Pump as turbine cavitation performance for both conventional and reverse operating modes: A review

IF 16.3 1区 工程技术 Q1 ENERGY & FUELS
Kan Kan , Maxime Binama , Huixiang Chen , Yuan Zheng , Daqing Zhou , Wentao Su , Alexis Muhirwa
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引用次数: 45

Abstract

With the increasing adoption of renewable energy sources globally, hydropower contributes significantly to energy generation through various schemes ranging from big to small-scale plants. In small-scale hydropower plants, the preference for reverse-operated pumps (known as pump as turbines or PATs) over small-scale hydroturbines has increased. However, apart from the associated economic advantages, PATs, like any other hydraulic machinery, are not free from common problems such as cavitation. Cavitation is a phenomenon in which air bubbles are formed within the fluid medium due to substantial local pressure drop and their eventual collapse causes material erosion and degrades the overall machine efficiency. Several studies have focused on PAT conventional operating mode, while its reverse mode just begun to gain research interest. Nevertheless, cavitation remains a common problem in PATs at various hydro-sites. Therefore, to analyze PAT cavitation performance and highlight the differences between its two operating modes in terms of their development mechanisms, this article presents a thorough review of PAT cavitation dynamics and influencing parameters, as well as the future research directions. It is found that PAT reverse mode is more prone to cavitation, but more damages would occur in the conventional mode. Nevertheless, modifying the PAT geometric design parameters can considerably improve its cavitation performance. However, this approach has not been sufficiently investigated for PAT reverse operating mode and hence requires further research. Note that the terms “PAT conventional mode,” “PAT pumping mode,” and “pump” are equally used throughout this paper.

常规和反向工况下泵作为水轮机的空化性能综述
随着全球越来越多地采用可再生能源,水电通过从大型到小型发电厂的各种方案对能源生产做出了重大贡献。在小型水力发电厂,相对于小型水力涡轮机,越来越多的人倾向于使用反向操作的水泵(称为水泵涡轮或pat)。然而,除了相关的经济优势外,pat像任何其他液压机械一样,也存在诸如空化等常见问题。空化是由于局部压降较大,在流体介质内形成气泡,气泡最终破裂,造成物料侵蚀,降低整机效率的现象。一些研究主要集中在PAT的常规操作模式上,而其反向操作模式的研究才刚刚开始。尽管如此,空化仍然是在各种水源地的pat中普遍存在的问题。因此,为了分析PAT空化性能,突出其两种工作模式在发展机理上的差异,本文对PAT空化动力学及其影响参数进行了全面的综述,并展望了未来的研究方向。研究发现,PAT反模更容易发生空化,而常规模态损伤更大。然而,改变PAT的几何设计参数可以显著改善其空化性能。然而,这种方法在PAT反向操作模式下还没有得到充分的研究,因此需要进一步的研究。请注意,术语“PAT常规模式”、“PAT泵送模式”和“泵”在本文中同样使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Renewable and Sustainable Energy Reviews
Renewable and Sustainable Energy Reviews 工程技术-能源与燃料
CiteScore
31.20
自引率
5.70%
发文量
1055
审稿时长
62 days
期刊介绍: The mission of Renewable and Sustainable Energy Reviews is to disseminate the most compelling and pertinent critical insights in renewable and sustainable energy, fostering collaboration among the research community, private sector, and policy and decision makers. The journal aims to exchange challenges, solutions, innovative concepts, and technologies, contributing to sustainable development, the transition to a low-carbon future, and the attainment of emissions targets outlined by the United Nations Framework Convention on Climate Change. Renewable and Sustainable Energy Reviews publishes a diverse range of content, including review papers, original research, case studies, and analyses of new technologies, all featuring a substantial review component such as critique, comparison, or analysis. Introducing a distinctive paper type, Expert Insights, the journal presents commissioned mini-reviews authored by field leaders, addressing topics of significant interest. Case studies undergo consideration only if they showcase the work's applicability to other regions or contribute valuable insights to the broader field of renewable and sustainable energy. Notably, a bibliographic or literature review lacking critical analysis is deemed unsuitable for publication.
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