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Experimental Investigation on Unsteady Pressure Pulsation in a Centrifugal Pump With Special Slope Volute

机译:特殊斜壳蜗壳离心泵内非定常脉动的实验研究

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Rotor-stator interaction, a major source of high amplitude pressure pulsation and flow-induced vibration in the centrifugal pump, is detrimental to stable operation of pumps. In the present study, a slope volute is investigated to explore an effective method to reduce high pressure pulsation level, and its influence on flow structures is analyzed using numerical simulation. The stress is placed on experimental investigation of unsteady pressure pulsation inside the slope volute pump. For that purpose, pressure pulsations are extracted at nine locations along the slope volute casing covering sensitive pump regions. Results show that distinct pressure pulsation peaks at fBPF, together with nonlinear components are captured. These peaks are closely related to the position of pressure transducer and operating conditions of the pump. The improvement of rotational speed of the impeller results in rapid increase of pressure fluctuation amplitude at fBPF and corresponding root mean square (RMS) value within 10-500 Hz. A comparison with conventional spiral volute pump is implemented as well, and it is demonstrated that slope volute contributes significantly to the decline of pressure pulsation level.
机译:转子-定子相互作用是离心泵中高振幅压力脉动和流动引起的振动的主要来源,对泵的稳定运行有害。在本研究中,研究了蜗壳,以探索一种降低高压脉动水平的有效方法,并使用数值模拟分析了其对流动结构的影响。应力被放置在倾斜蜗壳泵内部的非稳态压力脉动的实验研究上。为此,沿着覆盖敏感泵区域的倾斜蜗壳在九个位置提取压力脉动。结果表明,在fBPF处有明显的压力脉动峰,以及非线性分量。这些峰值与压力传感器的位置和泵的运行状况密切相关。叶轮转速的提高导致fBPF处的压力波动幅度迅速增大,并且相应的均方根(RMS)值在10-500 Hz之内。还与传统的螺旋蜗壳泵进行了比较,结果表明,斜壳蜗壳对压力脉动水平的下降有很大贡献。

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