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NUMERICAL SIMULATION OF HYSTERESIS ON HEAD/DISCHARGE CHARACTERISTICS OF A CENTRIFUGAL PUMP

机译:离心泵头/放电特性滞后的数值模拟

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The objectives of the present study were to investigate influences of fins, set in a suction part, on the positive slope and hysteresis loop in head/discharge characteristic curves of centrifugal pumps in the experiment as well as in the numerical prediction. The fins were located in upstream side of a pump impeller to suppress swirl flow occurring before the impeller inlet at partial load operation. We had two kinds of centrifugal pump with/without the fins, the number of which is 16. These two centrifugal pumps had a shrouded impeller with 7 blades and a diffuser with 20 guide vanes with the same configuration. In the experiment, the pump with them had a large hysteresis loop at partial load operation in the head/discharge characteristic curve, although the pump without them had no hysteresis loop. In the numerical simulation based on periodic flow, the incompressible turbulent flow field was calculated for partial blade-passages with periodic boundary conditions. As a result, the simulated characteristics had the same tendencies as the experimental results. Furthermore, the causes of the discontinuous head/ discharge characteristics depending on the direction of partial load operation were clarified through calculating and comparing the internal flow fields in the cases with/without the fins. The pumps had the large backflow and recirculation areas in two places, one of which was near the shroud at the impeller inlet including the fins area and another near the central part of the diffuser. The difference in the hysteresis loop between with and without die tins was caused by the existence of the fins, which suppressed or promoted the backflow at the impeller.
机译:本研究的目的是研究翅片在实验中的离心泵的离心泵的头部/放电特性曲线中的正坡和滞后回路中的翅片的影响以及在数值预测中。翅片位于泵叶轮的上游侧,以抑制在部分负载操作之前在叶轮入口之前发生的旋流。我们有两种带有/没有翅片的离心泵,其数量为16.这两个离心泵有一个带有7片叶片的遮蔽叶轮和具有相同构造的20个引导叶片的漫射器。在实验中,用它们的泵在头部/放电特性曲线中具有大的滞后回路,尽管没有它们的泵没有滞后回路。在基于周期性流动的数值模拟中,计算具有周期边界条件的部分刀片通道的不可压缩湍流场。结果,模拟特性具有与实验结果相同的趋势。此外,根据部分负荷运行的方向不连续头/放电特性的原因,通过计算和不具有散热片的例/比较内部流场得到了澄清。泵的两个地方有大的回流和再循环区域,其中一个在叶轮入口处附近挡块,包括翅片区域和另一个靠近漫射器的中心部分。通过翅片的存在引起了与模具罐之间的滞后环的差异,其抑制或促进叶轮处的回流。

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