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Energy performance of PV integrated office buildings with fan-assisted double skin facades under tropical climates

机译:PV综合办公楼的能源性能,具有热带气候下的粉丝辅助双皮肤立面

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Building upon the knowledge accumulated from a comprehensive research program on double skin facades (DSFs), this study explores two design enhancements for buildings in tropical climates. Thermal and energetic benefits of the inclusion of mechanical ventilation within the DSF cavity and electricity generation from the PV systems have been determined across a wide spectrum of Brazilian climates. Using computational simulations, DSF models with two fan configurations, placed solely at the top of the DSF and distributed along the height of the cavity, are evaluated. Annual distribution of thermal comfort acceptance and impact on energy demands from HVAC systems and contribution from the PV systems is analyzed. Results demonstrated wide variations of energy performance in relation to the climatic conditions. The 'Cool' climate zone presented most significant benefits from the proposed design enhancements resulting in electricity surplus. On the other hand, electricity generated from PV in the moderate climate zone can only cover about 30% of the HVAC energy consumption, whereas energy savings in the 'hot' zone are the lowest with only 15% of electricity contributed from the PV systems. The results of this paper contribute to the early stage of design when considering the adoption of DSF in tropical climates.
机译:本研究探讨了热带气候中建筑物的综合研究计划累积的知识。在DSF腔内包含机械通气的热量和能量效益,从光伏系统中的广泛的巴西气候中确定了来自光伏系统的电力发电。使用计算模拟,具有两个风扇配置的DSF型号,单独放置在DSF的顶部并沿着空腔的高度分布。分析了热舒适性接受和对来自HVAC系统的能源需求的每年分布和对PV系统的贡献。结果表明,与气候条件相关的能量性能差异很大。 “酷”气候区从提出的设计增强功能呈现出最大的效果,导致电力盈余。另一方面,从中等气候区的PV产生的电力只能覆盖大约30%的HVAC能耗,而“热”区的节能是最低的,只有15%的电力从光伏系统贡献。考虑到在热带气候中采用DSF时,本文的结果有助于设计早期阶段。

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