Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling

An experimental study is conducted to cool the ambient air using a new humidification technique. A wind tunnel is built with a test section formed by four modified MiniModule membrane contactors. An ambient air passes over the membrane contactors (cross flow) while water pumps through the contactors...

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Main Authors: Mohamed Ali, Obida Zeitoun, Hany Al-Ansary, Abdullah Nuhait
Format: Article
Language:English
Published: SAGE Publishing 2013-01-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1155/2013/174016
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spelling doaj-bcfffa2323ca4826a5140a733386e22c2020-11-25T01:27:14ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322013-01-01510.1155/2013/17401610.1155_2013/174016Humidification Technique Using New Modified MiniModule Membrane Contactors for Air CoolingMohamed AliObida ZeitounHany Al-AnsaryAbdullah NuhaitAn experimental study is conducted to cool the ambient air using a new humidification technique. A wind tunnel is built with a test section formed by four modified MiniModule membrane contactors. An ambient air passes over the membrane contactors (cross flow) while water pumps through the contactors. Air temperature and relative humidity are measured upstream and downstream of the membrane contactors array which was used to humidify and cool the outdoor air. Five average air velocities (3.03, 3.33, 3.95, 4.52, and 5.04 m/s) and four water flow rates (0.0, 0.013, 0.019, and 0.025 kg/s) are used. Air velocity is measured at different locations along the centerline of the cross section. Using the modified MiniModule membrane contactors array dropped the air temperature by a maximum and minimum of 10.77°C and 3.44°C, respectively, depending on the outdoor air. The corresponding maximum increase of the relative humidity is 4.65% which depends on the ambient condition. It is noticed that the evaporation process does not follow the isenthalpic lines therefore; heat transfers from the air as latent and sensible heats.https://doi.org/10.1155/2013/174016
collection DOAJ
language English
format Article
sources DOAJ
author Mohamed Ali
Obida Zeitoun
Hany Al-Ansary
Abdullah Nuhait
spellingShingle Mohamed Ali
Obida Zeitoun
Hany Al-Ansary
Abdullah Nuhait
Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
Advances in Mechanical Engineering
author_facet Mohamed Ali
Obida Zeitoun
Hany Al-Ansary
Abdullah Nuhait
author_sort Mohamed Ali
title Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
title_short Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
title_full Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
title_fullStr Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
title_full_unstemmed Humidification Technique Using New Modified MiniModule Membrane Contactors for Air Cooling
title_sort humidification technique using new modified minimodule membrane contactors for air cooling
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8132
publishDate 2013-01-01
description An experimental study is conducted to cool the ambient air using a new humidification technique. A wind tunnel is built with a test section formed by four modified MiniModule membrane contactors. An ambient air passes over the membrane contactors (cross flow) while water pumps through the contactors. Air temperature and relative humidity are measured upstream and downstream of the membrane contactors array which was used to humidify and cool the outdoor air. Five average air velocities (3.03, 3.33, 3.95, 4.52, and 5.04 m/s) and four water flow rates (0.0, 0.013, 0.019, and 0.025 kg/s) are used. Air velocity is measured at different locations along the centerline of the cross section. Using the modified MiniModule membrane contactors array dropped the air temperature by a maximum and minimum of 10.77°C and 3.44°C, respectively, depending on the outdoor air. The corresponding maximum increase of the relative humidity is 4.65% which depends on the ambient condition. It is noticed that the evaporation process does not follow the isenthalpic lines therefore; heat transfers from the air as latent and sensible heats.
url https://doi.org/10.1155/2013/174016
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AT obidazeitoun humidificationtechniqueusingnewmodifiedminimodulemembranecontactorsforaircooling
AT hanyalansary humidificationtechniqueusingnewmodifiedminimodulemembranecontactorsforaircooling
AT abdullahnuhait humidificationtechniqueusingnewmodifiedminimodulemembranecontactorsforaircooling
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