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Physics interpretation of ISO/CIE sky types

机译:ISO / CIE天空类型的物理解释

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摘要

Sky luminance distribution, itself immensely variable solar radiation product, is an indispensable prerequisite for any daylight availability assessment. Currently, prediction-based modeling is a key ingredient of daylight qualification worldwide, while ISO/CIE general sky standard is an essential tool accommodated for simulation purposes. Due to its long term perspective and a number of benefits (e.g. simple mathematics and easy numerical implementation), the model is applied routinely and independent of meteorological conditions prevailing on a regional scale. ISO/CIE classifies sky states into fifteen subtypes on statistical base, however, with no relation to e.g. local sources of pollution. In result, the statistics found for two different territories may accidentally cohere for which there is really no theoretical reason. Here we show that the physics interpretation of sky states is needed for a proper use of the ISO/CIE model in different territories through linking the luminance distributions with atmospheric properties, specifically tau and g. The latter shapes the angular distribution of scattered light, while tau is interpreted in term of atmospheric optical thickness. The new approach we present here not only profits from its theoretical foundation, but both tau and g can be easily derived from the momentary local atmosphere state. This way the characterization of sky states and a use of ISO/CIE skies can be more selective and more systematic.
机译:Sky亮度分布本身非常可变的太阳辐射产品,是任何日光可用性评估的必不可少的先决条件。目前,基于预测的建模是全球日光资格认证的关键成分,而ISO / CIE General Sky标准是适用于模拟目的的必备工具。由于其长期的视角和许多益处(例如,简单的数学和易于数值实施),该模型经常应用,并独立于区域规模普遍存在的气象条件。 ISO / CIE将天空分类为统计基础的十五个亚型,但没有关于例如统计基础的亚型。地方污染源。在结果中,发现两个不同领土的统计数据可能意外地康复,因为它真的没有理论原因。在这里,我们认为,通过将亮度分布与大气性质,特别是Tau和G的方式连接,可以正确使用不同领土的ISO / CIE模型所需的物理解释。后者形状散射光的角度分布,而TAU在大气光学厚度的术语中解释。我们在这里介绍的新方法不仅可以从理论基础的利润,而且TAU和G都可以容易地源于瞬间的当地大气状态。这样,天空状态的表征和使用ISO / CIE Skies的使用可以更具选择性和更系统的。

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