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首页> 外文期刊>Journal of Environmental Engineering >Aeration performance of triangular planform labyrinth weirs
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Aeration performance of triangular planform labyrinth weirs

机译:三角平面迷宫堰的曝气性能

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A high level of dissolved oxygen is vital for the maintenance of healthy streams and rivers. Structures in rivers can increase dissolved oxygen levels by creating turbulent conditions where small air bubbles are carried into the bulk of the flow. Plunging overfall jets from weirs are a particular instance of this, and the aeration properties of such structures have been studied widely in the laboratory and field over a number of years. On the other hand, labyrinth weirs, where the weir sill is cranked in planform thus increasing their length, have received little or no attention in this context. They have a proven hydraulic advantage over straight weirs of increased discharge at the same head for design conditions. However, they also serve to modify the combined overfall jet as individual jets from adjacent sections of the weir collide. This paper describes an experimental investigation into the nature of these jets and how they affect the aeration performance of a triangular plan labyrinth weir. It is demonstrated that the aeration efficiency of these labyrinth weirs generally is better than their equivalent-length linear weir and that this advantage becomes more pronounced as the weir included angle becomes smaller and also at lower overfall drop heights and higher discharges. These results point to the possible advantage of these type of weir in situations where both hydraulic and aeration performance needs to be optimized. [References: 28]
机译:高水平的溶解氧对于维持健康的河流和河流至关重要。河流中的结构可通过创造湍流条件来增加溶解氧水平,在这种条件下,小气泡会被带入流量中。堰上的突降式射流是这种情况的一个特殊实例,多年来,这种结构的通气特性已经在实验室和现场进行了广泛的研究。另一方面,在这种情况下,迷宫式堰门(其堰门以平面形式弯曲,从而增加了其长度)受到了很少甚至没有的关注。在设计条件下,与在相同扬程下增加排放量的直堰相比,它们具有水力方面的优势。但是,当来自堰的相邻部分的单个喷流相撞时,它们也可以用来修改组合式溢流喷流。本文描述了对这些喷嘴的性质以及它们如何影响三角平面迷宫堰的曝气性能的实验研究。结果表明,这些迷宫堰的通气效率通常优于其等效长度的线性堰,并且随着堰的夹角变小以及在较低的落下高度和较高的排放量时,这种优势变得更加明显。这些结果表明,在需要优化水力和曝气性能的情况下,此类堰的可能优势。 [参考:28]

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