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Hydraulic Structures in Water Aeration Processes

机译:水曝气过程中的水力结构

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The primary purpose of water aeration is to increase the oxygen saturation of the water. This can be achieved by using hydraulic structures because of substantial air bubble entrainment at these structures. This paper reviewed the literature on hydraulic structures used in water aeration processes. The hydraulic structures were divided into two groups as the high-head flow systems and the free-surface flow systems. The high-head flow systems were circular and venturi nozzles, pipe with venturi tube, and high-head conduit, and the free-surface flow systems were weir, stepped cascade, and free-surface conduit. Air/water flow ratio and aeration efficiency in circular nozzles with air holes and venturi nozzles were significantly high. Pipes with venturi tubes showed high aeration efficiency although they had low air/water flow ratio. In high-head and free-surface conduits, almost full oxygen transfer, up to the saturation value, occurred. Forty-five degrees triangular sharp-crested weir had significantly better air/water flow ratio and aeration efficiency than other sharp-crested weir shapes. Stepped cascades, in particularrnnappe flow regime, were very efficient means of aeration.
机译:水曝气的主要目的是增加水的氧饱和度。由于在这些结构处夹带大量气泡,因此可以通过使用液压结构来实现。本文回顾了有关水曝气过程中使用的水力结构的文献。水力结构分为高水头流动系统和自由表面流动系统两类。高水头流动系统是圆形和文丘里管喷嘴,带文氏管的管道和高水头导管,自由表面流动系统是堰,阶梯式梯级和自由表面导管。带气孔的圆形喷嘴和文丘里喷嘴的空气/水流量比和充气效率非常高。带有文氏管的管道尽管空气/水的流量比很低,但仍显示出较高的曝气效率。在高水头和自由表面的导管中,发生了几乎完全的氧气转移,直至达到饱和值。 45度三角形尖顶堰具有比其他尖顶堰形状更好的空气/水流量比和曝气效率。阶梯式叶栅,特别是纳帕流域,是非常有效的通气方式。

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