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Impact of space layout on energy performance of office buildings coupling daylight with thermal simulation

机译:空间布局对结合日光与热模拟的办公楼能源性能的影响

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Space layout design is one of the most important phases in architectural design, and current studies have shown that it can affect building energy performance. However, its influence has not been quantified. This paper aims at investigating the impact of space layouts on building energy performance. We use the floor plan of an office building in the Netherlands as reference, and propose eleven space layouts based on the reference. Calculations are performed with the tools Honeybee and Ladybug in Grasshopper, which are developed based on Daysim and EnergyPlus, to simulate lighting, cooling and heating demand of these layouts. In addition, we couple daylight with thermal simulation, by importing the artificial lighting schedule calculated in Daysim to EnergyPlus. The result shows that the heating demand of the worst layout is 12% higher than the best layout, the cooling demand of the worst layout is 10% higher than the best layout, and the lighting demand of the worst layout is 65% higher than the best layout. The total final energy use of the worst layout is 19% higher than the best layout.
机译:空间布局设计是建筑设计中最重要的阶段之一,目前的研究表明,空间布局设计会影响建筑的能源性能。但是,其影响尚未量化。本文旨在调查空间布局对建筑能源性能的影响。我们以荷兰一栋办公楼的平面图作为参考,并根据参考提出了11种空间布局。使用Grasshopper中的Honeybee和Ladybug工具进行计算,这些工具是基于Daysim和EnergyPlus开发的,可以模拟这些布局的照明,冷却和加热需求。此外,我们将Daysim中计算出的人工照明时间表导入到EnergyPlus中,从而将日光与热模拟相结合。结果表明,最差布局的供暖需求比最佳布局高12%,最差布局的制冷需求比最佳布局高10%,最差布局的照明需求比最佳布局高65%。最佳布局。最差布局的最终​​总能源使用量比最佳布局高19%。

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