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Applications of venturi principle to water aeration systems

机译:文丘里原理在水曝气系统中的应用

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The concentration of dissolved oxygen is an important indicator of water quality because aquatic life lives on the dissolved oxygen in the water. Aeration can increase dissolved oxygen when levels become deficient. Hydraulic structures can significantly improve dissolved oxygen levels by creating turbulent conditions where small air bubbles are carried into the bulk of the flow. Recent researches have focused on developing measurement and predictive techniques for oxygen transfer at hydraulic structures to maintain and enhance water quality. However, reviewing existing studies on aeration performance of hydraulic structures, it seems that there are not too many studies on venturi aeration. The present paper shows applications of venturi principle to water aeration systems. The aeration characteristics of venturi nozzle, venturi conduit and venturi weir are analyzed. The results indicate that venturi aeration might contribute significantly to air entrainment and aeration efficiency. Therefore, venturi device can be used as highly effective aerator in aeration processes.
机译:溶解氧的浓度是水质的重要指标,因为水生生物依赖于水中的溶解氧。当水平不足时,通气会增加溶解氧。水力结构可以通过创造湍流条件来显着提高溶解氧水平,在这种条件下,小气泡被带入了大部分流量。最近的研究集中在开发测量和预测技术以在水工建筑物中转移氧气,以维持和提高水质。然而,回顾现有关于水工建筑物的充气性能的研究,似乎没有太多关于文丘里充气的研究。本文展示了文丘里原理在水曝气系统中的应用。分析了文丘里喷嘴,文丘里导管和文丘里堰的曝气特性。结果表明,文丘里通气可能会显着促进空气夹带和通气效率。因此,文丘里装置可在曝气过程中用作高效曝气器。

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