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Assessment on Passive Cooling Techniques to Improve Steel Roof Thermal Performance in Hot Tropical Climate

机译:热带炎热气候下改善钢屋顶热性能的被动冷却技术评估

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In African hot tropical climate countries, due to climate and the unsuitability of construction materials, building’s indoor environment remains over the thermal comfort acceptable limit over long periods of time during the year. Among the building envelope components, roof is a critical part that is highly susceptible to solar radiation. Solutions like passive cooling and low energy consumption systems are not explored enough in those countries. These techniques and systems can be used to meet a large part of the cooling needs and reduce the overheating period in buildings, but their applicability depends on the climate zone. In this paper, investigations were conducted to determine their potential to improve steel roof performance for free running buildings under tropical climatic conditions. The case studies are two configurations (with and without attic) of typical steel roof in Burkina Faso. Using dynamic simulation, we have evaluated the impacts of radiant barrier, insulation, cool paint and ventilation for two configuration of roofing. For both configurations, high reflective solutions perform very well. It also appears that the attic case due to its actual configuration (shape and design) and to the climate conditions ventilation does not perform very well. These results can help building actors during the design process.
机译:在非洲热带炎热气候国家,由于气候和建筑材料的不合适,建筑物的室内环境在一年中的较长时期内仍超过热舒适可接受的极限。在建筑围护结构组件中,屋顶是非常容易受到太阳辐射影响的关键部分。在这些国家中,诸如被动冷却和低能耗系统之类的解决方案还不够深入。这些技术和系统可用于满足大部分制冷需求并减少建筑物的过热时间,但其适用性取决于气候区。在本文中,进行了调查以确定其在热带气候条件下改善自由运行建筑物的钢屋顶性能的潜力。案例研究是布基纳法索典型钢制屋顶的两种配置(有和没有阁楼)。使用动态仿真,我们评估了两种结构屋顶的辐射屏障,隔热,清漆和通风的影响。对于这两种配置,高反射解决方案的性能都很好。由于阁楼的实际配置(形状和设计)以及气候条件,通风情况也不佳。这些结果可以帮助在设计过程中建立参与者。

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