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Vortex energy dissipator for San Diego ocean outfall; laboratory investigations

机译:圣地亚哥海洋溢流的涡流消能器;实验室调查

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摘要

The sewage effluent from the new sewage treatment plant for the City of San Diego, located on a bluff 95 feet above sea level on Point Lorna, is discharged to the ocean through a long submarine outfall pipe. Under almost all conditions of flow, the hydraulic head at the treatment plant exceeds that required for flow through the outfall. Therefore, the excess energy must be dissipated in a special hydraulic drop structure located on the shoreline between the treatment plant and the ocean outfall.udThe laboratory model investigation described herein basically sought to find a method for dissipating this excess energy safely without heavy entrainment of air into the flow in the ocean outfall. Such air entrainment could cause unsteady conditions of the pipe flow, and possibly bubbling at the point of discharge in the ocean, both of which must be avoided. The responsibility of this laboratory was to develop the hydraulic principles and a recommended hydraulic configuration which would provide assurance that the prototype to be designed by the sponsors (Holmes and Narver-Montgomery) would give satisfactory hydraulic performance.
机译:圣地亚哥市新污水处理厂的污水排放在洛纳角(Point Lorna)海拔95英尺处的悬崖上,通过一条长海底排污管排入海洋。在几乎所有流量条件下,处理厂的液压头都超过了排污口所需的压力。因此,必须将多余的能量消散在位于处理厂和海洋排污口之间的海岸线上的特殊水力下降结构中。 ud本文所述的实验室模型研究基本上旨在寻找一种安全地消散此多余能量而又不会大量夹带水的方法。空气流入海洋排污口。这样的空气夹带可能导致管道流动的不稳定状态,并可能在海洋排放点起泡,必须避免两者。该实验室的职责是开发液压原理和推荐的液压配置,以确保由赞助商(Holmes和Narver-Montgomery)设计的原型能够提供令人满意的液压性能。

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