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作 者:Yassine Chihab Mohammed Garoum Najma Laaroussi
机构地区:[1]Mohammed V University in Rabat,Materials,Energy and Acoustics TEAM,Rabat,Morocco
出 处:《Energy and Built Environment》2024年第1期70-80,共11页能源与人工环境(英文)
摘 要:This study examines the benefits of incorporating passive techniques into multilayer hollow clay brick walls to improve their dynamic thermal performance.The finite element approach was used to solve the incompressible Navier-Stokes and energy equations to analyze the dynamic thermal response of walls exposed to real thermal excitations of the Marrakesh climate.The results show that increasing the emissivity from 0.1 to 0.9 significantly increases the total heat load over 24 h.Furthermore,filling 100% of the cavities with insulation materials delayed the temperature peak by about 2.3 h and lowered the decrement factor by roughly 43%,with a value smaller than 0.07.In addition,it is demonstrated that the total thermal load is reduced by approximately 28% for improved wall configurations(100% insulation filling cavities)compared to traditional wall configurations(100% air filling cavities),which aids in improving building energy efficiency.
关 键 词:Time lag Decrement factor Coupled heat transfer Analytical solution Hollow clay brick Insulation filling cavities Energy savings in building
分 类 号:TM912[电气工程—电力电子与电力传动]
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