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Optimization of water jet pumps using numerical simulation

机译:使用数值模拟优化喷水泵

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摘要

A water jet pump is one of the best examples of a device in which liquid-jet mixing phenomena occur. Since such mixing processes are complex, the choice of turbulence model for accurate prediction of performance of the pumps is important. The aim of this numerical simulation study is to investigate effects of parameters such as the jet pump area ratio, nozzle position, and length of the mixing chamber on the pump performance and then to perform an optimization of six different water jet pumps according to these parameters, taking energy efficiency as a criterion. In the optimization procedure, the transition SST model (γ-Re_θ) was used because it provided more accurate results among the four advanced turbulence models. The numerical results obtained with the model were compared with experimental data of the jet pump with the same geometry at the boundary conditions available in the literature and it was seen that maximum deviation in the pump efficiency at the optimum operating conditions was approximately 10%. As a result, the maximum numerical efficiency is found to be 34.6% at the area ratio of 4.61 and a pressure ratio of 0.277.
机译:水喷射泵是发生液体喷射混合现象的设备的最佳实例之一。由于这种混合过程很复杂,因此选择湍流模型来精确预测泵的性能非常重要。此数值模拟研究的目的是研究诸如喷射泵面积比,喷嘴位置和混合室长度等参数对泵性能的影响,然后根据这些参数对六个不同的喷射泵进行优化,以能源效率为标准。在优化过程中,使用了过渡SST模型(γ-Re_θ),因为它在四个高级湍流模型中提供了更准确的结果。通过该模型获得的数值结果与文献中可用的边界条件下具有相同几何形状的喷射泵的实验数据进行了比较,可以发现在最佳工作条件下泵效率的最大偏差约为10%。结果,在4.61的面积比和0.277的压力比下,发现最大数值效率为34.6%。

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