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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Flow investigations of reverse running volute pumps with backward vanes in comparison to forward type turbine vanes
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Flow investigations of reverse running volute pumps with backward vanes in comparison to forward type turbine vanes

机译:与前向涡轮叶片相比,带有后向叶片的反向运行蜗壳泵的流量研究

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The use of centrifugal pumps as turbines in the recent years has come as a boon to small and micro power application given its simplicity and robustness. However, attempts are continuously being made to improve the performance by modifying the geometry, and yet to retain its simpleness. This paper proposes a new design to the impeller of an existing pump with forward-shaped vanes in an unchanged volute that is in complete contrast to the conventional backward vanes. Three methodologies are involved in the analysis starting with classical theory, experiment and simulations. The theory entails the focus on optimizing the nozzle shape of the impeller to reduce viscous and eddies. The forward vane having shorter nozzle length has proved to be more efficient compared to the longer backward vane impeller, with an efficiency increase of nearly 5%. The experimental and CFD analysis to study the internal flow saw similitude in the streamline change in Euler moment. It also showed that there were not only increased viscous effects but also enhanced flow separation in the backward vanes at overload flows. The study also found radial clearance losses to be unacceptable for both the shapes. The overall conclusion was to move ahead with the forward design and convince the industry to adopt them for there have been greater strides in cost-effective manufacturing processes. The paper also recommends more study of intermediate blade angles since there was still persistence of small degree of vorticities in the forward blade nozzle. The optimization of volute-impeller interface along with the influence of non-flow zone would be other areas for future investigation. Synergy of academia and industry is also welcome to lend improved understanding in pumps as turbines and better translation to praxis.
机译:近年来,由于离心泵的简单性和坚固性,将其用作涡轮机已成为小型和微功率应用的福音。但是,人们一直在不断尝试通过修改几何形状来提高性能,同时又保持其简单性。本文针对现有泵的叶轮提出了一种新设计,该泵具有未改变蜗壳的前向叶片,与传统的向后叶片形成了鲜明的对比。从经典理论,实验和模拟开始,分析涉及三种方法。该理论要求将重点放在优化叶轮的喷嘴形状以减少粘性和涡流上。与较短的后叶片叶轮相比,喷嘴长度较短的前叶片已被证明效率更高,效率提高了近5%。实验和CFD分析研究了欧拉矩流线变化中内部流锯的相似性。它也表明,不仅增加了粘性效应,而且在过载流时,后向叶片中的流分离得到了增强。研究还发现两种形状的径向游隙损失是不可接受的。总的结论是继续前进的设计,并说服业界采用它们,因为在具有成本效益的制造工艺方面已取得了更大的进步。由于前叶片喷嘴中仍然存在小程度的涡度,因此本文还建议对中叶片角度进行更多研究。蜗壳-叶轮界面的优化以及非流动区的影响将是未来研究的其他领域。也欢迎学术界和工业界协同合作,以增进对涡轮机泵的了解,并更好地实现实践。

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