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Optimizing the configuration of a façade module for office buildings by means of integrated thermal and lighting simulations in a total energy perspective

机译:通过综合能源和照明模拟从总能源角度优化办公大楼的外墙模块的配置

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摘要

The building enclosure plays a relevant role in the management of the energy flows in buildings and in the exploitation of solar energy at a building scale. An optimized configuration of the façade can contribute to reduce the total energy demand of the building. Traditionally, the search for the optimal façade configuration is obtained by analyzing the heating demand and/or the cooling demand only, while the implication of the façade configuration on artificial lighting energy demand is often not addressed. A comprehensive approach (i.e. including heating, cooling and artificial lighting energy demand) is instead necessary to reduce the total energy need of the building and the optimization of the façade configuration becomes no longer straightforward, because non-linear relationships are often disclosed. The paper presents a methodology and the results of the search for the optimal transparent percentage in a façade module for low energy office buildings. The investigation is carried out in a temperate oceanic climate, on the four main orientations, on three versions of the office building and with different HVAC system's efficiency. The results show that, regardless of the orientations and of the façade area of the building, the optimal configuration is achieved when the transparent percentage is between 35% and 45% of the total façade module area. The highest difference between the optimal configuration and the worst one occurs in the north-exposed façade, while the south-exposed façade is the one that shows the smallest difference between the optimal and the worst configuration
机译:建筑围护在建筑中的能量流管理和建筑规模的太阳能开发中起着重要的作用。外墙的优化​​配置可以减少建筑物的总能源需求。传统上,仅通过分析供热需求和/或制冷需求来获得对最佳立面结构的搜索,而立面结构对人工照明能源需求的影响往往没有得到解决。相反,必须采用一种综合的方法(即包括供暖,制冷和人工照明的能源需求)来减少建筑物的总能源需求,并且由于常常公开非线性关系,因此立面结构的优化不再变得简单。本文介绍了一种方法和在低能耗办公建筑的立面模块中搜索最佳透明百分比的结果。该调查是在温带海洋气候下,在四个主要方向,三个版本的办公楼以及具有不同HVAC系统效率的情况下进行的。结果表明,无论建筑物的朝向和立面面积如何,当透明百分比占立面模块总面积的35%至45%之间时,可以实现最佳配置。最佳配置和最差配置之间的最大差异出现在北向立面中,而南暴露的立面则显示出最佳配置和最差配置之间的最小差异

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