A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method

Inspired by wide application of the second law of thermodynamics to flow and heat transfer devices, local entropy production analysis method was creatively introduced into energy assessment system of centrifugal water pump. Based on Reynolds stress turbulent model and energy equation model, the stea...

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Main Authors: Hou Hucan, Zhang Yongxue, Li Zhenlin
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2017-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600143H.pdf
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spelling doaj-8c64020ac3f04060885ed09915ee33c02021-01-02T05:47:30ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632017-01-012131287129910.2298/TSCI150702143H0354-98361600143HA numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production methodHou Hucan0Zhang Yongxue1Li Zhenlin2China University of Petroleum-Beijing, College of Mechanical and Transportation Engineering, Beijing, ChinaChina University of Petroleum-Beijing, Beijing Key Laboratory of Process Fluid Filtration and Separation, Beijing, ChinaChina University of Petroleum-Beijing, College of Mechanical and Transportation Engineering, Beijing, ChinaInspired by wide application of the second law of thermodynamics to flow and heat transfer devices, local entropy production analysis method was creatively introduced into energy assessment system of centrifugal water pump. Based on Reynolds stress turbulent model and energy equation model, the steady numerical simulation of the whole flow passage of one IS centrifugal pump was carried out. The local entropy production terms were calculated by user defined functions, mainly including wall entropy production, turbulent entropy production, and viscous entropy production. The numerical results indicated that the irreversible energy loss calculated by the local entropy production method agreed well with that calculated by the traditional method but with some deviations which were probably caused by high rotatability and high curvature of impeller and volute. The wall entropy production and turbulent entropy production took up large part of the whole entropy production about 48.61% and 47.91%, respectively, which indicated that wall friction and turbulent fluctuation were the major factors in affecting irreversible energy loss. Meanwhile, the entropy production rate distribution was discussed and compared with turbulent kinetic energy dissipation rate distribution, it showed that turbulent entropy production rate increased sharply at the near wall regions and both distributed more uniformly. The blade region in leading edge near suction side, trailing edge and volute tongue were the main regions to generate irreversible exergy loss. This research broadens a completely new view in evaluating energy loss and further optimizes pump using entropy production minimization.http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600143H.pdfentropy productioncentrifugal pumpnumerical simulationenergy loss evaluation
collection DOAJ
language English
format Article
sources DOAJ
author Hou Hucan
Zhang Yongxue
Li Zhenlin
spellingShingle Hou Hucan
Zhang Yongxue
Li Zhenlin
A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
Thermal Science
entropy production
centrifugal pump
numerical simulation
energy loss evaluation
author_facet Hou Hucan
Zhang Yongxue
Li Zhenlin
author_sort Hou Hucan
title A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
title_short A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
title_full A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
title_fullStr A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
title_full_unstemmed A numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
title_sort numerically research on energy loss evaluation in a centrifugal pump system based on local entropy production method
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2017-01-01
description Inspired by wide application of the second law of thermodynamics to flow and heat transfer devices, local entropy production analysis method was creatively introduced into energy assessment system of centrifugal water pump. Based on Reynolds stress turbulent model and energy equation model, the steady numerical simulation of the whole flow passage of one IS centrifugal pump was carried out. The local entropy production terms were calculated by user defined functions, mainly including wall entropy production, turbulent entropy production, and viscous entropy production. The numerical results indicated that the irreversible energy loss calculated by the local entropy production method agreed well with that calculated by the traditional method but with some deviations which were probably caused by high rotatability and high curvature of impeller and volute. The wall entropy production and turbulent entropy production took up large part of the whole entropy production about 48.61% and 47.91%, respectively, which indicated that wall friction and turbulent fluctuation were the major factors in affecting irreversible energy loss. Meanwhile, the entropy production rate distribution was discussed and compared with turbulent kinetic energy dissipation rate distribution, it showed that turbulent entropy production rate increased sharply at the near wall regions and both distributed more uniformly. The blade region in leading edge near suction side, trailing edge and volute tongue were the main regions to generate irreversible exergy loss. This research broadens a completely new view in evaluating energy loss and further optimizes pump using entropy production minimization.
topic entropy production
centrifugal pump
numerical simulation
energy loss evaluation
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600143H.pdf
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