Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump

The turbulence dissipation will cause the increment of energy loss in the multiphase pump and deteriorate the pump performance. In order to research the turbulence dissipation rate distribution characteristics in the pressurized unit of the multiphase pump, the spiral axial flow type multiphase pump...

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Main Authors: Zongliu Huang, Guangtai Shi, Xiaobing Liu, Haigang Wen
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/9/5/886
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spelling doaj-f503ee49a50642bbaae031565325d2562021-06-01T00:23:01ZengMDPI AGProcesses2227-97172021-05-01988688610.3390/pr9050886Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase PumpZongliu Huang0Guangtai Shi1Xiaobing Liu2Haigang Wen3Key Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaKey Laboratory of Fluid and Power Machinery, Ministry of Education, Xihua University, Chengdu 610039, ChinaThe turbulence dissipation will cause the increment of energy loss in the multiphase pump and deteriorate the pump performance. In order to research the turbulence dissipation rate distribution characteristics in the pressurized unit of the multiphase pump, the spiral axial flow type multiphase pump is researched numerically in the present study. This research is focused on the turbulence dissipation rate distribution characteristics in the directions of inlet to outlet, hub to rim, and in the circumferential direction of the rotating impeller blades. Numerical simulation based on the RANS (Reynolds averaged Navier–Stokes equations) and the <i>k</i>-<i>ω</i> SST (Shear Stress Transport) turbulence model has been carried out. The numerical method is verified by comparing the numerical results with the experimental data. Results show that the regions of the large turbulence dissipation rate are mainly at the inlet and outlet of the rotating impeller and static impeller, while it is almost zero from the inlet to the middle of outlet in the suction surface and pressure surface of the first-stage rotating impeller blades. The turbulence dissipation rate is increased gradually from the hub to the rim of the inlet section of the first-stage rotating impeller, while it is decreased firstly and then increased on the middle and outlet sections. The turbulence dissipation rate distributes unevenly in the circumferential direction on the outlet section. The maximum value of the turbulence dissipation rate occurs at 0.9 times of the rated flow rate, while the minimum value at 1.5 times of the rated flow rate. Four turning points in the turbulence dissipation rate distribution that are the same as the number of impeller blades occur at 0.5 times the blade height at 0.9 times the rated flow rate condition. The turbulence dissipation rate distribution characteristics in the pressurized unit of the multiphase pump have been studied carefully in this paper, and the research results have an important significance for improving the performance of the multiphase pump theoretically.https://www.mdpi.com/2227-9717/9/5/886multiphase pumpturbulence dissipation rateflow ratepressurized unitnumerical simulation
collection DOAJ
language English
format Article
sources DOAJ
author Zongliu Huang
Guangtai Shi
Xiaobing Liu
Haigang Wen
spellingShingle Zongliu Huang
Guangtai Shi
Xiaobing Liu
Haigang Wen
Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
Processes
multiphase pump
turbulence dissipation rate
flow rate
pressurized unit
numerical simulation
author_facet Zongliu Huang
Guangtai Shi
Xiaobing Liu
Haigang Wen
author_sort Zongliu Huang
title Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
title_short Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
title_full Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
title_fullStr Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
title_full_unstemmed Effect of Flow Rate on Turbulence Dissipation Rate Distribution in a Multiphase Pump
title_sort effect of flow rate on turbulence dissipation rate distribution in a multiphase pump
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2021-05-01
description The turbulence dissipation will cause the increment of energy loss in the multiphase pump and deteriorate the pump performance. In order to research the turbulence dissipation rate distribution characteristics in the pressurized unit of the multiphase pump, the spiral axial flow type multiphase pump is researched numerically in the present study. This research is focused on the turbulence dissipation rate distribution characteristics in the directions of inlet to outlet, hub to rim, and in the circumferential direction of the rotating impeller blades. Numerical simulation based on the RANS (Reynolds averaged Navier–Stokes equations) and the <i>k</i>-<i>ω</i> SST (Shear Stress Transport) turbulence model has been carried out. The numerical method is verified by comparing the numerical results with the experimental data. Results show that the regions of the large turbulence dissipation rate are mainly at the inlet and outlet of the rotating impeller and static impeller, while it is almost zero from the inlet to the middle of outlet in the suction surface and pressure surface of the first-stage rotating impeller blades. The turbulence dissipation rate is increased gradually from the hub to the rim of the inlet section of the first-stage rotating impeller, while it is decreased firstly and then increased on the middle and outlet sections. The turbulence dissipation rate distributes unevenly in the circumferential direction on the outlet section. The maximum value of the turbulence dissipation rate occurs at 0.9 times of the rated flow rate, while the minimum value at 1.5 times of the rated flow rate. Four turning points in the turbulence dissipation rate distribution that are the same as the number of impeller blades occur at 0.5 times the blade height at 0.9 times the rated flow rate condition. The turbulence dissipation rate distribution characteristics in the pressurized unit of the multiphase pump have been studied carefully in this paper, and the research results have an important significance for improving the performance of the multiphase pump theoretically.
topic multiphase pump
turbulence dissipation rate
flow rate
pressurized unit
numerical simulation
url https://www.mdpi.com/2227-9717/9/5/886
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AT guangtaishi effectofflowrateonturbulencedissipationratedistributioninamultiphasepump
AT xiaobingliu effectofflowrateonturbulencedissipationratedistributioninamultiphasepump
AT haigangwen effectofflowrateonturbulencedissipationratedistributioninamultiphasepump
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