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Luminance and vertical eye illuminance thresholds for occupants' visual comfort in daylit office environments

机译:白天办公环境中的乘员视觉舒适度的亮度和垂直眼睛照度阈值

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This paper investigates field measured visual parameters inside a daylit office space to define occupants' visual comfort thresholds, particularly for a view direction parallel to windows. Twelve human subjects performed a computer-based reading and typing task and provided subjective responses on various luminous environments, which were created by adjusting interior venetian blinds and electric lighting fixtures. A total of 120 different lighting conditions were tested and documented for both quantitative and qualitative analysis. High dynamic range photography was conducted to capture the luminance distributions of interior surfaces in addition to horizontal and vertical illuminance measurements by sensors. Statistical analysis of the collected data defined occupants' visual comfort thresholds: a luminance of 2420 cd/m(2) and luminance contrast ratio of 11.7. These new thresholds lie perfectly within the existing visual discomfort threshold ranges and confirm that a higher glare source luminance is tolerant in a view direction parallel to windows compared to view facing windows. A vertical eye illuminance threshold was also defined, but there are large discrepancies among the existing and newly defined thresholds. The collected subjective survey data also revealed 53%-60% evaluation accuracy rates of the existing glare indices. Daylight Glare Index and Unified Glare Rating metrics show the highest evaluation accuracy when daylight is the only light source. The CIE Glare Index metric shows the highest accuracy when both natural and electric lighting are introduced. Full understanding of visual comfort parameters and validation of the existing glare indices would help to achieve successful daylight harvesting in buildings.
机译:本文调查了在日光照射的办公室空间内现场测量的视觉参数,以定义居住者的视觉舒适度阈值,尤其是对于平行于窗户的观察方向。十二名人类受试者执行了基于计算机的阅读和打字任务,并对各种发光环境提供了主观反应,这些发光环境是通过调整室内百叶窗和电动照明设备而创建的。总共对120种不同的照明条件进行了测试,并记录了定量和定性分析。除通过传感器测量水平和垂直照度外,还进行了高动态范围摄影以捕获内表面的亮度分布。收集到的数据的统计分析定义了乘员的视觉舒适度阈值:亮度为2420 cd / m(2),亮度对比度为11.7。这些新的阈值完全位于现有的视觉不适阈值范围内,并确认与面向窗口的窗口相比,在平行于窗口的视图方向上可以容忍更高的眩光源亮度。还定义了垂直的眼睛照度阈值,但是现有阈值和新定义的阈值之间存在较大差异。收集的主观调查数据还显示,现有眩光指数的评估准确率为53%-60%。当日光是唯一的光源时,“日光眩光指数”和“统一眩光等级”度量标准显示最高的评估准确性。当同时引入自然照明和电子照明时,CIE眩光指数指标显示出最高的准确性。充分了解视觉舒适度参数并验证现有眩光指数将有助于成功实现建筑物中的日光收集。

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