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Influence of Tip Clearance on Pressure Fluctuation in Low Specific Speed Mixed-Flow Pump Passage

机译:尖端间隙对低比速混流泵通道中压力波动的影响

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To explore the influence of tip clearance on pressure fluctuation in a low specific speed mixed-flow pump, tip clearances δ of 0.25 mm, 0.75 mm and 1.00 mm, along with no tip clearance, were selected. The reliability of the simulation was verified by comparison with the experimental data of external characteristics and fluctuation in the guide vane passage. Through ANSYS-CFX, MATLAB code and fast Fourier transform (FFT) algorithm, pressure fluctuation characteristics in this pump were obtained. The results show that pressure fluctuation exists in all conditions due to the rotor-stator interaction. Under the no tip clearance and tip clearance conditions, the maximum fluctuation value was located near the guide inlet and impeller outlet, respectively. Clearance leakage had less influence on pressure fluctuation at the impeller inlet and central regions within a certain range of the clearance; beyond this range, fluctuations in the whole flow passage increased significantly, while the clearance variation had less effect on fluctuation in the guide vane. When the tip clearance value was 1.00 mm, pressure fluctuation of the shroud at the impeller inlet section suddenly increases, which was closely related to the obvious leakage vortexes and a larger low pressure area.
机译:为了探讨低比转速混流泵中叶尖间隙对压力波动的影响,选择了0.25 mm,0.75 mm和1.00 mm的叶尖间隙δ,并且没有叶尖间隙。通过与外部特性和导叶通道波动的实验数据进行比较,验证了仿真的可靠性。通过ANSYS-CFX,MATLAB代码和快速傅里叶变换(FFT)算法,获得了该泵的压力波动特性。结果表明,由于转子-定子相互作用,压力波动在所有条件下均存在。在无叶尖间隙和叶尖间隙条件下,最大波动值分别位于导向器入口和叶轮出口附近。在一定间隙范围内,间隙泄漏对叶轮入口和中心区域压力波动的影响较小;超过此范围,整个流道的波动显着增加,而间隙变化对导向叶片的波动影响较小。当叶尖间隙值为1.00 mm时,叶轮入口处护罩的压力波动突然增加,这与明显的泄漏涡旋和较大的低压区域密切相关。

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