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半干旱矿区地裂缝对土壤水分和地表剪切强度的影响 被引量:10
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作者 杜国强 陈秀琴 +1 位作者 郄晨龙 杨德军 《生态与农村环境学报》 CAS CSCD 北大核心 2016年第2期224-228,共5页
为研究矿区地裂缝对土壤水分及地表剪切强度的影响规律,针对井工煤矿采煤产生的沉陷裂缝,通过野外现场试验,对垂直裂缝方向上的土壤含水率和地表剪切强度进行测定并进行相关性分析。结果表明,在沿垂直裂缝的方向上土壤含水率与测点距裂... 为研究矿区地裂缝对土壤水分及地表剪切强度的影响规律,针对井工煤矿采煤产生的沉陷裂缝,通过野外现场试验,对垂直裂缝方向上的土壤含水率和地表剪切强度进行测定并进行相关性分析。结果表明,在沿垂直裂缝的方向上土壤含水率与测点距裂缝的距离之间呈一定的正相关关系,相关性未达显著水平(P>0.05),初步得到土壤平均含水率随距地裂缝距离的增加而增大,地裂缝的出现一定程度上降低了裂缝及其周边土体含水率;地表剪切强度与距地裂缝距离之间呈一定的正相关关系,相关性未达显著水平(P>0.05),初步得到地裂缝对周围土体结构产生一定影响,即距地裂缝越近,剪切强度越低,地裂缝的出现降低了地裂缝及其周边土体的剪切强度。 展开更多
关键词 地裂缝 土壤含水率 地表剪切强度 半干旱矿区
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Debris Flows Introduced in Landslide Deposits under Rainfall Conditions:The Case of Wenjiagou Gully 被引量:9
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作者 ZHOU Jia-wen CUI Peng +2 位作者 YANG Xing-guo SU Zhi-man GUO Xiao-jun 《Journal of Mountain Science》 SCIE CSCD 2013年第2期249-260,共12页
Debris flows often occur in landslide deposits during heavy rainstorms.Debris flows are initiated by surface water runoff and unsaturated seepage under rainfall conditions.A physical model based on an infinitely long,... Debris flows often occur in landslide deposits during heavy rainstorms.Debris flows are initiated by surface water runoff and unsaturated seepage under rainfall conditions.A physical model based on an infinitely long,uniform and void-rich sediment layer was applied to analyze the triggering of debris-flow introduced in landslide deposits.To determine the initiation condition for rainfall-induced debris flows,we conducted a surface water runoff and saturated-unsaturated seepage numerical program to model rainfall infiltration and runoff on a slope.This program was combined with physical modeling and stability analysis to make certain the initiation condition for rainfall-introduced debris flows.Taking the landslide deposits at Wenjiagou gully as an example,the initiation conditions for debris flow were computed.The results show that increase height of surface-water runoff and the decrease of saturated sediment shear strength of are the main reasons for triggering debris-flows under heavy rainfall conditions.The debris-flow triggering is affected by the depth of surface-water runoff,the slope saturation and shear strength of the sediment. 展开更多
关键词 Debris flow Rainfall Surface-waterrunoff Unsaturated seepage Physical modeling Numerical modeling
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