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Clustering of visible and infrared solar irradiance for solar architecture design and analysis

机译:用于太阳能建筑设计和分析的可见光和红外太阳辐照度的聚类

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Incoming solar radiation is a key factor influencing solar architecture design. It determines the thermal and optical regime of the building envelope and affects the solar heat and light transfer between the indoors and outdoors. Computational analysis is an essential tool in solar architecture design. Usually, an entire year's weather data in a conventional weather file can be imported into such computational analyses. Solar irradiance data used in a conventional solar architecture design analytics are broadband (the total of UV, VIS, and NIR); however, these three components play different roles in building energy efficiency. So, analyzing individual solar components separately can be desirable. This research is to develop estimation models of the VIS and NIR components that can be captured efficiently from readily available datasets collected from the ground weather stations; such a model can then be conveniently implemented into current solar architecture design and research. We explored and tested classificationbased modeling methods for decomposing hourly broadband global horizontal solar irradiance data in conventional weather files into hourly global horizontal solar VIS and NIR components. Furthermore, a workflow of how to implement these models in solar architecture design and analysis has been developed and discussed herein. (C) 2020 Elsevier Ltd. All rights reserved.
机译:传入的太阳辐射是影响太阳能架构设计的关键因素。它决定了建筑包络的热敏和光学制度,并影响室内和户外之间的太阳热量和光线。计算分析是太阳能架构设计中的重要工具。通常,传统天气文件中的一整年的天气数据可以导入此类计算分析。传统的太阳能架构设计分析中使用的太阳辐照度数据是宽带(紫外线,VIS和NIR);然而,这三个组件在建立能效时发挥着不同的作用。因此,可以选择分别分析各种太阳能元件。该研究是开发VIS和NIR组件的估计模型,这些模型可以有效地从地面气象站收集的可用数据集中有效捕获;然后可以方便地实施这种模型,以当前的太阳能架构设计和研究。我们探索和测试了分类基础的建模方法,用于将常规天气文件中的每小时宽带全球水平太阳辐照数据分解成每小时全球横向太阳能VIR和NIR组件。此外,这里开发并讨论了如何在太阳能架构设计和分析中实现这些模型的工作流程。 (c)2020 elestvier有限公司保留所有权利。

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