Numerical study on unsteady characteristics of backflow vortex cavitation in an axial flow pump | |
Cai ST(蔡淑婷)1,2; Huang RF(黄仁芳)1,2; An Y(安翼)1,2; Wang YW(王一伟)1,2; Li,Ning3,4 | |
Source Publication | Journal of Physics: Conference Series |
2024-10-01 | |
Volume | 2854Issue:1Pages:012055 |
ISSN | 1742-6588 |
Abstract | Abstract Axial pumps play a crucial role in various industries such as agriculture, construction, and chemical engineering, exhibiting optimal efficiency under design conditions. However, in practical applications, these pumps often operate under off-design conditions due to environmental constraints, which would lead to a series of problems such as increased vibration, elevated noise levels, and a shortened pump lifespan, thereby endangering its safe and stable operation. This study addresses the issue by using a modified RNG k-ε turbulence model combined with the Zwart cavitation model to simulate the cavitation characteristics of an axial-flow pump. The calculated cavitation characteristics are consistent with the experimental results, proving the exactitude of the numerical approach. A noteworthy observation is the severe cavitation occurrences at the backflow vortex, termed backflow vortex cavitation. This phenomenon undergoes inception, development, and eventual collapse constantly. According to the severity of the backflow vortex cavitation, different periods are divided into the bimodal stage and small-peak stage. Significantly, it is identified that the backflow vortex cavitation interacts with the impeller blades, as the impeller moves, thereby inducing blade vibration, and noise, and exacerbating cavitation erosion. The research results offer a theoretical foundation that is beneficial to enhancing the safe and stable operation of axial flow pumps. |
DOI | 10.1088/1742-6596/2854/1/012055 |
Indexed By | 其他 |
Language | 英语 |
Ranking | 1 |
Contributor | 黄仁芳 |
Citation statistics | |
Document Type | 期刊论文 |
Identifier | http://dspace.imech.ac.cn/handle/311007/97018 |
Collection | 流固耦合系统力学重点实验室 |
Corresponding Author | Huang RF(黄仁芳) |
Affiliation | 1.Key Laboratory for Mechanics in Fluid Solid Coupling Systems, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China 2.School of Engineering Science, University of Chinese Academy of Sciences, Beijing 100049, China 3.Marine Design and Research Institute of China, Shanghai 200011, China 4.Science and Technology on Waterjet Propulsion Laboratory, Shanghai 200011, China |
Recommended Citation GB/T 7714 | Cai ST,Huang RF,An Y,et al. Numerical study on unsteady characteristics of backflow vortex cavitation in an axial flow pump[J]. Journal of Physics: Conference Series,2024,2854,1,:012055.Rp_Au:黄仁芳 |
APA | Cai ST,Huang RF,An Y,Wang YW,&Li,Ning.(2024).Numerical study on unsteady characteristics of backflow vortex cavitation in an axial flow pump.Journal of Physics: Conference Series,2854(1),012055. |
MLA | Cai ST,et al."Numerical study on unsteady characteristics of backflow vortex cavitation in an axial flow pump".Journal of Physics: Conference Series 2854.1(2024):012055. |
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