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开茂水库岩溶地下水水文地球化学特征研究 被引量:3
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作者 张世殊 冉从彦 +1 位作者 许模 郭建平 《地下水》 2020年第5期17-20,共4页
为探究开茂水库岩溶水的水化学特征,本文利用该地区49组水样,使用数理统计分析、GIbbs图研究该地区岩溶水来源、水化学类型和演化控制因素,并且使用主要离子毫克当量的比值来探寻其主要离子来源。通过研究结果显示:该区岩溶水的主要来... 为探究开茂水库岩溶水的水化学特征,本文利用该地区49组水样,使用数理统计分析、GIbbs图研究该地区岩溶水来源、水化学类型和演化控制因素,并且使用主要离子毫克当量的比值来探寻其主要离子来源。通过研究结果显示:该区岩溶水的主要来源为地表水的入渗补给,水质呈弱碱性,离子浓度数值由大到小排列为HCO3-、Ca2+、Mg2+、SO42-、K++Na+、CO32-,除K++Na+离子之外,其他主要离子的的空间分布差异较小,人为活动对该区局部区域NO3-的影响较明显;水化学类型以HCO3-Ca类型为主,对水化学离子演化的主控因素为岩石风化,产生水-岩作用,阳离子交替吸附作用微弱;Ca2+和Mg2+的主要来源为碳酸盐岩的溶解,SO42-除石膏溶解的作用外,酸雨以及硫化物氧化也有显著的影响,HCO3-的主要来源为CO2溶解于水所致;开茂水库地下岩溶发育,存在岩溶裂隙,对水库渗漏带来一定的影响。 展开更多
关键词 开茂水库 水化学特征 岩溶水
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Investigation on long-term progressive deformation of engineering slope based on comprehensive monitoring 被引量:2
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作者 ZHANG Shi-shu GUO Song-feng +9 位作者 QI Sheng-wen TANG Feng-jiao HU Jin-shan ZHAO Xiao-ping ran cong-yan WANG Xin ZOU Yu HUANG Xiao-lin ZHENG Bo-wen LIANG Ning 《Journal of Mountain Science》 SCIE CSCD 2022年第6期1576-1587,共12页
A landslide always results from a progressive process of slope deformation. In recent years, an increasing number of slope instabilities have occurred with regard to human engineering activities such as hydropower or ... A landslide always results from a progressive process of slope deformation. In recent years, an increasing number of slope instabilities have occurred with regard to human engineering activities such as hydropower or traffic construction in mountainous area, which cause even greater casualties and economic loss compared with the natural hazards. The development of such earth surface process may hold long period with mechanisms still not fully understood. Using monitoring technology is an effective and intuitive approach to assist analyzing the slope deformation process and their driving factors. This study presents an engineering slope excavated during the construction of Changheba Hydropower Station, which is located in the upper reaches of Dadu River, Sichuan Province, southwest China. The engineering slope experienced and featured a five-year continuous deformation which caused continuous high risks to the engineering activities. We conducted in-depth analysis for such a long-term deformation process based on ground and subsurface monitoring data, collected successive data with a series of monitoring equipment such as automated total station, borehole inclinometers and other auxiliary apparatus, and identified the deformation process based on the comprehensive analysis of monitoring data as well as field investigation. After analyzing the effects of engineering activities and natural factors on the continuous deformation, we found that the overburden strata provided deformable mass while the excavation-produced steep terrain initiated the slope deformation in limit equilibrium state over a long period of time;afterwards, the intense rainwater accelerated slope deformation in the rainy season. 展开更多
关键词 Engineering slope Mountainous area Long-term deformation LANDSLIDES MONITORING STABILITY
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