Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction

Abstract Much less attention has been focused on the particle deposition in rectifying plate though it is a common problem in shale gas pipe systems. The effects of particle parameter and flow field on the deposition and distribution of particle in a new‐type rectifying plate system are investigated...

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Main Authors: Shanbi Peng, Qikun Chen, Chao Zheng, Enbin Liu
Format: Article
Language:English
Published: Wiley 2020-03-01
Series:Energy Science & Engineering
Subjects:
Online Access:https://doi.org/10.1002/ese3.543
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author Shanbi Peng
Qikun Chen
Chao Zheng
Enbin Liu
author_facet Shanbi Peng
Qikun Chen
Chao Zheng
Enbin Liu
author_sort Shanbi Peng
collection DOAJ
description Abstract Much less attention has been focused on the particle deposition in rectifying plate though it is a common problem in shale gas pipe systems. The effects of particle parameter and flow field on the deposition and distribution of particle in a new‐type rectifying plate system are investigated. Both the computational fluid dynamics (CFD) method and the experiment method are used in order to analyze the particle deposition under various conditions. The accuracy of simulation model is verified with measurements in the experiment and from analyzing, and it is found that the Boltzmann equation can well describe the relationship between gas Reynolds number and particle deposition in the rectifying plate system. It is also found from investigation that the particle deposition is greatly affected by the particle parameter. Deposition rate rises with the increase of the particle diameter; however, it reduces gradually with the decrease of particle shape factor. Moreover, the particle mass concentration is an essential dimension that can give a prediction of where the particle may deposit.
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spelling doaj.art-4118797d7cbf4d55b9c72ae5998e15de2022-12-22T02:34:34ZengWileyEnergy Science & Engineering2050-05052020-03-018370271710.1002/ese3.543Analysis of particle deposition in a new‐type rectifying plate system during shale gas extractionShanbi Peng0Qikun Chen1Chao Zheng2Enbin Liu3School of Civil Engineering and Architecture Southwest Petroleum University Chengdu ChinaSchool of Civil Engineering and Architecture Southwest Petroleum University Chengdu ChinaNorthwest Sichuan Gas Deposit Southwest Oil and Gas Field Institution Mian yang ChinaPetroleum Engineering School Southwest Petroleum University Chengdu ChinaAbstract Much less attention has been focused on the particle deposition in rectifying plate though it is a common problem in shale gas pipe systems. The effects of particle parameter and flow field on the deposition and distribution of particle in a new‐type rectifying plate system are investigated. Both the computational fluid dynamics (CFD) method and the experiment method are used in order to analyze the particle deposition under various conditions. The accuracy of simulation model is verified with measurements in the experiment and from analyzing, and it is found that the Boltzmann equation can well describe the relationship between gas Reynolds number and particle deposition in the rectifying plate system. It is also found from investigation that the particle deposition is greatly affected by the particle parameter. Deposition rate rises with the increase of the particle diameter; however, it reduces gradually with the decrease of particle shape factor. Moreover, the particle mass concentration is an essential dimension that can give a prediction of where the particle may deposit.https://doi.org/10.1002/ese3.543computational fluid dynamics (CFD)deposition experimentnew‐type rectifying plateparticle depositionshale gas extraction
spellingShingle Shanbi Peng
Qikun Chen
Chao Zheng
Enbin Liu
Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
Energy Science & Engineering
computational fluid dynamics (CFD)
deposition experiment
new‐type rectifying plate
particle deposition
shale gas extraction
title Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
title_full Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
title_fullStr Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
title_full_unstemmed Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
title_short Analysis of particle deposition in a new‐type rectifying plate system during shale gas extraction
title_sort analysis of particle deposition in a new type rectifying plate system during shale gas extraction
topic computational fluid dynamics (CFD)
deposition experiment
new‐type rectifying plate
particle deposition
shale gas extraction
url https://doi.org/10.1002/ese3.543
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AT qikunchen analysisofparticledepositioninanewtyperectifyingplatesystemduringshalegasextraction
AT chaozheng analysisofparticledepositioninanewtyperectifyingplatesystemduringshalegasextraction
AT enbinliu analysisofparticledepositioninanewtyperectifyingplatesystemduringshalegasextraction