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Contribution of Different Elements of Inclined Trash Racks to Head Losses Modeling

机译:倾斜垃圾架不同元素对头部损失建模的贡献

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摘要

Low bar spacing trash racks have been widely investigated in order to guide fish toward bypasses. In addition to this biological function, the formulae to predict head losses, for hydropower plants, are still being discussed. This paper investigates and models the global head losses generated by inclined trash racks with six different bar shapes and two different supports, in an open channel for six angles and two low bar spacings. The girders that supported the trash racks were U-shaped and different profile shapes. In addition to the previously studied rectangular and “hydrodynamic” bars, four new bar shapes, combining different leading and trailing edges, were investigated. Water depths were measured upstream and downstream of the rack for each configuration, and head loss coefficients were characterized and modeled. Three of these new bar shapes generated lower head losses than the hydrodynamic bar shape. The most efficient bar profile reduced the shape coefficient by 40% compared to the hydrodynamic profile and by 67% compared to the conventional rectangular profile. Concerning the supports, the use of a profiled girder to replace a conventional U-shaped girder also significantly reduced the head losses. The addition of the girder effect in a global formula increased its accuracy in predicting head losses of inclined trash racks upstream of hydropower plants.
机译:低条间距垃圾架已被广泛研究,以引导鱼绕过绕过。除了这种生物学功能之外,还讨论了用于预测用于水电站的头部损失的配方仍在讨论。本文调查和模拟倾斜垃圾架产生的全球头部损耗,倾斜垃圾架产生六个不同的条形和两个不同的支撑,在一个六个角度和两个低条间距的开放通道中。支撑垃圾架的梁是U形和不同的轮廓形状。除了先前研究的矩形和“流体动力学”棒之外,研究了四个新的杆形状,组合不同的领先和尾部边缘。对于每个配置的齿条的上游和下游测量水深,表征和建模头部损耗系数。这些新杆中的三个形状比流体动力条形为较低的头部损耗。与传统矩形轮廓相比,最有效的杆状轮廓与流体动力学曲线相比将形状系数减小40%,并通过67%。关于支持,使用异形梁代替传统的U形梁也显着降低了头部损失。在全局公式中添加梁效应提高了其准确性,以预测水电站上游的倾斜垃圾架的头部损耗。

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