A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow
A novel hood structure has been designed for the dust control system in the foundry in order to improve the working environment. A composite strategy has been applied for comparative analysis of the optimal venting volume and the airflow distribution between the conventional hood and the novel one i...
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Foundry Journal Agency
2011-08-01
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Online Access: | http://www.foundryworld.com/uploadfile/2011083135022009.pdf |
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doaj-dbf77380c7d94ab9a37c04c233366c5e2020-11-25T00:15:33ZengFoundry Journal AgencyChina Foundry1672-64212011-08-0183316320A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow Song GaojuYang LeiShen HenggenA novel hood structure has been designed for the dust control system in the foundry in order to improve the working environment. A composite strategy has been applied for comparative analysis of the optimal venting volume and the airflow distribution between the conventional hood and the novel one in this study. A Computational Fluid Dynamic (CFD) method is used to simulate the airflow fields and dust-polluted air moving paths. The CFD results show that a two-outlet hood, with one outlet located on the left of the hood, is better for improving dust-polluted air than the hood with one outlet only. It can be concluded that the number of the outlets as well as their location on the hood has a significant influence on the air flow pattern in the hood. The optimal venting volume is also a major consideration that is discussed in the study. The venting volume should be designed by considering both the effective level of air flow velocity around the dust source and the energy saving. The optimal airflow distribution may reduce the turbulence in the hood system.http://www.foundryworld.com/uploadfile/2011083135022009.pdfventing volumeair flow distributionhoodflask shakerCFD |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Song Gaoju Yang Lei Shen Henggen |
spellingShingle |
Song Gaoju Yang Lei Shen Henggen A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow China Foundry venting volume air flow distribution hood flask shaker CFD |
author_facet |
Song Gaoju Yang Lei Shen Henggen |
author_sort |
Song Gaoju |
title |
A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
title_short |
A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
title_full |
A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
title_fullStr |
A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
title_full_unstemmed |
A CFD study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
title_sort |
cfd study on optimal venting volume and air flow distribution in a special designed hood system for controlling dust flow |
publisher |
Foundry Journal Agency |
series |
China Foundry |
issn |
1672-6421 |
publishDate |
2011-08-01 |
description |
A novel hood structure has been designed for the dust control system in the foundry in order to improve the working environment. A composite strategy has been applied for comparative analysis of the optimal venting volume and the airflow distribution between the conventional hood and the novel one in this study. A Computational Fluid Dynamic (CFD) method is used to simulate the airflow fields and dust-polluted air moving paths. The CFD results show that a two-outlet hood, with one outlet located on the left of the hood, is better for improving dust-polluted air than the hood with one outlet only. It can be concluded that the number of the outlets as well as their location on the hood has a significant influence on the air flow pattern in the hood. The optimal venting volume is also a major consideration that is discussed in the study. The venting volume should be designed by considering both the effective level of air flow velocity around the dust source and the energy saving. The optimal airflow distribution may reduce the turbulence in the hood system. |
topic |
venting volume air flow distribution hood flask shaker CFD |
url |
http://www.foundryworld.com/uploadfile/2011083135022009.pdf |
work_keys_str_mv |
AT songgaoju acfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow AT yanglei acfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow AT shenhenggen acfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow AT songgaoju cfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow AT yanglei cfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow AT shenhenggen cfdstudyonoptimalventingvolumeandairflowdistributioninaspecialdesignedhoodsystemforcontrollingdustflow |
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