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1)  water power station
渡水电站
1.
The test study of holistic hydraulic model of Gutian Shuangkoudu water power station;
古田双口渡水电站整体水工模型试验研究
2)  Hongjiadu Hydropower Station
洪家渡水电站
1.
Construction of Environment Protection Engineering of Hongjiadu Hydropower Station;
洪家渡水电站环境保护施工
2.
Stable Analysis of Wenchangge Dangerous Rock Mass in Reservoir Area of Hongjiadu Hydropower Station & Surge Forecast When It Falls Down in the Reservoir;
洪家渡水电站库区文昌阁危岩体稳定分析及入库涌浪预测
3.
Construction Quality Control of the Pre-stressed Anchorage Cables at the Consequent Slope of Intake Structure of the Hongjiadu Hydropower Station;
洪家渡水电站进水口预应力锚索施工质量控制
3)  Nuozhadu Hydropower Station
糯扎渡水电站
1.
Environment impact assessment of Nuozhadu Hydropower Station;
糯扎渡水电站的环境影响评价
2.
Research on River Closure Model Test of Nuozhadu Hydropower Station;
糯扎渡水电站截流模型试验研究
3.
Experimental study on flow-induced vibration in spillway chute of Nuozhadu Hydropower Station;
糯扎渡水电站溢洪道泄槽流激振动试验研究
4)  Xiluodu Hydropower Station
溪洛渡水电站
1.
Application of neural network model with partial least-squares regression to construction of Xiluodu Hydropower Station;
偏最小二乘—神经网络模型在溪洛渡水电站的应用
2.
Prestressed anchor-bar construction in spillway tunnel of Xiluodu hydropower station on right bank;
溪洛渡水电站右岸泄洪洞预应力锚杆施工
3.
Technology improvement of artificial aggregate processing systemof Xiluodu hydropower station;
溪洛渡水电站人工骨料加工系统工艺改进
5)  Nuozhadu hydropower project
糯扎渡水电站
1.
River closure construction of Nuozhadu hydropower project;
糯扎渡水电站大坝工程截流施工
2.
Seepage Deformation Test and Study of Impervious Earth Material for Nuozhadu Hydropower Project;
糯扎渡水电站防渗土料抗渗透变形试验研究
3.
Nuozhadu hydropower project is located in an area where the engineering geology conditions are rather complicated, and in particular a structural soft rock zone exists in the right bank of the damsite, which have a great impact on the engineering geological conditions of the dam foundation.
糯扎渡水电站工程地质条件复杂,尤其是坝址右岸存在的构造软弱岩带,对坝基的工程地质条件影响极大,该软弱岩带存在渗透变形问题。
6)  Laodukou Hydropower Station
老渡口水电站
1.
Construction of impervious wall in CFRD of Laodukou Hydropower Station
老渡口水电站面板堆石坝防渗墙施工
补充资料:乌江渡水电站
      中国西南电网中的大型骨干电站,位于贵州省遵义市南55km长江支流乌江的中游。装机容量63万kW。水库总库容23亿m3,为季调节水库。枢纽以发电为主,兼有航运效益。坝址处河道两岸山坡陡峻,水量充沛。坝址以上控制流域面积27790km2,多年平均流量502m3/s。当地为三迭系石灰岩地层,地质构造复杂,除断层、裂隙外,岩溶十分发育,溶洞最大深度达河床下200m,洞高最大达50m。该电站于1970年开始施工准备,其后曾一度停工,1979年第一台机组发电,1983年竣工。水电站建筑物包括一座混凝土拱形重力坝,坝高165m,是中国在复杂岩溶区兴建的第一座高坝。为使坝基坚固密实和水库不漏水,施工中进行了大规模基础处理。例如在两岸岩体里的溶洞内回填混凝土,体积达8万m3;钻灌防渗帷幕纵向长约1020m,一般深80m(最深处达河床下260m),总面积18.7万m2,分别在10条地下隧道内施灌处理成功,为中国溶岩地区筑坝创造了经验。由于河谷狭窄,最大泄洪流量达21350m3/s,故泄洪方式新颖多样。4个坝顶溢流孔,水流沿坝下游面下泄,在达到坝后厂房顶前,先挑向空中,再越过厂房落入下游河道(即采用挑越式厂房);左右岸各设有一孔滑雪式溢洪道(见彩图)和一个泄洪洞,它们的出口布置在远近高低不同的地点,使洪水分散落入下游河道,消能效果良好。坝后厂房为全封闭式,安装3台单机容量21万kW 的水轮发电机组,多年平均发电量33.4亿kW·h,供电给贵州、四川两省, 主要起调峰作用。此外还有100t级升船机,设计年过坝能力50万t。
  
  

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