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首页> 外文期刊>Journal of Mechanical Science and Technology >Influence of nozzle exit tip thickness on the performance and flow field of jet pump
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Influence of nozzle exit tip thickness on the performance and flow field of jet pump

机译:喷嘴出口尖端厚度对喷射泵性能和流场的影响

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摘要

The influence of exit tip thickness of nozzle δ e on the flow field and performance of a jet pump was studied numerically in this paper. It is found that δ e has influence on the distribution of turbulence kinetic energy k. If δ e is ignored, k takes the highest value but dissipates rapidly than that of nozzle with a certain tip thickness. δ e also affect apparently the development of tip vortex, which will occur near the exit tip of nozzle. The bigger the δ e is, the larger the vortex is. The tip vortex develops with the increase of flow rate ratio q. When q=1 and δ e =0.6~0.8mm, a small vortex will be found downstream the tip vortex. And a concomitant vortex happens down the tip vortex in the case of q=1 and δ e =0.8mm. As q increases to 2, the downstream small vortex disappears and the concomitant vortex becomes bigger. It is also found that the tip vortex might interact with the possible backflow that formed in the throat tube and parts of suction chamber. The center of backflow was affect evidently by δ e . With the increase of δ e , the center of backflow under the same q will go downstream. When δ e =0.4mm, the center of backflow goes farthest. Then, as the further increase of δ e , the center of backflow will go back some distance. Although, δ e has relatively great influence on the flow field within the jet pump, it exerts only a little impact on the performance of jet pump. When δ e =0.2~0.6mm, the jet pump possess better performance. In most case, it is reasonable to ignore the nozzle exit tip thickness in performance prediction for the purpose of simplicity.
机译:数值研究了喷嘴的出口尖端厚度δe 对射流流场和喷射泵性能的影响。发现δe 对湍动能k的分布有影响。如果忽略δe ,则k取最大值,但耗散速度快于具有特定尖端厚度的喷嘴。 δe 显然也影响尖端涡流的发展,尖端涡流将发生在喷嘴出口尖端附近。 δe 越大,涡旋越大。尖端涡随着流量比q的增加而发展。当q = 1且δe = 0.6〜0.8mm时,在尖端涡流的下游会发现一个小的涡流。在q = 1且δe = 0.8mm的情况下,伴随的涡流沿尖端涡流向下发生。当q增加到2时,下游的小涡旋消失,伴随的涡旋变大。还发现,尖端涡旋可能与在喉管和吸入腔的一部分中形成的可能的回流相互作用。 δe 明显影响了回流中心。随着δe 的增加,相同q下的回流中心将向下游移动。当δe = 0.4mm时,回流中心最远。然后,随着δe 的进一步增加,回流中心将退回一定距离。尽管δe 对射流泵内的流场影响较大,但对射流泵的性能影响很小。当δe = 0.2〜0.6mm时,喷射泵具有更好的性能。在大多数情况下,出于简化目的,在性能预测中忽略喷嘴出口尖端的厚度是合理的。

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