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基于边开挖边浇筑的水库大坝盖板混凝土施工技术
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作者 蔺旭勃 《陕西水利》 2024年第4期137-139,共3页
边开挖边浇筑的水库大坝盖板混凝土施工技术是一种以开挖为基础、同时进行浇筑和养护的施工技术,为探讨基于边开挖边浇筑的水库大坝盖板混凝土施工技术,结合黄石沟沉沙调蓄水库的实际情况,立足边开挖边浇筑的优势,分析水库大坝盖板混凝... 边开挖边浇筑的水库大坝盖板混凝土施工技术是一种以开挖为基础、同时进行浇筑和养护的施工技术,为探讨基于边开挖边浇筑的水库大坝盖板混凝土施工技术,结合黄石沟沉沙调蓄水库的实际情况,立足边开挖边浇筑的优势,分析水库大坝盖板混凝土施工技术的应用要点。结果表明,该技术可以在保证大坝结构安全的前提下,加快施工速度和质量,提高施工效率和经济效益,值得在类似工程中推广和应用。 展开更多
关键词 边开挖 边浇筑 水库大坝 盖板混凝土
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水利工程隧洞边开挖边衬砌施工技术探研
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作者 杨国林 《中文科技期刊数据库(全文版)工程技术》 2023年第4期38-42,共5页
目前城市地下轨道交通由于埋深浅、地面交通影响,多采用盾构机技术、浅埋暗挖技术、及其他地下工程施工辅助技术。对于水利工程中,隧洞施工一般采取隧洞锁口、隧洞洞身开挖、隧洞洞身临时支护、隧洞洞身钢筋混凝土永久衬砌的传统施工方... 目前城市地下轨道交通由于埋深浅、地面交通影响,多采用盾构机技术、浅埋暗挖技术、及其他地下工程施工辅助技术。对于水利工程中,隧洞施工一般采取隧洞锁口、隧洞洞身开挖、隧洞洞身临时支护、隧洞洞身钢筋混凝土永久衬砌的传统施工方法。本文介绍针对水利工程隧洞采取边开挖边衬砌施工技术,有效地解决了地质围岩稳定性差、掉块严重、沿层面发生垮塌、隧洞位移频繁、临时支护变形大等问题,并从运用效果方面进行分析评价。 展开更多
关键词 水利工程 围岩稳定性差 边开挖边衬砌 分析评价
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3D deformation effect and optimal excavated design of surface mine 被引量:2
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作者 WANG Shu-ren FENG Ji-li 《Journal of Coal Science & Engineering(China)》 2009年第4期361-366,共6页
The three-dimensional (3D) deformation effect of the slope engineering under the step-by-step excavation for the Antaibao surface mine was analyzed using the FLAC^3D technique. An optimal excavated scheme with a rel... The three-dimensional (3D) deformation effect of the slope engineering under the step-by-step excavation for the Antaibao surface mine was analyzed using the FLAC^3D technique. An optimal excavated scheme with a relatively steeper slope angle of 47° instead of 30° was successfully implemented at the west wall in the geological section 73200 of the mine area, where the 3D effect of the nonlinear large deformation of the slope was taken into account. Based on the above research conclusion, put forward the countermeasures of shortening mining length, excavating by different regions, timely foot backfilling to protect the excavated slope, and monitoring and feedback adjustment by studying the nonlinear effect. The results show that these countermeasures are effective in controlling maximum deformation and increasing the stability of the slope. 展开更多
关键词 surface mine slope engineering 3D deformation effect mining design FLAC^3D
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High Slope Stability of Diversion Power System Intake of Jinchuan Hydropower Station 被引量:1
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作者 TANG Liang-qin TANG Kui +2 位作者 NIE De-xin WANG Jun-jie LIU Dong-yan 《Journal of Mountain Science》 SCIE CSCD 2013年第6期1109-1117,共9页
The excavated height of the left bank slope of the diversion power system intake in Jinchuan hydropower station is about 16o m. The stability and safety of the slope during construction and its operation/utilization b... The excavated height of the left bank slope of the diversion power system intake in Jinchuan hydropower station is about 16o m. The stability and safety of the slope during construction and its operation/utilization become one of the most important geological engineering problems. At the same time, it is also crucial to select a safe and economic excavation gradient for the construction. We studied the problem of how to select a safe and economic slope ratio by analyzing the geological condition of the high slope, including the lithology, slope structure, structural surface and their combinations, rock weathering and unloading, hydrology, and the natural gradient. The study results showed that the use of an excavation gradient larger than the gradient observed during site investigation and the gradient recommended in standards and field practice manuals is feasible. Then, we used the finite element method and rigid limit equilibrium method to evaluate the stability of the excavation slope under natural, rainstorm and earthquake conditions. The calculated results showed that the excavated slope only has limited failure, but its stability is greatly satisfactory. The research findings can be useful in excavation and slope stabilization projects. 展开更多
关键词 Jinchuan Hydropower Station Highslope Excavation slope ratio STABILITY
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