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Multiple Inflow Branches at Supercritical-Type Vortex Drop Shaft

机译:超临界涡旋落井处有多个流入分支

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摘要

Vortex drop shafts serve to overcome important elevation differences in drainage systems. If well designed, they are performant in terms of energy dissipation and safety. However, the standard design requires well-defined approach flow conditions to ensure the reliability of the structure. In practice, these conditions are frequently ignored due to space restrictions and the fact that several inflow branches may arrive at various elevations with supercritical and/or subcritical flows. The literature provides preliminary concepts for such situations that were not adaptable to the case discussed herein. Nevertheless, in order to apply a standard vortex drop shaft, a novel concept was developed that comprises a junction chamber to merge the inflow branches followed by a very short and steep inlet channel. Extended physical model tests have proven its feasibility. The hydraulic aspects discussed herein allow, at least partially, the adoption of the presented concept in similar situations.
机译:涡旋下降井用于克服排水系统中重要的高差。如果设计合理,它们在能量消耗和安全性方面将表现出色。但是,标准设计要求定义明确的进近流条件以确保结构的可靠性。实际上,由于空间限制以及一些流入分支可能以超临界和/或亚临界流动到达各种高度的事实,这些条件经常被忽略。文献为这种情况提供了不适合本文讨论的情况的初步概念。然而,为了应用标准的涡流下降轴,开发了一种新颖的概念,其包括汇合室以合并流入分支,然后合并非常短且陡峭的入口通道。扩展的物理模型测试已经证明了其可行性。本文讨论的液压方面允许至少部分地在类似情况下采用所提出的概念。

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