 2022年第6期66-76,共11页
2021年6月10日20时30分左右,贵州省兴仁彭家洞发生高速滑坡,滑坡体高速运动沿途铲刮坡面崩塌堆积体,造成3人遇难,18栋房屋损毁。通过对滑坡发生前后影像资料遥感解译、灾害发生现场详细的地质调查及室内综合分析等技术手段,对彭家洞滑... 2021年6月10日20时30分左右,贵州省兴仁彭家洞发生高速滑坡,滑坡体高速运动沿途铲刮坡面崩塌堆积体,造成3人遇难,18栋房屋损毁。通过对滑坡发生前后影像资料遥感解译、灾害发生现场详细的地质调查及室内综合分析等技术手段,对彭家洞滑坡的特征进行了详细描述,阐明了滑坡发生的运动特征与形成机理。研究表明:斜坡地形“上陡-中缓-下陡”与岩土结构“上硬下软”是滑坡形成的内在因素,人类工程活动、强降雨的饱水加载和下渗软化作用是滑坡形成的外在因素;滑坡平面形态呈折线形,根据运动特征和堆积结构将滑坡分为滑源区(Ⅰ)、铲刮-流通区(Ⅱ)、铲刮堆积区(Ⅲ)3个区;滑坡是由危岩带形成、滑坡孕育及斜坡失稳3个阶段孕育形成的挤压-推移式高速滑坡。研究结果对贵州类似的斜坡地带及岩土结构区域开展防灾减灾工作具有较强的指导作用。 展开更多
关键词 高速滑坡 崩塌堆积体 运动特征 形成机理 滑坡形成演化
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Formation and evolution of Emeishan basalt saprolite in vadose zones of Touzhai landslide source rockmass 被引量:1
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作者 YANG Ji-qing XU Ze-min +4 位作者 ZHANG Rui CHEN Ji-pu REN Zhe LUO Rong-zhang ZHANG Xiu-shuo 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1174-1184,共11页
In order to explain the formation process of slope hazards, and to identify the key factors leading to instability of a slope, Emeishan basalt saprolite in vadose zones of the Touzhai landslide in Zhaotong, Yunnan, wa... In order to explain the formation process of slope hazards, and to identify the key factors leading to instability of a slope, Emeishan basalt saprolite in vadose zones of the Touzhai landslide in Zhaotong, Yunnan, was studied. The formation and evolution of Emeishan basalt saprolite was examined using, amongst other techniques, field investigations,thin section analysis, scanning electron microscopy(SEM) observations, chemical analysis, physical and water-physical property tests of rock masses. Field observations revealed that the majority of the weathered rock blocks were presented as a concentric layer structure in which an internal corestone was enveloped with several layers of external saprolized crust. Chemical and mineralogical analysis identified that iron was the most sensitive element and that the weathering progress usually started with the oxidation of Fe2+ to Fe3+ in rock blocks. Alkaline elements such as Si, Ca, Mg, Na and K were also dissolved and Fe and Al were concentrated in saprolized crusts. Results indicated that loss on ignition(LOI) also increased significantly. SEM results showed that the weathering intensity of thebasalt blocks decreased gradually from the outside to the inside, and the mineral morphology significantly differed on both sides of the weathering front. The saprolized crusts presented cellular microstructure features due to the generation of micropore and clay minerals. Thin section analysis showed that plagioclase was relatively more stable than pyroxene and chlorite during weathering. With a centripetal propagation of the weathering front, saprolized crusts became thicker and corestones became smaller; fresh Emeishan basalt blocks gradually turned into saprolized blocks. Due to the loose structure and low strength of saprolite, the quality of the Emeishan basalt mass significantly deteriorated, this being a potentially important factor which caused the Touzhai landslide to occur. 展开更多
关键词 Vadose zone Emeishan basalt Scanning electron microscopy Saprolite Corestone Touzhai landslide
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