LAPSE:2023.30953
Published Article
LAPSE:2023.30953
Optimization of the Thermal Environment of Large-Scale Open Space with Subzone-Based Temperature Setting Using BEM and CFD Coupling Simulation
Qihang Zhang, Qinli Deng, Xiaofang Shan, Xin Kang, Zhigang Ren
April 17, 2023
Abstract
A cruise ship, which has large-scale open spaces, has an uneven cabin thermal environment in the cruise public space, leading to overcooling or poor cooling issues. Therefore, optimizing the thermal environment of public spaces during a cruise should be the priority. According to the space functions of the cruise ship, the large public space is divided into three subzones: the entertainment area (Subzone I), the round-table dining area (Subzone II), and the square-table dining area (Subzone III). To create a uniform, stable, and comfortable thermal environment, this study proposes a subzone-based temperature setting approach to independently adjust the thermal environment of each subzone. Coupling simulation of building energy modeling (BEM) and computational fluid dynamics (CFD) was adopted in this study to determine proper temperature setpoints of the subzones under different occupancy rates. The results indicate that, compared with a single-temperature setpoint for the entire public space, the subzone-based temperature setpoints could achieve a uniform thermal environment. The average temperature difference among the three subzones was 0.68 °C. Moreover, the airflow between two adjacent subzones considerably affected the BEM results of energy consumption of the air-conditioning system.
Keywords
building energy modeling, CFD simulations, mass exchange rates, temperature field
Suggested Citation
Zhang Q, Deng Q, Shan X, Kang X, Ren Z. Optimization of the Thermal Environment of Large-Scale Open Space with Subzone-Based Temperature Setting Using BEM and CFD Coupling Simulation. (2023). LAPSE:2023.30953
Author Affiliations
Zhang Q: School of Civil Engineering and Architecture, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, China
Deng Q: School of Civil Engineering and Architecture, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, China; Hainan Institute of Wuhan University of Technology, No. 5 Chuangxin Road, Sanya 572024, China [ORCID]
Shan X: School of Civil Engineering and Architecture, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, China; Hainan Institute of Wuhan University of Technology, No. 5 Chuangxin Road, Sanya 572024, China
Kang X: School of Civil Engineering and Architecture, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, China; Hainan Institute of Wuhan University of Technology, No. 5 Chuangxin Road, Sanya 572024, China
Ren Z: School of Civil Engineering and Architecture, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, China; Hainan Institute of Wuhan University of Technology, No. 5 Chuangxin Road, Sanya 572024, China
Journal Name
Energies
Volume
16
Issue
7
First Page
3214
Year
2023
Publication Date
2023-04-03
ISSN
1996-1073
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Original Submission
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PII: en16073214, Publication Type: Journal Article
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LAPSE:2023.30953
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https://doi.org/10.3390/en16073214
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