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Impact of façade window design on energy, daylighting and thermal comfort in nearly zero-energy houses

机译:外墙窗户设计对几乎零能耗房屋的能源,采光和热舒适性的影响

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摘要

Appropriate window solutions are decisive for the design of 'nearly zero-energy' buildings with healthy and comfortable indoor environment. This paper focuses on the relationship between size, orientation and glazing properties of façade windows for different side-lit room geometries in Danish 'nearly zero-energy' houses. The effect of these parameters on space heating demand, daylighting and thermal environment is evaluated by means of EnergyPlus and DAYSIM and presented in charts illustrating how combinations of design parameters with minimum space heating demand can be selected within a solution space defined by targets for daylighting and thermal comfort. In contrast with existing guidelines, the results show an upper limit for energy savings and utilisation of solar gains in south-oriented rooms. Instead, low U-values are needed in both north- and south oriented rooms before large window areas lead to reductions in space heating demand. Furthermore, windows in south-oriented rooms have to be carefully designed to prevent overheating. Design options for prevention of overheating, however, correspond well with options for low space heating demand. Glazings with solar control coating are therefore obvious alternatives to dynamic solar shadings. Regarding room geometry, deep or narrow south-oriented rooms show difficulties in reaching sufficient daylight levels without overheating.
机译:合适的窗户解决方案对于设计具有健康舒适室内环境的“近零能耗”建筑至关重要。本文着眼于丹麦“近零能耗”房屋中不同侧面照明房间几何形状的立面窗户的尺寸,方向和玻璃性质之间的关系。通过EnergyPlus和DAYSIM评估了这些参数对空间供热需求,采光和热环境的影响,并在图表中显示,这些图表说明了如何在目标所定义的解决方案空间内选择设计参数与最小空间供热需求的组合。热舒适。与现有指南相反,结果显示了在朝南的房间中节能和利用太阳能的上限。取而代之的是,在朝北和朝南的房间中都需要低U值,然后大窗户面积才能减少空间供暖需求。此外,朝南的房间的窗户必须精心设计,以防止过热。但是,用于防止过热的设计选项与低空间供暖需求的选项非常吻合。因此,带有日光控制涂层的玻璃是动态日光遮阳的明显替代品。关于房间的几何形状,较深或较窄的朝南房间难以达到足够的日光水平而又不会过热。

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