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Influence of the Balance Hole Circumferential Position on the Cavitation Performance of the Semiopen Impeller Centrifugal Pump

机译:平衡孔圆周位置对半开叶轮离心泵空化性能的影响

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In order to study the influence of the circumferential position of the balance hole on the cavitation performance of the semiopen impeller centrifugal pump, a low specific speed semiopen impeller centrifugal pump is taken as the object, and 4 kinds of circumferential positions of balance holes are designed. The SST k- ω turbulence model and the Rayleigh–Plesset cavitation bubble dynamics equation are used to calculate the full flow field of the centrifugal pump. Research shows that, under cavitation conditions, as the circumferential position of the balance hole is farther away from the blade working surface, the cavitation performance of the pump is reduced, and the larger θ (the angle of the balance hole and the leading edge of the blade in the direction of rotation) is, the easier the jet cavitation occurs near the balance hole. On the other hand, with the development of cavitation, the axial force of the impeller has also changed greatly. In contrast, the farther the balance hole is arranged in the circumferential direction (i.e., the greater θ ), the more limited is the ability of the balance hole to balance the axial force.
机译:为了研究平衡孔的周向位置对半开叶轮离心泵的空化性能的影响,设计了低特定的速度半瓣叶轮离心泵作为物体,设计了4种圆周位置的平衡孔位置。 SST k-ω湍流模型和瑞利 - Plesset空化泡沫动力学方程用于计算离心泵的全流量。研究表明,在空化条件下,随着平衡孔的圆周位置远离刀片工作表面,泵的空化性能减小,θ(平衡孔的角度和前缘的角度旋转方向的刀片)是,在平衡孔附近发生射流越容易。另一方面,随着空化的发展,叶轮的轴向力也很大变化。相反,平衡孔的沿圆周方向(即,θ更大)布置得更远,更有限的是平衡孔平衡轴向力的能力。

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