CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities
The statistical chart readings of temperature and relative humidity (RH) in manufacturing facilities are usually deviated from the standard range specification and conditions which will probably affect the product quality, human comfort and operation of machines. This paper performs the Computationa...
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my-utp-utpedia.172332017-03-01T15:39:09Z http://utpedia.utp.edu.my/17233/ CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities Paramaguru, Dhanis TJ Mechanical engineering and machinery The statistical chart readings of temperature and relative humidity (RH) in manufacturing facilities are usually deviated from the standard range specification and conditions which will probably affect the product quality, human comfort and operation of machines. This paper performs the Computational Fluid Dynamics (CFD) simulation of temperature and relative humidity (RH) distribution over large manufacturing industries’ facility. The minimum and maximum temperature readings were obtained as 16 ͦC and 25 ͦC respectively, while average temperature is 25 ͦC. The minimum and maximum relative humidity readings were attained as 40% and 52% respectively, while average relative humidity is 51.2%. The acquired outcomes from CFD simulation is compared with the findings of previous real-time measurement of temperature and relative humidity (RH) readings, to identify the errors in accuracy of the readings. IRC 2016-05 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/17233/1/Dhanis%20Paramaguru_15982_ME_MAY%2716.pdf Paramaguru, Dhanis (2016) CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities. IRC, Universiti Teknologi PETRONAS. (Submitted) |
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TJ Mechanical engineering and machinery Paramaguru, Dhanis CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
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The statistical chart readings of temperature and relative humidity (RH) in manufacturing facilities are usually deviated from the standard range specification and conditions which will probably affect the product quality, human comfort and operation of machines. This paper performs the Computational Fluid Dynamics (CFD) simulation of temperature and relative humidity (RH) distribution over large manufacturing industries’ facility. The minimum and maximum temperature readings were obtained as 16 ͦC and 25 ͦC respectively, while average temperature is 25 ͦC. The minimum and maximum relative humidity readings were attained as 40% and 52% respectively, while average relative humidity is 51.2%. The acquired outcomes from CFD simulation is compared with the findings of previous real-time measurement of temperature and relative humidity (RH) readings, to identify the errors in accuracy of the readings. |
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Final Year Project |
author |
Paramaguru, Dhanis |
author_facet |
Paramaguru, Dhanis |
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Paramaguru, Dhanis |
title |
CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
title_short |
CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
title_full |
CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
title_fullStr |
CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
title_full_unstemmed |
CFD Simulation of Temperature and Humidity Distribution over Large Manufacturing Facilities |
title_sort |
cfd simulation of temperature and humidity distribution over large manufacturing facilities |
publisher |
IRC |
publishDate |
2016 |
url |
http://utpedia.utp.edu.my/17233/1/Dhanis%20Paramaguru_15982_ME_MAY%2716.pdf http://utpedia.utp.edu.my/17233/ |
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1739832359645085696 |
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13.211869 |