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Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device

Recently, the importance of mechanical facilities in charge of the safety and comfort of occupants in buildings has once again been highlighted in accordance with global social issues such as the spread of COVID-19. In response, various ventilation systems are being developed to improve indoor air q...

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Autores principales: Yang, Ja-Kang, Lee, Hyun-Je, Park, Sun-Hyo, Chae, Young-Tae, Choi, Jong-Su, Park, Doo-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941314/
https://www.ncbi.nlm.nih.gov/pubmed/36845040
http://dx.doi.org/10.1016/j.heliyon.2023.e13927
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author Yang, Ja-Kang
Lee, Hyun-Je
Park, Sun-Hyo
Chae, Young-Tae
Choi, Jong-Su
Park, Doo-Yong
author_facet Yang, Ja-Kang
Lee, Hyun-Je
Park, Sun-Hyo
Chae, Young-Tae
Choi, Jong-Su
Park, Doo-Yong
author_sort Yang, Ja-Kang
collection PubMed
description Recently, the importance of mechanical facilities in charge of the safety and comfort of occupants in buildings has once again been highlighted in accordance with global social issues such as the spread of COVID-19. In response, various ventilation systems are being developed to improve indoor air quality, and efforts are being made to satisfy the indoor comfort of the occupants. Such advanced facilities allow occupants to secure indoor air quality, while frequent ventilation systems can affect the cooling and heating load in the building, and there is also a problem that it can occupy a relatively large amount of space in the building. This study proposes an integrated, outdoor fan-ventilated cooling device and analyzes its performance and economic efficiency. The EnergyPlus simulation program was used to model two types of systems for comparison: an existing (base) model with a condenser located in the outdoor unit, and a developed model with the condenser integrated within the cooling system. The state of the air passing through the condenser was analyzed prior to comparing the efficiency of the integrated, outdoor fan-ventilated cooling device, followed by an in-depth analysis of the performance and economic efficiency based on total energy consumption. In Case 1, the air passing through the cooling system was approximately 5  [Formula: see text] lower than the base model and showed 11% peak load reduction in comparison to the maximum energy consumption. Additionally, a comparison between regions with different outdoor air temperatures showed an average cost reduction of 16% in Daejeon and Busan City.
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spelling pubmed-99413142023-02-21 Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device Yang, Ja-Kang Lee, Hyun-Je Park, Sun-Hyo Chae, Young-Tae Choi, Jong-Su Park, Doo-Yong Heliyon Research Article Recently, the importance of mechanical facilities in charge of the safety and comfort of occupants in buildings has once again been highlighted in accordance with global social issues such as the spread of COVID-19. In response, various ventilation systems are being developed to improve indoor air quality, and efforts are being made to satisfy the indoor comfort of the occupants. Such advanced facilities allow occupants to secure indoor air quality, while frequent ventilation systems can affect the cooling and heating load in the building, and there is also a problem that it can occupy a relatively large amount of space in the building. This study proposes an integrated, outdoor fan-ventilated cooling device and analyzes its performance and economic efficiency. The EnergyPlus simulation program was used to model two types of systems for comparison: an existing (base) model with a condenser located in the outdoor unit, and a developed model with the condenser integrated within the cooling system. The state of the air passing through the condenser was analyzed prior to comparing the efficiency of the integrated, outdoor fan-ventilated cooling device, followed by an in-depth analysis of the performance and economic efficiency based on total energy consumption. In Case 1, the air passing through the cooling system was approximately 5  [Formula: see text] lower than the base model and showed 11% peak load reduction in comparison to the maximum energy consumption. Additionally, a comparison between regions with different outdoor air temperatures showed an average cost reduction of 16% in Daejeon and Busan City. Elsevier 2023-02-21 /pmc/articles/PMC9941314/ /pubmed/36845040 http://dx.doi.org/10.1016/j.heliyon.2023.e13927 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Yang, Ja-Kang
Lee, Hyun-Je
Park, Sun-Hyo
Chae, Young-Tae
Choi, Jong-Su
Park, Doo-Yong
Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title_full Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title_fullStr Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title_full_unstemmed Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title_short Performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
title_sort performance and economic efficiency analysis of an integrated, outdoor fan-ventilated cooling device
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941314/
https://www.ncbi.nlm.nih.gov/pubmed/36845040
http://dx.doi.org/10.1016/j.heliyon.2023.e13927
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