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The design of Three Gorges Hydropower Station

机译:三峡水电站设计

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Using physical model and numerical simulation techniques, some technical problems were studied systemati- cally, including layout of power station, measures of sediment and floating debris discharging, types of intake, embed- ded types of spiral ease, layout of underground powerhouse tunnel group and block reinforcement. It was optimal in technique and economy with the arrangement of powerhouse at the dam-toe of both banks + underground powerhouse in the right bank, as well as the intake with a single and small orifice. The sediment and debris problems could be solved with disperse sediment ejection and floating debris discharging holes. With the adoption of techniques for spiral cases such as heat and pressure preservation, cushion layer and combined embedding, the stable operation of generating units can be guaranteed. The arrangement of tailrace tunnel with sloping ceiling was better than that of tailrace surge tank. The technical requirements related to the embedding type of spiral case were proposed. The reinforcement of huge unfavorable blocks was discussed and the new idea for block reinforcement using anti-sliding piles and normal compressive stress of structural plane was put forward.
机译:使用物理模型和数值模拟技术,对一些技术问题进行了系统地研究,包括电站布局,沉积物和浮动碎片排放的措施,进气类型,螺旋轻松的类型的螺旋轻松,地下功劳隧道组的布局块加固。它在右岸两岸+地下厂房的大坝脚趾的强电场所的技术和经济方面是最优的。以及单个和小孔的摄入量。可以用分散沉积物喷射和浮动碎片排出孔来解决沉积物和碎屑问题。随着螺旋形式的技术,例如热和压力保存,缓冲层和组合嵌入,可以保证发电机的稳定运行。 Tailrace隧道的布置与倾斜的天花板优于Tailrace电涌罐。提出了与嵌入式螺旋案相关的技术要求。提出了巨大的不利块的加强,并提出了使用抗滑动桩和结构平面的正常压缩应力的块增强的新思想。

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