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1) Suwalong Water Power Station
苏洼龙水电站
1.
Appraisal of overburden layer sand liquefaction for dam site in Suwalong Water Power Station;
苏洼龙水电站坝址区覆盖层砂土液化评价
2.
The depth of overburden layer is large in dam site of Suwalong Water Power Station,and its components are complex, which cause many difficulties to obtain the undisturbed specimen from every layer respectively.
苏洼龙水电站坝址区覆盖层厚度大,成份复杂,各层位分别获取原状试样困难。
2) Suwalong Hydropower Station
苏哇龙水电站
1.
Application of multi-casting drilling to engineering investigation of Gongzha landslides for Suwalong Hydropower Station
多级跟管钻进工艺在苏哇龙水电站贡扎滑坡体工程勘察中的应用
3) Wanao Hydropower Station
洼垴水电站
1.
Test Study on Water Diversion and Sediment Control for Convex Bank of Wanao Hydropower Station
洼垴水电站凸岸引水防沙试验研究
4) Suzhi HPP
苏只水电站
1.
Selection of Main Electric Connection for Suzhi HPP;
苏只水电站电气主接线选择
2.
The safety monitoring items established for the Suzhi HPP are complete,and the monitoring methods are simple and reliable,which can reflect the operation state of structures systematically.
介绍了苏只水电站工程安全监测项目及监测方法,并对首次蓄水期主要观测资料进行了初步分析。
3.
Taking the Suzhi HPP on the Yellow River as an example,and as for units operating at 25 m head,this paper discusses in detail the tech-economic comparison of the 2 types of axial flow Kaplan turbine and bulb tubular turbine.
以黄河上游苏只水电站为例,针对25m水头段的机组,详细讨论轴流转桨式与灯泡贯流式2种机型的技术经济比较。
5) Longtan Hydropower Station
龙滩水电站
1.
Practice and Experience of Environment Protection and Water-soil Conservation Supervision for Longtan Hydropower Station;
龙滩水电站环保水保综合监理的实践与体会
2.
Waste Water Disposal for Macun Aggregate Production System of Longtan Hydropower Station;
龙滩水电站麻村砂石加工系统废水处理
3.
Engineering characteristics of defective geological bodies at right-bank dam abutment of Longtan Hydropower Station and analysis of their causes;
龙滩水电站右岸坝肩边坡不良地质体特征及成因分析
6) Long-pan Hydropower Station
龙盘水电站
1.
SWOT Analysis on Constructing the Long-pan Hydropower Station and the Hu-tiao Gorge Tourism for Coordinate Development in the Middle Section of the Jin-sha River;
云南金沙江中游河段龙盘水电站建设与虎跳峡河段旅游协同发展的SWOT分析
补充资料:马斯吉德苏莱曼水电站
马斯吉德苏莱曼水电站 | Masjed E SoleymanHydropower Station |
| 概 述 | 马斯吉德苏莱曼水电站(以前称格德赖·朗德水电站)位于伊朗胡齐斯坦省、卡伦(Karun)河上,在马斯吉德苏莱曼市东北25km处,在卡伦Ⅰ级水电工程下游23.5km。该工程主要用于发电。粘土心墙堆石坝,最大坝高177m,水库总库容2.28亿m3,有效库容0.48亿m3。一期水电装机容量100万kW,将来扩展成200万kW,年发电量37亿kW·h。工程于1994年12月开工,拟定2000年8月第一台机组发电,2001年完工。 坝址处基岩为弱到中等强度的粘土岩、粉砂岩、砂岩和砾岩。 工程建筑物主要有以下几项: 粘土心墙堆石坝,坝顶长度为480m,体积1340万m3。上游围堰高达80m,将成为坝体的一部分。 泄槽式溢洪道位于右坝肩堰顶设有5扇13.25m×23.55m弧形闸门,可通过可能最大洪水21700m3/s的流量。末端接有一消力池。 厂房为地下厂房,位于右岸,溢洪道右侧,洞室尺寸为154.4m×30m×47.5m,内设4台25万kW的混流式水轮发电机组,该机组运行时净水头139.6m,额定流量190m3/s,额定转速187.5r/min,设置的同步发电机额定功率为263MVA。另外4台机组将待二期工程进行安装,将来该洞室要拓长98m。 变压器室紧靠厂房洞室,尺寸为110m×13.6m×20.8m。将来二期工程将此长度要拓展一倍。 洞室开挖时一般用承载力20t的锚杆结合钢丝网和2层喷混凝土支护;叉洞之间的岩柱用长20m,承载力100t的地锚加固。 发电引水系统:引水隧洞内径9.5m,压力竖井内径9.5m,上游叉洞内径5.8m,下游叉洞内径8m,尾水隧洞内径11m,除上、下游叉洞外,一般用混凝土衬砌。 工程施工采用围堰截流,隧洞导流的方法。导流隧洞布置在左岸,共2条,平行布置。 | | |