1) Laxiwa Hydropower Station
拉西瓦水电站
1.
Cause Analysis of Welding Crack of Stay Ring and Spiral Case of the Generating Units for Laxiwa Hydropower Station and Their Treatment Measures;
拉西瓦水电站机组座环、蜗壳焊接裂纹成因分析及处理措施
2.
Study on the Formwork Removal Schedule of Concrete of Tailrace Tunnel of Laxiwa Hydropower Station;
拉西瓦水电站尾水洞混凝土拆模时间研究
3.
Delamination Excavation of Machine Hall Cavern and Excavation & Support of the Cavern s Arch Crown for Laxiwa Hydropower Station;
拉西瓦水电站地下厂房开挖分层及顶拱的开挖支护
2) Laxiwa hydropower project
拉西瓦水电站
1.
Experiment and research on rapid and successful drilling in broken rock of No.2 deformation body of Laxiwa hydropower project;
拉西瓦水电站Ⅱ号变形体破碎岩体快速成孔施工技术的试验与研究
2.
It briefly describes the working principle of stepping motor based upon the gate tests at the intake tunnel for Laxiwa hydropower project.
以拉西瓦水电站进水口快速闸门模型试验为例,简要阐述了步进电机的工作原理。
3) Laxiwa Hydropower Engineering
拉西瓦水电工程
1.
The Laxiwa Hydropower Engineering is located at high mountains and valley regions,existing high geostress in the rock masses due to the multiple-factor influences such as tectonic stress,gravity,river and weathering erosion,etc.
拉西瓦水电工程坝址区为高山峡谷地貌,受地质构造应力、自重、地表剥蚀和河流侵蚀卸荷等多因素影响而赋存有高地应力,河谷区钻孔岩芯饼化与探洞片状剥落现象明显。
2.
The excavation disturbance and anchoring effects of high-geostress dam foundation slope of Laxiwa Hydropower Engineering on the Yellow River are systematically studied based on a detailed numerical simulation of excavation and anchoring processes.
基于对开挖与锚固等施工过程的详细数值模拟,围绕拉西瓦水电工程高应力坝基边坡开挖扰动及锚固效应问题开展深入研究,获得该高应力坝基边坡岩体应力、变形与塑性屈服区的开挖扰动特征及其断层影响效应,分析锚固支护对边坡应力、变形及屈服区的作用效果。
5) Laxiwa hydro project
拉西瓦水利枢纽
1.
Design and construction methods on river diversion and river closure for the Laxiwa hydro project on the Yellow River, developed based on the hydrologic, climatic, topographic and geologic conditions, are described.
结合黄河上游拉西瓦水利枢纽工程的水文、气象、地形和地质等特点,论述了水利枢纽工程导流、截流设计及其施工方法。
6) Xijing hydropower station
西津水电站
1.
The article checks and calculates the designed flood,checked flood peak flux,flood level,flood discharge ability, and dam height of Xijing hydropower station,which shows the flood discharge ability and dam height can meet the require- ment of security.
文章通过对西津水电站设计洪水、校核洪水洪峰流量、洪水位、泄洪能力以及坝高进行复核计算,以此说明西津水电站的泄流能力和坝高满足安全要求。
补充资料:瓦拉纳西
瓦拉纳西 Varanasi 印度北部北方邦东南部都市。旧称贝拿勒斯。人口约70万。居民多为印度教教徒,也有穆斯林和耆那教、锡克教教徒。位于恒河偏北旁曲地段,自古号称印度教七大圣地之一。根据印度教教义,瓦拉纳西是最神圣的城市,恒河是最神圣的河。朝拜者为了能在恒河沐浴,自全国各地集至此地。该城起源极早,可追溯至公元前1000年,释迦牟尼第一次说法便在附近。印度历史上所有宗教和学术的名人都于此得到荣誉,因此该城是印度宗教和学术的象征。寺院有湿婆庙、金庙、猴王哈努曼庙等。瓦拉纳西的金银刺绣、金属加工、宝石加工、陶器等手工艺品相当闻名,并具有印度最美的河畔风光。城内有3所大学,其中贝拿勒斯印度教教徒大学最有名,设有15个学院和6个附属学院。 |
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