Thermochromic glazing and phase-change materials are capable of adapting their optical and thermal properties in response to temperature variation, without consuming additional energy. They are therefore ideal construction materials for passive building envelopes. In this study, the energy-saving potential of combining the two materials into one adaptive glazing system is investigated numerically. Computational fluid dynamic models were constructed to simulate the thermal performance of different adaptive glazing systems consisting of the two materials. The models were tested against two existing experimental studies, and good agreements were found. Based on the models, the applicability of the novel glazing systems for a south office building facade was investigated for summer and winter in Shanghai, China. It was found that PCM-integrated thermochromic triple glazing units outperform normal double-glazing units by reducing total heat gain by up to 32% and 40% for a sunny and cloudy day in summer, respectively. In winter, however, they tend to block more desirable solar radiation and hence are not as effective as normal double-glazing units. (C) 2021 Elsevier B.V. All rights reserved.
机构:
TEBE Research Group, Department of Energy, Politecnico di Torino
The Research Centre on Zero Emission Buildings, Faculty of Architecture and Fine Art, Norwegian University of Science andTEBE Research Group, Department of Energy, Politecnico di Torino
机构:
Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
Li, Dong
Li, Zaiwu
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
Li, Zaiwu
Zheng, Yumeng
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
Zheng, Yumeng
Liu, Changyu
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
Liu, Changyu
Hussein, Ahmed Kadhim
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Univ Babylon, Coll Engn, Dept Mech Engn, Babylon, Hilla, IraqNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
Hussein, Ahmed Kadhim
Liu, Xiaoyan
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing, Peoples R China
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China
Liu, Changyu
Wu, Yangyang
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China
Wu, Yangyang
Li, Dong
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China
Li, Dong
Zhou, Yingming
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China
Zhou, Yingming
Wang, Zhiguo
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China
Wang, Zhiguo
Liu, Xiaoyan
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Northeast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R ChinaNortheast Petr Univ, Sch Architecture & Civil Engn, Daqing City, Peoples R China