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Study on radial force characteristics of double-suction centrifugal pumps with different impeller arrangements under cavitation condition

机译:水空化条件下不同叶轮布置双吸离心泵径向力特性研究

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摘要

Cavitation phenomenon is inevitable in pumps with strong transient characteristics. Due to the presence of vapors, the pressure distribution in the impeller changes greatly, resulting in a different radial force distribution from that in non-cavitation condition. In the present article, the cavitation performance of double-suction pumps with different impeller–vane arrangements is studied using the renormalization group k– & turbulence model and the Zwart–Gerber–Belamri cavitation model. The radial force on the two impellers and the whole pump are calculated and compared under critical cavitation conditions. The radial force on different parts of impellers is investigated in detail. A strong influence of the radial force on the blades is detected for different impeller–vane arrangements. Then, the flow characters are analyzed in the mid-span of volute. The results show that axial flows are detected in volute near the outlet of the impellers, which is the main cause of the “two-impeller-interaction”.
机译:气相现象在具有强瞬态特征的泵中是不可避免的。由于存在蒸气,叶轮中的压力分布大大变化,从而从非空化条件下产生不同的径向力分布。在本文中,研究了使用重整化组K-和湍流模型和Zwart-Gerber-belamri空化模型研究了具有不同叶轮叶片布置的双吸泵的空化性能。在临界空化条件下计算并比较两个叶轮和整个泵上的径向力。详细研究了叶轮上不同部分的径向力。针对不同的叶轮叶片布置检测径向力对叶片上的强烈影响。然后,在蜗壳的中间跨度分析流量。结果表明,在叶轮的出口附近检测到轴向流动,这是“双叶轮相互作用”的主要原因。

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