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Comparative control strategies for roller shades with respect to daylighting and energy performance

机译:关于日光和能量性能的卷帘比较控制策略

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Traditionally, automated shading operation includes open-closed strategies trying to maintain a comfortable environment while controlling glare and solar gains. Four different dynamic shading control strategies with constant and variable set points were developed and studied in this paper using year-round transient integrated thermal and lighting simulation, to investigate their impact on outdoor view, daylighting metrics, thermal loads and energy consumption as well as on excessive illuminance that can cause visual discomfort in private offices. The strategies and generic and can be applied to any location, orientation and climate if appropriate set points are selected. The results showed that: (ⅰ) shades remain open for a significant portion of working hours depending on orientation and weather conditions (ⅱ) controlling shades based on solar radiation as suggested in previous studies might not be an effective method; instead, illuminance thresholds are probably more appropriate (ⅲ) the third control strategy leads to reduced source energy consumption and maximized daylight utilization; however, careful consideration of interior illuminances is needed to avoid the risk of glare; (ⅳ) differences in annual source energy consumption between control strategies range from 10.1% to 34.4% depending on glazing and shading properties and (ⅴ) different strategies should be used in different orientations. Validation of results with full-scale experiments is presented for representative cases. The interactions and integration between daylighting benefits and thermal requirements need to be studied through the interplay between lighting energy use, solar and internal heat gains, while considering comfort parameters that vary depending on the shading control strategy used.
机译:传统上,自动遮光操作包括在控制眩光和日照的同时试图保持舒适环境的开闭策略。本文通过全年的瞬态综合热和光照模拟,开发并研究了四种具有恒定和可变设定点的动态阴影控制策略,以研究它们对室外视野,采光指标,热负荷和能耗以及对环境的影响。过度的照明会导致私人办公室的视觉不适。如果选择了适当的设定点,则该策略和通用策略可以应用于任何位置,方向和气候。结果表明:(ⅰ)根据方向和天气条件,遮阳帘在相当长的工作时间内保持打开状态(ⅱ)如先前研究中所述,基于太阳辐射控制遮阳帘可能不是一种有效的方法;相反,照度阈值可能更合适(ⅲ)第三种控制策略可减少光源能耗并最大限度地利用日光;但是,需要仔细考虑内部照明以避免眩光的风险; (ⅳ)控制策略之间的年度能源消耗差异在10.1%到34.4%之间,具体取决于玻璃和遮光性能,并且(ⅴ)在不同的方向上应使用不同的策略。提出了具有代表性的案例的大规模实验结果的验证。需要通过考虑照明能量使用,太阳能和内部热量获取之间的相互作用来研究采光效益与热量需求之间的相互作用和集成,同时考虑根据所使用的阴影控制策略而变化的舒适性参数。

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