Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas

Supersonic cyclone separator is a novel type of natural gas dewatering device that overcomes the shortcomings of traditional dewatering methods. In order to investigate the factors affecting the separation efficiency and improve the separation performance of the supersonic cyclone separator, the dis...

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Main Authors: Zhenya Duan, Zhiwei Ma, Ying Guo, Junmei Zhang, Shujie Sun, Longhui Liang
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/12/2/488
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spelling doaj-4c531ab951e84144804ef5bb42d724572020-11-25T00:28:08ZengMDPI AGSustainability2071-10502020-01-0112248810.3390/su12020488su12020488Study on Supersonic Dehydration Efficiency of High Pressure Natural GasZhenya Duan0Zhiwei Ma1Ying Guo2Junmei Zhang3Shujie Sun4Longhui Liang5College to Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, ChinaCollege to Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, ChinaCollege to Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, ChinaCollege of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, ChinaCollege to Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, ChinaNanjing Tica Thermal Technology Co. Ltd., Nanjing 210038, ChinaSupersonic cyclone separator is a novel type of natural gas dewatering device that overcomes the shortcomings of traditional dewatering methods. In order to investigate the factors affecting the separation efficiency and improve the separation performance of the supersonic cyclone separator, the discrete particle model was employed in numerical calculation. On the basis of an accurate numerical model, the flow field of supersonic cyclone separator was analyzed, the trajectories of droplets were predicted, and the factors affecting the separation efficiency of droplets were investigated. The numerical results indicated that Laval nozzle could provide the necessary conditions for the condensation of water vapor. The swirler can throw droplets onto the wall or into the separator, both of which are foundations for realizing the separation of droplets. Droplets had three typical trajectories affected by centrifugal effect and inertia effect. The existence of a shock wave increases the swirl intensity of droplets, which is conducive to the separation of droplets. The diameter of droplets should be increased as much as possible in order to improve separation efficiency, and the gas−liquid area ratio should be about 45.25%, and the number of vanes should be 10.https://www.mdpi.com/2071-1050/12/2/488supersonic cyclone separatordiscrete particle modelflow fielddroplet trajectoriesseparation efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Zhenya Duan
Zhiwei Ma
Ying Guo
Junmei Zhang
Shujie Sun
Longhui Liang
spellingShingle Zhenya Duan
Zhiwei Ma
Ying Guo
Junmei Zhang
Shujie Sun
Longhui Liang
Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
Sustainability
supersonic cyclone separator
discrete particle model
flow field
droplet trajectories
separation efficiency
author_facet Zhenya Duan
Zhiwei Ma
Ying Guo
Junmei Zhang
Shujie Sun
Longhui Liang
author_sort Zhenya Duan
title Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
title_short Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
title_full Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
title_fullStr Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
title_full_unstemmed Study on Supersonic Dehydration Efficiency of High Pressure Natural Gas
title_sort study on supersonic dehydration efficiency of high pressure natural gas
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2020-01-01
description Supersonic cyclone separator is a novel type of natural gas dewatering device that overcomes the shortcomings of traditional dewatering methods. In order to investigate the factors affecting the separation efficiency and improve the separation performance of the supersonic cyclone separator, the discrete particle model was employed in numerical calculation. On the basis of an accurate numerical model, the flow field of supersonic cyclone separator was analyzed, the trajectories of droplets were predicted, and the factors affecting the separation efficiency of droplets were investigated. The numerical results indicated that Laval nozzle could provide the necessary conditions for the condensation of water vapor. The swirler can throw droplets onto the wall or into the separator, both of which are foundations for realizing the separation of droplets. Droplets had three typical trajectories affected by centrifugal effect and inertia effect. The existence of a shock wave increases the swirl intensity of droplets, which is conducive to the separation of droplets. The diameter of droplets should be increased as much as possible in order to improve separation efficiency, and the gas−liquid area ratio should be about 45.25%, and the number of vanes should be 10.
topic supersonic cyclone separator
discrete particle model
flow field
droplet trajectories
separation efficiency
url https://www.mdpi.com/2071-1050/12/2/488
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