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深部基础处理水利工程关键技术研究与实践
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作者 鲁瑞 《科技与企业》 2012年第24期227-227,共1页
深部基础是埋深较大,以下部坚实土层或岩层作为持力层的基础,其作用是把所承受的荷载相对集中地传递到地基的深层。某水电站深部基础的网格置换加固,五层灌浆平洞及排水平洞工程,以及施工支洞等,各类洞井累计64条,10681.0m。通过开展关... 深部基础是埋深较大,以下部坚实土层或岩层作为持力层的基础,其作用是把所承受的荷载相对集中地传递到地基的深层。某水电站深部基础的网格置换加固,五层灌浆平洞及排水平洞工程,以及施工支洞等,各类洞井累计64条,10681.0m。通过开展关键技术研究,优化工序组合,动态调配资源,加强现场管控,较好地把握了工程施工的主动权,实现了优质、安全、高效的施工目标。 展开更多
关键词 水电站 深部基础 网格置换 加密灌浆 施工
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Study on deep structure in Ailaoshan region based on aeromagnetic interpretations
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作者 PENG Yuanyuan LI Shiehao +2 位作者 LU Laijun LIU Guangsheng WU Jun 《Global Geology》 2009年第4期189-193,共5页
Linear and circular interpretation structure maps of different relative depths are obtained by processing 1:200000 aeromagnetic data to the pole in Ailaoshan region,interpreting upward extension of 4 heights,extractin... Linear and circular interpretation structure maps of different relative depths are obtained by processing 1:200000 aeromagnetic data to the pole in Ailaoshan region,interpreting upward extension of 4 heights,extracting a vertical second derivative line of 0 value and a series of calculations. Concealed boundary of deep magnetic rocks can be delineated according to the maps. On the basis of the conclusions above,a set of economical and practical methods to graph the deep structure are summarized. In addition,the relationship between deep structure and mineralization positions is discussed. 展开更多
关键词 Ailaoshan region aeromagnetic data interpretation deep structure MINERALIZATION
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Deep-seated large-scale toppling failure in metamorphic rocks:a case study of the Erguxi slope in southwest China 被引量:8
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作者 LIU Ming LIU Fang-zhou +1 位作者 HUANG Run-qiu PEI Xiang-jun 《Journal of Mountain Science》 SCIE CSCD 2016年第12期2094-2110,共17页
Deep-seated large-scale toppling failure presents unique challenges in the study of natural slope deformation process in mountainous regions.An active deep-seated toppling process was identified in the Erguxi slope lo... Deep-seated large-scale toppling failure presents unique challenges in the study of natural slope deformation process in mountainous regions.An active deep-seated toppling process was identified in the Erguxi slope located in southwest China,which affected a large area and damaged critical transportation infrastructure with the volume of the deforming rock mass exceeding 24×10~6 m^3.It poses significant risks to the downstream Shiziping Hydropower Station by damming the Zagunao River.Field investigation and monitoring results indicate that the deformation of the Erguxi slope is in the advanced stage of deep-seated toppling process,with the formation of a disturbed belt but no identifiable master failure surface.It was postulated that the alternating tensile and shear strength associated with the hard/soft laminated rock strata of metasandstone and phyllite layers preclude the development of either a tensile or shear failure surface,which resulted in the continuous deformation and displacement without a catastrophic mass movement.The slope movement is in close association with the unfavorable geological conditions of the study area in addition to the construction of transportation infrastructure and the increase of the reservoir level.On the basis of the mechanism and intensity of the ongoing toppling deformation,a qualitative grading system was proposed to describe the toppling process and toevaluate the slope stability.This paper summarized the field observation and monitoring data on the toppling deformation for better characterizing its effect on the stability of the Erguxi slope.The qualitative grading system intends to provide a basis for quantitative study of large-scale deep-seated toppling process in metamorphic rocks. 展开更多
关键词 Deep-seated slope deformation Largescale toppling Slope stability Metamorphic rock
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