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Experimental and Numerical Studies on Flow Characteristics of Centrifugal Pump under Air-water Inflow

机译:空气水流入下离心泵流动特性的实验与数值研究

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A two-phase liquid pumping test ring is built to study the flow induced characteristics of centrifugal pump under the air-water flow working condition. Pump performances are measured under different flow rates and different inlet air void fraction (a). Pressure pulsation signal spectrums and their probability density maps are also recorded. The calculations, using URANS k-epsilon turbulence model combined with the Euler-Euler inhomogeneous two-phase model, are also performed to obtain inner flow structure inside the impeller and volute channels under different air-water conditions in order to understand the pump characteristic evolutions. The results show that the performance of centrifugal pump is more sensitive to air inlet injection at low flow rates. The maximum air void fraction of model pump could reach 10% when the pump operates at the highest efficiency point, and the performance drops sharply when the air void fraction is more than 8%. The dominant frequency of pump outlet pressure pulsation is still at the blade passing frequency even under two-phase condition. Frequency amplitude increases with the increase of a. The greater the a, the more of low frequency appears in broadband characteristics. With the increase of a, the probability density amplitude of pressure pulsation decreases gradually, and its span becomes gradually wider as well. Comparisons between numerical local results and experimental unsteady pressure can explain part of the phenomena that are found in the present paper.
机译:为了研究离心泵在空气-水流工况下的流动特性,建立了一个两相液体试验环。在不同的流量和不同的进气空隙率(a)下测量泵的性能。还记录了压力脉动信号频谱及其概率密度图。结合URANSk-ε湍流模型和Euler-Euler不均匀两相模型进行计算,以了解不同空气-水条件下叶轮和蜗壳通道内部的内部流动结构,从而了解泵的特性演变。结果表明,在低流量下,离心泵的性能对进气口的注入更为敏感。当泵在最高效率点工作时,模型泵的最大空隙率可达到10%,而当空隙率超过8%时,性能会急剧下降。即使在两相条件下,泵出口压力脉动的主要频率仍处于叶片通过频率。频率幅度随a的增加而增加。 a越大,宽带特性中出现的低频越多。随着a的增加,压力脉动的概率密度幅值逐渐减小,并且其跨度也逐渐变宽。数值局部结果与实验非稳态压力之间的比较可以解释本文中发现的部分现象。

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