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Modeling and Prototype Testing of Flows over Flip-Bucket Aerators

机译:倒桶曝气机的流动建模和原型测试

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The paper deals with a unique spillway which incorporates an aerator in each flip bucket with the intention to aerate the flow and avoid subatmospheric air cavities enclosed by the jets. In terms of jet breakup and stability, the physical models and the prototype lead to contradicting conclusions. With sealed aerators, the models exhibit intact air cavities featuring negative air pressure, suggesting the aeration need. Computational fluid dynamics (CFD) is performed to determine the reason for the discrepancy. Both the prototype observations and CFD indicate that the jets break up as a result of air entrainment; the resulting cavity air-pressure drops are insignificantly small. The discrepancy is due to the small model scale, in which the threshold flow velocity for air entrainment is not met and the prerequisite for jet breakup does not exist. To correctly reproduce similar water-air flow phenomena, the model should be large enough to meet the air-entrainment criterion. When questioning a small-scale model with air-cavity formation, CFD simulations should be performed to check the model results and make corrections, if needed. (C) 2018 American Society of Civil Engineers.
机译:本文探讨了一个独特的溢洪道,该溢洪道在每个翻转铲斗中都装有充气器,目的是使气流充氧并避免喷流所包围的低于大气压的空气腔。在射流破裂和稳定性方面,物理模型和原型得出的结论相互矛盾。使用密封的曝气器,模型显示出具有负气压的完整气孔,表明需要曝气。执行计算流体动力学(CFD)以确定差异的原因。原型观测和CFD都表明,由于空气夹带,射流破裂。所产生的空腔气压降很小。差异是由于模型规模小,无法满足夹带空气的阈值流速,并且不存在射流破裂的前提条件。为了正确地再现类似的水-空气流动现象,模型应该足够大以符合引气标准。当质疑具有气孔形成的小规模模型时,应进行CFD仿真以检查模型结果并在需要时进行校正。 (C)2018美国土木工程师学会。

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