Simulation and Analysis of Thermal Insulators Applied to Post-Disaster Temporary Shelters in Tropical Countries

Q2 Engineering Designs Pub Date : 2023-05-09 DOI:10.3390/designs7030064
B. B. D. da Costa, Caio F. P. Silva, Ana Carolina F. Maciel, Herson D. P. Cusi, Gladys Maquera, A. Haddad
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引用次数: 1

Abstract

Containers are fundamental elements for the development of international trade; however, it is estimated that there are more than 17 million retired containers stacked in ports around the world. Considering the high costs involved in the process of storing, transporting, or destroying these materials, in addition to their non-degradable nature, it is urgent to develop strategies for the sustainable use of these decommissioned containers. In this context, repurposing these containers into permanent structures is becoming a predominant trend. One solution is converting steel shipping structures into habitable spaces. However, due to the urgency with which Container Houses (CHs) are demanded in case of disasters, they are usually planned to be built as quickly as possible, serving as many people as possible, and do not consider the basic principles of energy efficiency. The performance of the CHs is, then, impaired, including risks of overheating, corrosion, and rust, among others, during service, making them an even more stressful experience for their users who are already in a vulnerable situation. Therefore, the objective of this study is to compare the performance of two thermal insulators applied to a temporary shelter container designed to promptly serve vulnerable populations. The model was developed in Building Information Modeling (BIM) software and simulated in Building Energy Simulation (BES) software, aiming to obtain subsidies for its technical and economic viability analysis. The results indicated that thermal insulators are able to generate significant savings in energy consumption, with mineral wool presenting better long-term performance.
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热带国家灾后临时避难所隔热材料的模拟与分析
集装箱是国际贸易发展的基本要素;然而,据估计,有超过1700万个退役集装箱堆放在世界各地的港口。考虑到储存、运输或销毁这些材料的过程所涉及的高成本,以及它们不可降解的性质,迫切需要制定可持续利用这些退役容器的战略。在这种情况下,将这些容器改造成永久性结构正在成为一种主要趋势。一种解决方案是将钢铁运输结构改造成可居住的空间。然而,由于集装箱房屋(CHs)在灾害情况下的紧急需求,它们通常计划尽快建造,为尽可能多的人服务,而不考虑能源效率的基本原则。在使用过程中,CHs的性能会受到损害,包括过热、腐蚀和生锈等风险,这对已经处于脆弱状态的用户来说是一种更大的压力体验。因此,本研究的目的是比较两种隔热材料应用于临时庇护容器的性能,该容器旨在迅速为弱势群体服务。该模型在建筑信息模型(BIM)软件中开发,在建筑能源模拟(BES)软件中进行仿真,目的是为其技术和经济可行性分析获得补贴。结果表明,保温材料能够显著节省能源消耗,矿棉具有更好的长期性能。
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来源期刊
Designs
Designs Engineering-Engineering (miscellaneous)
CiteScore
3.90
自引率
0.00%
发文量
0
审稿时长
11 weeks
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