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Daylight Glare Evaluation when the Sun is Within the Field of View Through Window Shades

机译:当太阳在视野中通过窗帘时,日光眩光评估

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Shading fabrics have the ability to reduce daylight glare and provide privacy when needed. Recent studies have shown that glare indices such as DGP and its simplified version can be used to predict daylight glare through shades when the sun is not within the field of view. However, there are no comprehensive studies on glare sensation with the sun visible through the fabric - a situation that happens in office buildings - and therefore the applicability of glare indices for such conditions is uncertain. Shades with very low openness factors transmit only a small amount of direct sunlight due to their weave density; nevertheless, existing glare metrics may show intolerable conditions for these cases, while specific studies with human subjects are nearly non-existent. This paper presents an experimental study on daylight glare evaluation for the case of shading fabrics with the sun within the field of view. 41 human subjects (n=41) were tested while performing specific office activities, with 14 shade products of different openness factors and visible transmittance values (direct and total light transmission characteristics). The measured variables and survey results were used to: (i) associate discomfort glare with measured and modeled parameters for these cases (ii) evaluate the robustness of existing glare indices for these cases (iii) examine recently suggested alternate (direct and total vertical illuminance) criteria for glare assessment through fabrics, extract discomfort thresholds and suggest a new related index and (iv) propose corrections in the DGP equation when the sun is visible through the shades, which could be generalized for other systems following a similar approach. Combining illuminance-based metrics and existing glare indices can result in a more realistic glare evaluation covering all cases with and without the sun through shading fabrics. The new results can be inversely used as thresholds for selecting optical properties of shades to ensure glare protection, as well as for the development of glare-based shading controls.
机译:遮光面料有能力减少日光眩光并在需要时提供隐私。最近的研究表明,DGP及其简化版等眩光指数可用于预测当太阳不在视野范围内时穿过阴影的日光眩光。然而,没有通过织物可见的阳光眩晕感觉的全面研究 - 办公楼中发生的情况 - 因此,眩光指数对这种条件的适用性是不确定的。由于其编织密度,具有非常低的开放性因子的阴影仅传输少量的阳光;然而,现有的眩光度量可以显示这些病例的难以忍受的条件,而具有人类受试者的具体研究几乎不存在。本文介绍了日光眩光评价的实验研究,遮蔽织物与太阳在视野中的遮阳面。在进行特定办公室活动的同时测试41人受试者(n = 41),具有不同开放因子的14个阴影产品和可见透射率值(直接和总光传输特性)。测量的变量和调查结果用于:(i)对这些案例的测量和建模参数的助理不适眩光(ii)评估这些病例的现有眩光指数的稳健性(iii)检查最近建议的交替(直接和总垂直照度) )通过织物的眩光评估的标准,提取不适阈值,并提出新的相关指数和(iv)当太阳通过阴影可见时,DGP方程中的校正在阳光下可见,这可以在类似的方法之后推广其他系统。结合照明的指标和现有的眩光指数可能导致更现实的眩光评估,覆盖所有带遮阳织物的阳光和没有太阳的案例。新的结果可以反复使用为选择色调光学性质的阈值,以确保眩光保护,以及基于眩光的遮阳控件的开发。

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