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Attempt to Predict Utilization Factors on Working Plane within Shadow under Task Ambient Lighting

机译:尝试预测任务环境照明下阴影内工作平面的利用率

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References(7) The number of luminaires in an office in the field of lighting design is usually determined with the lumen method, which uses utilization factors. These factors are calculated by luminous flux incident on the working plane to that irradiated from the light source, assuming a non-obstructed room. Lighting design techniques with the lumen method are very useful if they are applied to an office with fixtures and task ambient lighting, which is a combination of local-lighting and general-lighting systems. We applied lighting design to a working plane within shadow under task ambient lighting, and paid attention to utilization factors with the lumen method. That is, we evaluated the correction coefficients where the utilization factors in setting up fixtures and a shadow caster (i.e., a globe the size of a human head) could easily be predicted by multiplying the utilization factors for a non-obstructed office and the correction coefficients. The utilization factors using the lumen method on the working plane within shadow for ambient light sources and a task light source were first examined based on results derived from illuminance calculations using the Monte Carlo method that treats notion of the luminous flux as a set of numerous particles. The validity of correction coefficients used to calculate utilization factors within shadow under task ambient lighting was then evaluated. As a result, utilization factors within shadow can be predicted by simply multiplying them by the correction coefficients in non-obstructed rooms with ambient light sources or from direct components without a shadow caster for a task light source.
机译:参考文献(7)在照明设计领域中,办公室中的照明设备数量通常使用流明方法确定,该方法使用利用率。假设房间没有障碍,这些因素是通过入射在工作平面上的光通量与从光源发出的光通量来计算的。如果将流明方法的照明设计技术应用于具有固定装置和任务环境照明的办公室,该技术是局部照明系统和常规照明系统的组合,则它们将非常有用。我们将照明设计应用于任务环境照明下阴影内的工作平面,并通过流明法关注利用率。也就是说,我们评估了校正系数,通过将无障碍办公室的利用率与校正相乘,可以轻松预测设置灯具和阴影脚轮时的利用率(例如,人头大小的地球仪)。系数。首先根据从照度计算得出的结果(使用蒙特卡洛方法,将光通量的概念视为一组大量粒子),使用在阴影内工作平面上的流明方法对环境光源和任务光源的利用率进行检查。 。然后评估用于计算任务环境光照下阴影内的利用率的校正系数的有效性。结果,可以通过简单地将阴影中的利用率乘以无障碍房间中的校正系数来预测阴影中的利用率,其中所述无障碍房间具有环境光源或来自直接组件而没有用于任务光源的阴影投射器。

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