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场地积水和地下室以及地基渗漏水原因和防治
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作者 张晓红 《山西建筑》 2012年第28期95-96,共2页
结合具体实例对场地积水和地下室及地基渗漏水的原因进行了分析,并探讨了相应的防治措施,指出场地积水和地下室以及地基渗漏水的原因是多方面的,实际施工中应加强设计和施工两方面质量管理,并严把材料关。
关键词 场地积水 地下室 地基 渗漏 维护管理
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Field observations of debris-flow initiation processes on sediment deposits in a previous deep-seated landslide site 被引量:4
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作者 Fumitoshi IMAIZUMI Satoshi TSUCHIYA Okihiro OHSAKA 《Journal of Mountain Science》 SCIE CSCD 2016年第2期213-222,共10页
Although information regarding the initiation processes of debris flows is important for the development of mitigation measures,field data regarding these processes are scarce.We conducted field observations of debris... Although information regarding the initiation processes of debris flows is important for the development of mitigation measures,field data regarding these processes are scarce.We conducted field observations of debris-flow initiation processes in the upper Ichinosawa catchment of the Ohya landslide,central Japan.On 19 June 2012,our videocamera monitoring systems recorded the moment of debris-flow initiation on channel deposits(nine surges) and talus slopes(eight surges).The initiation mechanisms of these surges were classified into three types by analyzing the video images: erosion by the surface flow,movement of deposits as a mass,and upward development of the fluid area.The first type was associated with the progress of surface flow from the upper stream on unsaturated channel deposits.The second type was likely caused by an increase in the pore water pressure associated with the rising in the groundwater level in channel deposits;a continuous water supply from the upper stream by the surface flow might have induced this saturation.The third type was associated with changes in the downstream topography caused by erosion.The flow velocity of most surges was less than 3 m s^(-1) and they usually stopped within 100 m from the initiation point.Surges with abundant pore fluid had a higher flow velocity(about 3- 5 m s^(-1)) and could travel for alonger duration.Our observations indicate that the surface flow plays an important role in the initiation of debris flows on channel deposits and talus slopes. 展开更多
关键词 Debris flow Initiation zone Field monitoring Ohya landslide
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