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Evaluation of impact of passive design measures with energy saving potential through estimation of shading control for visual comfort

机译:通过评估遮光控制以获得视觉舒适度,评估具有节能潜力的无源设计措施的影响

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Residential and commercial buildings together account for one-third of world's final energy consumption, thus making energy management in buildings of considerable significance. Passive design concept that depends on climate and location can be used as an effective and economical method to reduce the energy consumption in buildings. Seven cities in India, each representative of different geographic and climatic conditions, were selected for analysis. This article studies how the peak cooling and heating load are affected by varying some of the passive design parameters for each of the seven cities. The parameters varied are wall insulation thickness, roof insulation thickness, overhang depth, window orientation, and window-to-wall ratio. Results show that optimized passive design could reduce the peak cooling and heating loads by about 50%. Shading reduces cooling loads but is found to increase heating loads. In some of the locations, both heating in winter and cooling in summer are needed and designers should adopt appropriate passive measures depending on the location. Also for the same building, evaluation of shading is done in the context of lighting energy savings. An algorithm has been developed to iteratively alter and analyze set of roller blind positions to maintain visual comfort; as a result, the corresponding potential annual energy savings due to lighting were estimated. It was also observed that even after providing visual comfort to the occupants, energy savings only reduced by approximately 1% as compared to the case when visual comfort was overlooked.
机译:住宅和商业建筑合计占世界最终能源消耗的三分之一,因此,建筑物的能源管理意义重大。取决于气候和位置的无源设计概念可以用作减少建筑物能耗的有效且经济的方法。选择了印度的七个城市,每个城市代表不同的地理和气候条件,以进行分析。本文研究了如何通过改变七个城市中每个城市的一些被动设计参数来影响峰值制冷和供热负荷。更改的参数为墙体隔热层厚度,屋顶隔热层厚度,悬垂深度,窗户方向和窗户与墙壁的比率。结果表明,优化的无源设计可以将峰值制冷和制热负荷降低约50%。遮蔽减少了冷却负荷,但发现增加了加热负荷。在某些地区,既需要冬季供暖,又需要夏季制冷。设计师应根据所在地采取适当的被动措施。同样对于同一建筑物,在照明节能方面进行阴影评估。已经开发出一种算法来迭代地更改和分析一组卷帘位置以保持视觉舒适度;结果,估计了因照明而产生的相应潜在年度节能量。还观察到,即使在为乘员提供视觉舒适度之后,与忽略视觉舒适度的情况相比,节能仅减少了约1%。

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