A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh

Cold air inflow has significant effect on a natural draft air cooled heat exchanger (NDACHE) chimney. To study the mechanism for the prevention of cold inflow into NDACHE chimney's, in total seven configuration of experiments were carried out In the prototype models for different heat loads at...

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Main Authors: Chu, Chi Ming, Sivakumar Kumaresan, Tham Heng Jin
Format: Research Report
Language:English
Published: Universiti Malaysia Sabah 2013
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Online Access:https://eprints.ums.edu.my/id/eprint/22800/1/A%20study%20of%20mechanism%20for%20the%20prevention%20of%20cold%20inflow%20into%20Chimneys%20using%20wire%20mesh.pdf
https://eprints.ums.edu.my/id/eprint/22800/
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spelling my.ums.eprints.228002019-07-18T13:50:12Z https://eprints.ums.edu.my/id/eprint/22800/ A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh Chu, Chi Ming Sivakumar Kumaresan Tham Heng Jin TA Engineering (General). Civil engineering (General) Cold air inflow has significant effect on a natural draft air cooled heat exchanger (NDACHE) chimney. To study the mechanism for the prevention of cold inflow into NDACHE chimney's, in total seven configuration of experiments were carried out In the prototype models for different heat loads at approximately 0.7SkW to 1.25kW. The effect of wire mesh screen on the chimney performance had also determined. Temperature and air velocity were measured for the configurations and heat loads. It was found that the top only, Top and Middle and Middle only installations were able to maintain draft velocity to within 3.0% of , the control experiment draft velocity in spite of the resistance of the mesh. It was also found that configurations utilizing mesh at the bottom had experienced a drop is draft velocity by up to 50% from the control. The smoke flow visualization tests clearly proved that cold air inflow phenomenon exits and can be countered with the installation of wire mesh at the top of the model. In the second phase of the project, the wire mesh of 3 different apertures and two chimney height were tested. Large aperture tended to allow more cold inflow and draft was directly proportional to chimney height. CFD runs were also done for the prototypes to explain the cause of wire mesh serving as repellent of cold inflow. Universiti Malaysia Sabah 2013 Research Report NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/22800/1/A%20study%20of%20mechanism%20for%20the%20prevention%20of%20cold%20inflow%20into%20Chimneys%20using%20wire%20mesh.pdf Chu, Chi Ming and Sivakumar Kumaresan and Tham Heng Jin (2013) A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh. (Unpublished)
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Chu, Chi Ming
Sivakumar Kumaresan
Tham Heng Jin
A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
description Cold air inflow has significant effect on a natural draft air cooled heat exchanger (NDACHE) chimney. To study the mechanism for the prevention of cold inflow into NDACHE chimney's, in total seven configuration of experiments were carried out In the prototype models for different heat loads at approximately 0.7SkW to 1.25kW. The effect of wire mesh screen on the chimney performance had also determined. Temperature and air velocity were measured for the configurations and heat loads. It was found that the top only, Top and Middle and Middle only installations were able to maintain draft velocity to within 3.0% of , the control experiment draft velocity in spite of the resistance of the mesh. It was also found that configurations utilizing mesh at the bottom had experienced a drop is draft velocity by up to 50% from the control. The smoke flow visualization tests clearly proved that cold air inflow phenomenon exits and can be countered with the installation of wire mesh at the top of the model. In the second phase of the project, the wire mesh of 3 different apertures and two chimney height were tested. Large aperture tended to allow more cold inflow and draft was directly proportional to chimney height. CFD runs were also done for the prototypes to explain the cause of wire mesh serving as repellent of cold inflow.
format Research Report
author Chu, Chi Ming
Sivakumar Kumaresan
Tham Heng Jin
author_facet Chu, Chi Ming
Sivakumar Kumaresan
Tham Heng Jin
author_sort Chu, Chi Ming
title A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
title_short A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
title_full A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
title_fullStr A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
title_full_unstemmed A study of mechanism for the prevention of cold inflow into Chimneys using wire mesh
title_sort study of mechanism for the prevention of cold inflow into chimneys using wire mesh
publisher Universiti Malaysia Sabah
publishDate 2013
url https://eprints.ums.edu.my/id/eprint/22800/1/A%20study%20of%20mechanism%20for%20the%20prevention%20of%20cold%20inflow%20into%20Chimneys%20using%20wire%20mesh.pdf
https://eprints.ums.edu.my/id/eprint/22800/
_version_ 1760230018279014400
score 13.211869