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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Prediction of pump-circuit interactions by computational fluid dynamics calculations coupled with a one-dimensional acoustic model
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Prediction of pump-circuit interactions by computational fluid dynamics calculations coupled with a one-dimensional acoustic model

机译:通过计算流体动力学计算和一维声学模型预测泵-回路相互作用

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摘要

Centrifugal pumps generate perturbations due to the intermittent interaction between the blades and the volute that represent a dynamic load which limit the pump's performance. Their magnitude depends on the acoustic coupling between pump and piping, and so there is interest in reducing the blade-passing frequency excitation by modification of the acoustic impedance of the piping. The objective of this work is to investigate the pressure pulsations predicted in a three-dimensional numerical model of a commercial pump under different coupling conditions. For this purpose, an expression for the acoustic impedance in a basic arrangement is deduced first. This impedance is imposed at the exit boundary of the model by means of an external user-defined function to characterize the impulse pipeline. Simulations are carried out from part flow to overflow and a range of impedances. The predictions for a specific flow rate are compared with experimental measurements of the blade-passing frequency amplitude at the exit of the pump. It is observed that the largest amplitudes among the coupling conditions tested reach relative values of about 11%.
机译:离心泵由于叶片和蜗壳之间的间歇性相互作用而产生扰动,这代表了动态载荷,从而限制了泵的性能。它们的大小取决于泵和管道之间的声耦合,因此,有兴趣通过修改管道的声阻抗来减少叶片通过频率的激励。这项工作的目的是研究在不同耦合条件下商用泵的三维数值模型中预测的压力脉动。为此,首先推导基本布置中的声阻抗的表达式。该阻抗通过外部用户定义的函数施加在模型的出口边界上,以表征脉冲管道。从部分流程到溢出和一系列阻抗进行仿真。将特定流量的预测与泵出口处的叶片通过频率幅度的实验测量值进行比较。可以看出,在测试的耦合条件中,最大幅度达到了约11%的相对值。

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