Department of Architecture and Architectural Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Department of Architectural Science, Ryerson University, Toronto, ON M5B 2K3, Canada.
Environ Int. 2019 Sep;130:104900. doi: 10.1016/j.envint.2019.06.010. Epub 2019 Jul 4.
In addition to the mitigation of carbon emissions through the reduction of building energy consumption, the prevention of fire spread in buildings is important an important task globally. Therefore, a growing interest towards building materials that can simultaneously contribute to energy savings and provide good flame-retardant performance in buildings exist. The flame-retardant performances of buildings can be improved through the use of inorganic building materials during construction. Meanwhile, among the different types of construction waste, more than 70% of ceramics can be recycled, which would reduce carbon emissions in the production process. Ceramics are inorganic and non-flammable, and can thus secure the flame-retardant performance of buildings. In this study, recycled ceramic-based inorganic insulation to secure the flame-retardant performance of a building are analyzed for their energy saving values. A case study building was modeled and the flame-retardant performance and building energy consumption were analyzed. Setting the thermal transmittance of the external wall according to the energy conservation design standards in South Korea, the tradeoff between model calculates annual energy consumption fire protection and minimization of material environmental impacts are discussed. As a result of simulation, when a wall constructed according to the energy conservation design standards of buildings, the building energy was saved by 18.6% and fire resistance performance was secured.
除了通过减少建筑能耗来减少碳排放外,防止建筑物火势蔓延也是全球重要的任务。因此,人们对能够同时有助于节能并为建筑物提供良好阻燃性能的建筑材料越来越感兴趣。在施工过程中使用无机建筑材料可以提高建筑物的阻燃性能。同时,在不同类型的建筑废物中,超过 70%的陶瓷可以回收利用,从而减少生产过程中的碳排放。陶瓷是无机且不可燃的,因此可以确保建筑物的阻燃性能。在这项研究中,分析了回收陶瓷基无机保温材料的节能价值,以确保建筑物的阻燃性能。对一栋案例研究建筑进行了建模,并分析了其阻燃性能和建筑能耗。根据韩国的节能设计标准设置外墙的热传递,讨论了模型计算的年度能耗、防火和最小化材料环境影响之间的权衡。模拟结果表明,当按照建筑物的节能设计标准建造墙壁时,建筑能耗可节省 18.6%,并确保了防火性能。