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1)  Sanmenxia Hydroproject
三门峡水利枢纽
1.
Stress test analysis and treatment of the bottom outlet for the Sanmenxia Hydroproject;
三门峡水利枢纽底孔应力试验分析
2.
Restoration design of the bottom outlet for the Sanmenxia Hydroproject;
三门峡水利枢纽底孔修复设计
2)  Three Gorges Project
三峡水利枢纽
1.
The main functions of the automatic hydrologie tele-metering system for the Three Gorges project are to collect the real time data of water level and precipitation of the region from Chongqing to Yichang, and the weather data of the dam sites of Three Gorges and Gezhouba.
三峡水利枢纽水情自动测报系统是国内目前规模最大的水情自动测报系统,其主要功能是准确及时地采集重庆寸滩——湖北宜昌区间、三峡坝址上下游及三峡——葛洲坝2个枢纽之间的水、雨情实时信息,以及三峡、葛洲坝2个坝址的气象信息。
2.
When the biggest shiplock, spillway and powerhouse in the world were incorporated in the Three Gorges project a series of key technical challenges faced the designer of the metal structures.
三峡水利枢纽有世界最大规模的船闸、溢洪道及电站。
3)  Three Gorges Project(TGP)
三峡水利枢纽
4)  TGP
三峡水利枢纽
1.
Excavation along erection bay III for Stage II works of left powerhouse for TGP;
三峡水利枢纽左岸电站厂房二期工程安Ⅲ一线开挖
2.
Research summary of key technologies on electro-mechanical design of TGP
三峡水利枢纽工程机电设计关键技术研究概述
3.
The most of shaft wells of TGP s permanent shiplock characterize as large section, shaft well group, double steel bar, and large amount of accurately embedded metal structure and especially for the lower shiplock chamber section, the structure is complicated and the steel bar is dense.
三峡水利枢纽永久船闸竖井多为大断面、多井群组合结构,且为双层钢筋,又有大量高精度要求的金结埋件,尤其是下部闸室段结构复杂,钢筋密集,因此工作量大,施工干扰大,施工难度大。
5)  Sanxia Multipurpose project
三峡水利枢纽
6)  the three gorges project
三峡水利枢纽
1.
The scour and change of the riverbed between the Gezhouba Project and the Three Gorges Project since the beginning of the Three Gorges Project are studied according to the measured data and the effect of building the Three Gorges Project on the riverbed change between the two dams is evaluated.
运用实测资料分析研究了三峡工程动工以来葛洲坝水利枢纽至三峡水利枢纽之间河道的冲淤演变情况 ,评价了三峡工程动工对两坝间河床演变的影响。
补充资料:三门峡水利枢纽
三门峡水利枢纽

    位于中国河南省三门峡市和山西省平陆县之间的黄河中游下段。控制流域面积68.8万平方千米,占黄河流域面积的92%。最初的设计思想是蓄水拦沙,即利用其优越的坝址条件修建高坝,借潼关以上的开阔地形,形成大水库蓄水拦沙,并安装8台15万千瓦发电机组。1957年4月开工,1960年大坝建成,但蓄水后发现泥沙淤积严重,并沿渭河向上游发展,淹没或浸没渭河两岸农田,危及西安市的防洪安全。后改蓄水拦沙的设计思想为泄水排沙。经1964~1978年间两次改建,解决了泥沙处理问题。改建后仍能获得防洪、防凌、发电、灌溉等效益。水库总库容159.35亿立方米,大坝为重力坝,最大坝高106米 ,安装5台5万千瓦发电机组,总装机容量25万千瓦。
   
   

三门峡水利枢纽

三门峡水利枢纽

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