SIMULASI PENGARUH PARAMETER (KECEPATAN DAN TEMPERATUR) UDARA DAN DESICCANT TERHADAP LAJU PERUBAHAN HUMIDIFIKASI DALAM REGENERATOR MENGGUNAKAN CFD

Main Authors: MARYADI, Dedi, YOHANA, Eflita
Format: Lainnya NonPeerReviewed application/pdf
Terbitan: Perpustakaan Jurusan Teknik Mesin FT-UNDIP , 2009
Subjects:
Online Access: http://eprints.undip.ac.id/2988/1/SIMULASI_PENGARUH_PARAMETER_(KECEPATAN_DAN_TEMPERATUR)_UDARA_DAN_DESICCANT_TERHADAP_LAJU_PERUBAHAN_HUMIDIFIKASI_DALAM_REGENERATOR_MENGGUNAKAN_CFD_L2E306010_Dedi_Maryadi.pdf
http://www.mesin.undip.ac.id
http://eprints.undip.ac.id/2988/
ctrlnum 2988
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><title>SIMULASI PENGARUH PARAMETER (KECEPATAN DAN TEMPERATUR) UDARA DAN DESICCANT TERHADAP LAJU PERUBAHAN HUMIDIFIKASI DALAM REGENERATOR MENGGUNAKAN CFD</title><creator>MARYADI, Dedi</creator><creator>YOHANA, Eflita</creator><subject>TJ Mechanical engineering and machinery</subject><description>Dehumidifier and regenerator are important parts in liquid desiccant air conditioning system. In those devices air are conditioned to obtained the wanted condition.&#xD; &#xD; Dehumidification process in the dehumidifier causing decrease of desiccant concentration reasoned by effect of water vapour absorption from inlet air. Concentrated of liquid desiccant occur in the regenerator as regeneration process and raising the temperature and the air humidity this were caused by the evaporation of liquid desiccant.&#xD; &#xD; The simulation using computational fluid dynamic (CFD) obtained that the output air temperature were raised as high as the increasing of the desiccant velocity, air temperature, air velocity and desiccant temperature. For the output air humidity ratio will raise as the increasing desicant velocity, air temperature, air velocity, desiccant temperature, and also the input air humidity ratio because of the high evaporation (humidification) rate.&#xD; &#xD; Keyword : regenerator, CFD, temperature, humidity ratio, regeneration, liquid desiccant&#xD; </description><publisher>Perpustakaan Jurusan Teknik Mesin FT-UNDIP</publisher><date>2009-07</date><type>Other:Other</type><type>PeerReview:NonPeerReviewed</type><type>File:application/pdf</type><identifier>http://eprints.undip.ac.id/2988/1/SIMULASI_PENGARUH_PARAMETER_(KECEPATAN_DAN_TEMPERATUR)_UDARA_DAN_DESICCANT_TERHADAP_LAJU_PERUBAHAN_HUMIDIFIKASI_DALAM_REGENERATOR_MENGGUNAKAN_CFD_L2E306010_Dedi_Maryadi.pdf</identifier><relation>http://www.mesin.undip.ac.id</relation><identifier>MARYADI, Dedi and YOHANA, Eflita (2009) SIMULASI PENGARUH PARAMETER (KECEPATAN DAN TEMPERATUR) UDARA DAN DESICCANT TERHADAP LAJU PERUBAHAN HUMIDIFIKASI DALAM REGENERATOR MENGGUNAKAN CFD. Perpustakaan Jurusan Teknik Mesin FT-UNDIP, Semarang. (Unpublished)</identifier><relation>http://eprints.undip.ac.id/2988/</relation><recordID>2988</recordID></dc>
format Other:Other
Other
PeerReview:NonPeerReviewed
PeerReview
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File
author MARYADI, Dedi
YOHANA, Eflita
title SIMULASI PENGARUH PARAMETER (KECEPATAN DAN TEMPERATUR) UDARA DAN DESICCANT TERHADAP LAJU PERUBAHAN HUMIDIFIKASI DALAM REGENERATOR MENGGUNAKAN CFD
publisher Perpustakaan Jurusan Teknik Mesin FT-UNDIP
publishDate 2009
topic TJ Mechanical engineering and machinery
url http://eprints.undip.ac.id/2988/1/SIMULASI_PENGARUH_PARAMETER_(KECEPATAN_DAN_TEMPERATUR)_UDARA_DAN_DESICCANT_TERHADAP_LAJU_PERUBAHAN_HUMIDIFIKASI_DALAM_REGENERATOR_MENGGUNAKAN_CFD_L2E306010_Dedi_Maryadi.pdf
http://www.mesin.undip.ac.id
http://eprints.undip.ac.id/2988/
contents Dehumidifier and regenerator are important parts in liquid desiccant air conditioning system. In those devices air are conditioned to obtained the wanted condition. Dehumidification process in the dehumidifier causing decrease of desiccant concentration reasoned by effect of water vapour absorption from inlet air. Concentrated of liquid desiccant occur in the regenerator as regeneration process and raising the temperature and the air humidity this were caused by the evaporation of liquid desiccant. The simulation using computational fluid dynamic (CFD) obtained that the output air temperature were raised as high as the increasing of the desiccant velocity, air temperature, air velocity and desiccant temperature. For the output air humidity ratio will raise as the increasing desicant velocity, air temperature, air velocity, desiccant temperature, and also the input air humidity ratio because of the high evaporation (humidification) rate. Keyword : regenerator, CFD, temperature, humidity ratio, regeneration, liquid desiccant
id IOS2852.2988
institution Universitas Diponegoro
institution_id 69
institution_type library:university
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library Perpustakaan Universitas Diponegoro
library_id 485
collection Diponegoro University Institutional Repository
repository_id 2852
city SEMARANG
province JAWA TENGAH
repoId IOS2852
first_indexed 2016-09-15T17:58:20Z
last_indexed 2016-09-22T20:44:26Z
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