@article{b7c1cb36a741444a878046ade0705af3,
title = "Diagnosis of internal energy characteristics of mixed-flow pump within stall region based on entropy production analysis model",
abstract = "In order to investigate the influence of tip clearance size on the characteristics of mixed-flow pump under stall conditions, the entropy production analysis method is utilized to visualize the high energy loss area of main flow domains in internal flow fields. The results shown that the tip clearance size will not only affect the internal flow fields of mixed-flow pump under designed point but also play a remarkable role in the hydraulic loss with stall region. As the tip clearance increases from 0.2 mm to 1.1 mm, the head difference between critical stall condition and deep stall condition is about 0.79 m, 0.58 m, 0.52 m and 0.35 m, indicating that the intensity of tip leakage flow (TLF) is not linear with tip clearance size. The inflow instability at pump inlet will increase as the growth of tip clearance size, and it comes from the inlet swirling flow induced by the return of TLF. The high loss in impeller is caused by the TLF and stall vortex under stall conditions while the large-scale flow separation vortex and back flow from the annular volute are responsible for the high loss area in guide vane domain. The results could be referred to optimize the hydraulic structure of mixed-flow pump.",
keywords = "Entropy production, Hydraulic losses, Mixed-flow pump, Rotating stall, Tip leakage flow",
author = "Leilei Ji and Wei Li and Weidong Shi and Fei Tian and Ramesh Agarwal",
note = "Funding Information: The work was sponsored by the National Natural Science Foundation of China (Nos.51679111, 51409127), Synergistic Innovation Center of Jiangsu Modern Agricultural Equipment and Technology (4091600014), National Key R&D Program Project (No.2017YFC0403703), PAPD, Key R&D Program Project in Jiangsu Province (BE2017126), Key R&D Program Project of Zhenjiang (No.SH2017049), and Scientific Research Start Foundation Project of Jiangsu University (No.13JDG105), Six talent peaks project in Jiangsu Province (JNHB-192), Postgraduate Research & Practice Innovation Program of Jiangsu Province (KYCX19_1601), the first author would like to thank Chinese Scholarship Council (CSC) for the financial support and Washington University in St. Louis for providing the opportunity to spend a year as a visiting PhD student (201908320291). Funding Information: The work was sponsored by the National Natural Science Foundation of China (Nos. 51679111 , 51409127 ), Synergistic Innovation Center of Jiangsu Modern Agricultural Equipment and Technology ( 4091600014 ), National Key R&D Program Project (No. 2017YFC0403703 ), PAPD, Key R&D Program Project in Jiangsu Province ( BE2017126 ), Key R&D Program Project of Zhenjiang (No. SH2017049 ), and Scientific Research Start Foundation Project of Jiangsu University (No. 13JDG105 ), Six talent peaks project in Jiangsu Province ( JNHB-192 ), Postgraduate Research & Practice Innovation Program of Jiangsu Province ( KYCX19_1601 ), the first author would like to thank Chinese Scholarship Council (CSC) for the financial support and Washington University in St. Louis for providing the opportunity to spend a year as a visiting PhD student (201908320291). Publisher Copyright: {\textcopyright} 2020",
year = "2020",
month = oct,
doi = "10.1016/j.icheatmasstransfer.2020.104784",
language = "English",
volume = "117",
journal = "International Communications in Heat and Mass Transfer",
issn = "0735-1933",
}