Numerical simulation and structural optimization of the inclined oil/water separator.

Improving the separation efficiency of the inclined oil/water separator, a new type of gravity separation equipment, is of great importance. In order to obtain a comprehensive understanding of the internal flow field of the separation process of oil and water within this separator, a numerical simul...

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Main Authors: Liqiong Chen, Shijuan Wu, Hongfang Lu, Kun Huang, Lijie Zhao
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4395151?pdf=render
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spelling doaj-1308fc18bd2341e89b00be7c6c3f27292020-11-24T21:58:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012409510.1371/journal.pone.0124095Numerical simulation and structural optimization of the inclined oil/water separator.Liqiong ChenShijuan WuHongfang LuKun HuangLijie ZhaoImproving the separation efficiency of the inclined oil/water separator, a new type of gravity separation equipment, is of great importance. In order to obtain a comprehensive understanding of the internal flow field of the separation process of oil and water within this separator, a numerical simulation based on Euler multiphase flow analysis and the realizable k-ε two equation turbulence model was executed using Fluent software. The optimal value ranges of the separator's various structural parameters used in the numerical simulation were selected through orthogonal array experiments. A field experiment on the separator was conducted with optimized structural parameters in order to validate the reliability of the numerical simulation results. The research results indicated that the horizontal position of the dispenser, the hole number, and the diameter had significant effects on the oil/water separation efficiency, and that the longitudinal position of the dispenser and the position of the weir plate had insignificant effects on the oil/water separation efficiency. The optimal structural parameters obtained through the orthogonal array experiments resulted in an oil/water separation efficiency of up to 95%, which was 4.996% greater than that realized by the original structural parameters.http://europepmc.org/articles/PMC4395151?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Liqiong Chen
Shijuan Wu
Hongfang Lu
Kun Huang
Lijie Zhao
spellingShingle Liqiong Chen
Shijuan Wu
Hongfang Lu
Kun Huang
Lijie Zhao
Numerical simulation and structural optimization of the inclined oil/water separator.
PLoS ONE
author_facet Liqiong Chen
Shijuan Wu
Hongfang Lu
Kun Huang
Lijie Zhao
author_sort Liqiong Chen
title Numerical simulation and structural optimization of the inclined oil/water separator.
title_short Numerical simulation and structural optimization of the inclined oil/water separator.
title_full Numerical simulation and structural optimization of the inclined oil/water separator.
title_fullStr Numerical simulation and structural optimization of the inclined oil/water separator.
title_full_unstemmed Numerical simulation and structural optimization of the inclined oil/water separator.
title_sort numerical simulation and structural optimization of the inclined oil/water separator.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Improving the separation efficiency of the inclined oil/water separator, a new type of gravity separation equipment, is of great importance. In order to obtain a comprehensive understanding of the internal flow field of the separation process of oil and water within this separator, a numerical simulation based on Euler multiphase flow analysis and the realizable k-ε two equation turbulence model was executed using Fluent software. The optimal value ranges of the separator's various structural parameters used in the numerical simulation were selected through orthogonal array experiments. A field experiment on the separator was conducted with optimized structural parameters in order to validate the reliability of the numerical simulation results. The research results indicated that the horizontal position of the dispenser, the hole number, and the diameter had significant effects on the oil/water separation efficiency, and that the longitudinal position of the dispenser and the position of the weir plate had insignificant effects on the oil/water separation efficiency. The optimal structural parameters obtained through the orthogonal array experiments resulted in an oil/water separation efficiency of up to 95%, which was 4.996% greater than that realized by the original structural parameters.
url http://europepmc.org/articles/PMC4395151?pdf=render
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AT shijuanwu numericalsimulationandstructuraloptimizationoftheinclinedoilwaterseparator
AT hongfanglu numericalsimulationandstructuraloptimizationoftheinclinedoilwaterseparator
AT kunhuang numericalsimulationandstructuraloptimizationoftheinclinedoilwaterseparator
AT lijiezhao numericalsimulationandstructuraloptimizationoftheinclinedoilwaterseparator
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