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Assessing the energy and daylighting impacts of human behavior with window shades, a life-cycle comparison of manual and automated blinds

机译:使用窗帘,手动和自动百叶窗的生命周期比较来评估人类行为对能源和采光的影响

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Manual and automated blind controls are typically not included in energy and daylight simulation in part because there is no consensus in the research or practice communities about the way users operate manual blinds or override automated blinds. In order for blind use patterns to become part of energy and daylight simulation best practices, the range of annual energy and daylighting impacts associated with blind use must be understood. This paper addresses these aspects by comparing four leading candidates of manually-controlled blinds plus two automated blind control algorithms using a high-rise office building located in Boise, ID. This study revealed that all four current "manual" blind use algorithm choices perform relatively similarly to automated systems, and surprisingly sometimes even more efficiently. LM-83 currently has the lowest average occlusion during regularly occupied hours, followed by Lightswitch-2002, while Blindswith-A and -B have the highest average occlusion. The IES-recommended manual blind algorithm resulted even in lower average blind occlusion and lighting energy consumption than automated systems. Finally, life-cycle cost analysis was calculated. The results show that the cost savings from interior automated shading system are substantial over a 30-year time horizon, when compared with common passive manual blinds ($25 versus $7.6 Net Present Value per SF glazing area).
机译:手动和自动百叶窗控制通常不包括在能量和日光模拟中,部分原因是在研究或实践社区中,用户对手动百叶窗或超越自动百叶窗的方式尚无共识。为了使盲人使用模式成为能源和日光模拟最佳实践的一部分,必须了解与盲人使用相关的年度能源和日光影响范围。本文通过使用位于美国爱达荷州博伊西市的一栋高层办公楼,比较了四种领先的手动控制百叶窗候选人与两种自动百叶窗控制算法,从而解决了这些问题。这项研究表明,当前所有四个“手动”盲用算法选择的性能与自动化系统相对相似,并且令人惊讶的是有时效率更高。 LM-83当前在正常占用时间内的平均遮挡度最低,其次是Lightswitch-2002,而Blindswith-A和-B的平均遮挡度最高。 IES推荐的手动盲算法甚至比自动系统更低的平均盲遮挡和照明能耗。最后,计算了生命周期成本分析。结果表明,与普通的被动式手动百叶窗相比(25美元对比SF玻璃净现值$ 7.6),在30年的时间范围内,内部自动遮阳系统可节省大量成本。

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