Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems

In this study, heat transfer and aerosol deposition in the under-floor and baseboard heating systems have been investigated, numerically. The aim of this study is a comparison between these heating systems. This comparison obtains the optimal heating system with low suspended particles in the air. C...

Full description

Bibliographic Details
Main Authors: Fahimeh Ghazanfari, Ataallah Soltani Goharrizi, Bahador Abolpour
Format: Article
Language:English
Published: Iranian Association for Energy Economics 2018-02-01
Series:Environmental Energy and Economic Research
Subjects:
Online Access:http://www.eeer.ir/article_69173_274dbf01a07fdce60ba662f99dedb06e.pdf
_version_ 1818195285728296960
author Fahimeh Ghazanfari
Ataallah Soltani Goharrizi
Bahador Abolpour
author_facet Fahimeh Ghazanfari
Ataallah Soltani Goharrizi
Bahador Abolpour
author_sort Fahimeh Ghazanfari
collection DOAJ
description In this study, heat transfer and aerosol deposition in the under-floor and baseboard heating systems have been investigated, numerically. The aim of this study is a comparison between these heating systems. This comparison obtains the optimal heating system with low suspended particles in the air. Computational fluid dynamic with Eulerian-Lagrangian method has been used to simulate fluid and particles flows. The velocity and temperature distribution have been obtained by solving the equations of continuity, momentum and energy. It is resulted that, the radiant heat transfer contains about 63 % and 60 % of overall heat transfer of the under-floor and baseboard heating systems, respectively. Side walls have a same condition for deposing the particles in both of investigated heating systems, approximately. But, in floor heating system, most of the particles are deposited under the roof, while the baseboard heating system has a more percentage of seated particles on the floor.
first_indexed 2024-12-12T01:15:46Z
format Article
id doaj.art-7a7d1c03554644fdb5d217ef0d5365db
institution Directory Open Access Journal
issn 2538-4988
2676-4997
language English
last_indexed 2024-12-12T01:15:46Z
publishDate 2018-02-01
publisher Iranian Association for Energy Economics
record_format Article
series Environmental Energy and Economic Research
spelling doaj.art-7a7d1c03554644fdb5d217ef0d5365db2022-12-22T00:43:21ZengIranian Association for Energy EconomicsEnvironmental Energy and Economic Research2538-49882676-49972018-02-0121132010.22097/eeer.2018.130393.102769173Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating SystemsFahimeh Ghazanfari0Ataallah Soltani Goharrizi1Bahador Abolpour2Department of Chemical Engineering, Shahid Bahonar University of Kerman, Kerman, IranDepartment of Chemical Engineering, Shahid Bahonar University of Kerman, Kerman, IranDepartment of Chemical Engineering, Sirjan University of Technology, Sirjan, IranIn this study, heat transfer and aerosol deposition in the under-floor and baseboard heating systems have been investigated, numerically. The aim of this study is a comparison between these heating systems. This comparison obtains the optimal heating system with low suspended particles in the air. Computational fluid dynamic with Eulerian-Lagrangian method has been used to simulate fluid and particles flows. The velocity and temperature distribution have been obtained by solving the equations of continuity, momentum and energy. It is resulted that, the radiant heat transfer contains about 63 % and 60 % of overall heat transfer of the under-floor and baseboard heating systems, respectively. Side walls have a same condition for deposing the particles in both of investigated heating systems, approximately. But, in floor heating system, most of the particles are deposited under the roof, while the baseboard heating system has a more percentage of seated particles on the floor.http://www.eeer.ir/article_69173_274dbf01a07fdce60ba662f99dedb06e.pdffloor heating systembaseboard heating systemheat transferaerosol deposition
spellingShingle Fahimeh Ghazanfari
Ataallah Soltani Goharrizi
Bahador Abolpour
Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
Environmental Energy and Economic Research
floor heating system
baseboard heating system
heat transfer
aerosol deposition
title Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
title_full Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
title_fullStr Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
title_full_unstemmed Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
title_short Numerical Study of Heat Transfer and Aerosol Deposition in a Room Environment with Under-floor or Baseboard Heating Systems
title_sort numerical study of heat transfer and aerosol deposition in a room environment with under floor or baseboard heating systems
topic floor heating system
baseboard heating system
heat transfer
aerosol deposition
url http://www.eeer.ir/article_69173_274dbf01a07fdce60ba662f99dedb06e.pdf
work_keys_str_mv AT fahimehghazanfari numericalstudyofheattransferandaerosoldepositioninaroomenvironmentwithunderfloororbaseboardheatingsystems
AT ataallahsoltanigoharrizi numericalstudyofheattransferandaerosoldepositioninaroomenvironmentwithunderfloororbaseboardheatingsystems
AT bahadorabolpour numericalstudyofheattransferandaerosoldepositioninaroomenvironmentwithunderfloororbaseboardheatingsystems