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Flat-bottomed design philosophy of Y-typed bifurcations in hydropower stations

机译:水电站Y型岔管的平底设计思路。

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摘要

The drainage problem in bifurcations causes pecuniary losses when hydropower stations are undergoing periodic overhaul. A new design philosophy for Y-typed bifurcations that are flat-bottomed is proposed. The bottoms of all pipe sections are located at the same level, making drainage due to gravity possible and shortening the draining time. All fundamental curves were determined, and contrastive analysis with a crescent-rib reinforced bifurcation in an actual project was conducted. Feasibility demonstrations were researched including structural characteristics based on finite element modeling and hydraulic characteristics based on computational fluid dynamics. The new bifurcation provided a well-balanced shape and reasonable stress state. It did not worsen the flow characteristics, and the head loss was considered acceptable. The proposed Y-typed bifurcation was shown to be suitable for pumped storage power stations.
机译:当水力发电站进行定期检修时,分叉处的排水问题导致金钱损失。提出了一种平底Y型分叉的新设计原理。所有管段的底部都位于同一高度,从而可以实现因重力作用而排水,并缩短了排水时间。确定了所有基本曲线,并在实际项目中进行了月牙肋加强分叉的对比分析。研究了可行性论证,包括基于有限元建模的结构特性和基于计算流体动力学的水力特性。新的分叉提供了平衡的形状和合理的应力状态。它没有使流动特性恶化,并且水头损失被认为是可以接受的。所提出的Y型分叉被证明适用于抽水蓄能电站。

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