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Cavitating Flow in the Volute of a Centrifugal Pump at Flow Rates Above the Optimal Condition

机译:在最佳状态高于流速的离心泵蜗壳中的空气流动

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摘要

Cavitation is regarded as a considerable factor causing performance deterioration of pumps under off-design conditions, especially at overload conditions. To investigate the unsteady cavitation evolution around the tongue of a pump volute, and its influence on the flow field within passages of the impeller, numerical calculations and several hydraulic tests were performed on a typical centrifugal pump with a shrouded impeller. Emphasis was laid on the cavitation evolution and blade-loading distribution at flow rates above the optimal value. Results indicated that vapor is likely to first emerge from the tongue of the volute rather than at the leading edge of the blades at overload conditions. In contrast to the designed condition, the flow distribution in each passage is obviously different. The flow rate of the passage reaches a maximum just past the location of the tongue, while the minimum flow rate value is projected to appear at the passage upstream. The cavitation at the tongue squeezes the flow area at the outlet of the corresponding flow passage of the tongue, thereby causing a huge growth in the flow rate at the impeller outlet.
机译:空化被认为是在非设计条件下导致泵的性能恶化,特别是在过载条件下。为了研究泵蜗壳的舌部周围的不稳定空化进化,并且在具有罩叶轮的典型离心泵上进行了对叶轮的通道内的流场的影响。强调在高于最佳值的流速下铺设了空化演化和叶片装载分布。结果表明,蒸汽可能首先从蜗壳的舌头出现,而不是在过载条件下叶片的前缘。与设计的状态相比,每个通道中的流量分布显然是不同的。通道的流速达到刚刚过舌头的位置,而最小流量值被投射出在上游的段落中出现。舌头的空化挤压舌头的相应流动通道的出口处的流动区域,从而在叶轮出口处引起流速的巨大增长。

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