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Numerical analysis of the formation mechanism and suppression method of the reverse flow in a semi-open centrifugal pump

机译:半露离心泵反转流动形成机制和抑制方法的数值分析

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摘要

Reverse flow has a detrimental effect on the stable and safe operation of centrifugal pumps. To study the formation mechanism and suppression of the reverse flow, a semi-open centrifugal pump with circumferential groove in the shroud was simulated. Then, the flow field and pressure fluctuation were analysed. The absolute flow angle at the blade inlet nearing the shroud was close to 180 degrees because of the joint action of the leakage flow and blade inlet impact under low flow rate. This phenomenon resulted in the formation of a low-speed region and the reverse flow and low-frequency pressure fluctuation. The circumferential groove provided a channel for the leakage flow, which could quickly pass through the groove, and reduced the absolute flow angle at the blade inlet nearing the shroud and weakened the trend of the tip leakage flow to upstream. The low-frequency pressure pulsation was eliminated, and the amplitude of the blade passing frequency was reduced under 0.7Q(d)(Q(d)is the design flow rate). The reverse flow thickness coefficient became zero with the circumferential groove. The proportion of the reverse flow volume to the volume of inlet pipe decreased from 14.7 % to 2.2 % under 0.4Q(d). This research indicated that the circumferential groove arranged in the shroud could effectively suppress or eliminate reverse flow.
机译:反向流对离心泵的稳定和安全操作具有不利影响。为了研究形成机构和抑制反向流动,模拟了在护罩中具有周向槽的半开露离心泵。然后,分析了流场和压力波动。接近护罩的刀片入口处的绝对流量接近180度,因为泄漏流动的关节动作和叶片入口冲击在低流速下的影响。这种现象导致形成低速区域和反向流动和低频压力波动。圆周槽提供了用于泄漏流动的通道,其可以快速穿过凹槽,并在叶片入口处的绝对流动角度降低,接近护罩并削弱了尖端泄漏流向上游的趋势。消除了低频压力脉动,叶片通过频率的幅度降低0.7Q(d)(q(d)是设计流速)。逆流厚度系数与圆周槽变为零。逆流体积与入口管体积的比例从0.4Q(d)下降14.7%至2.2%。该研究表明,布置在护罩中的圆周槽可以有效地抑制或消除反向流动。

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