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Lighting energy savings potential of split-pane electrochromic windows controlled for daylighting with visual comfort

机译:可控制分窗格电致变色窗的照明节能潜力,可在日光下视觉舒适

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摘要

A simulation study was conducted to evaluate lighting energy savings of split-pane electrochromic (EC) windows controlled to satisfy key visual comfort parameters. Using the Radiance lighting simulation software, interior illuminance and luminance levels were computed for a south-facing private office illuminated by a window split into two independently-controlled EC panes. The transmittance of these was optimized hourly for a work plane illuminance target while meeting visual comfort constraints, using a least-squares algorithm with linear inequality constraints. Blinds were successively deployed until visual comfort criteria were satisfied. The energy performance of electrochromics proved to be highly dependent on how blinds were controlled. With hourly blind position adjustments, electrochromics showed significantly higher (62% and 53%, respectively without and with overhang) lighting energy consumption than clear glass. With a control algorithm designed to better approximate realistic manual control by an occupant, electrochromics achieved significant savings (48% and 37%, respectively without and with overhang). In all cases, energy consumption decreased when the workplace illuminance target was increased. In addition, the fraction of time during which the occupant had an unobstructed view of the outside was significantly greater with electrochromics: 10 months out of the year vs. a handful of days for the reference case.
机译:进行了仿真研究,以评估可控制以满足关键视觉舒适度参数的分窗格电致变色(EC)窗的照明节能量。使用Radiance照明模拟软件,计算了一个朝南的私人办公室的内部照度和亮度水平,该私人办公室的窗户被分成两个独立控制的EC窗格的窗户照亮。使用具有线性不等式约束的最小二乘算法,在满足视觉舒适性约束的同时,针对工作平面照度目标每小时优化这些透光率。窗帘被连续部署,直到满足视觉舒适标准为止。事实证明,电致变色材料的能量性能高度依赖于百叶窗的控制方式。每小时调整盲点位置,与变色玻璃相比,电致变色材料显示的照明能耗要高得多(分别为62%和53%,无和有悬垂)。通过设计一种能够更好地逼近乘员实际逼真的手动控制的控制算法,电致变色器可实现显着的节省(无悬架和悬架分别为48%和37%)。在所有情况下,提高工作场所照度目标时的能耗都会降低。此外,使用电致变色技术的时候,乘员对外界无阻碍的视野的时间比例要大得多:一年10个月,而参考案例只有几天。

著录项

  • 来源
    《Energy and Buildings》 |2013年第6期|8-20|共13页
  • 作者单位

    Building Technology and Urban Systems Department, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Mailstop 90-3111,1 Cyclotron Road, Berkeley, CA 94720, USA;

    Building Technology and Urban Systems Department, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Mailstop 90-3111,1 Cyclotron Road, Berkeley, CA 94720, USA;

    Anyhere Software, 1200 Dartmouth Street, Albany, CA 94706, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Building energy-efficiency; Daylighting; Control optimization; Electrochromic windows;

    机译:建筑节能;采光;控制优化;电致变色窗;
  • 入库时间 2022-08-18 00:09:51

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