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A validation of the Radiance three-phase simulation method for modelling annual daylight performance of optically complex fenestration systems

机译:对光学复杂开窗系统的年度日光性能进行建模的辐射三相仿真方法的验证

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摘要

A new capability that enables annual simulation of optically complex fenestration systems has been added to Radiance. The method relies on bidirectional scattering distribution function (BSDF) input data, which are used in an efficient matrix calculation to compute time-step performance given TMY data. The objective of this study was to explain the value of this capability to designers and developers of innovative daylighting systems and to demonstrate its speed and accuracy via comparisons of simulated to measured illuminance data for a daylight-redirecting optical louver system. The method was shown to provide valid results that accurately replicate real-world conditions with an absolute mean bias error below 13% and a root mean square error below 23%. Routine application of this new capability will not be hindered by slow computational speed for illuminance calculations. Instead, the capability will be dependent on the availability of BSDF data for daylighting, shading and fenestration systems.
机译:Radiance增加了一项新功能,可以对光学复杂的开窗系统进行年度仿真。该方法依赖于双向散射分布函数(BSDF)输入数据,在有效的矩阵计算中使用该输入数据来计算给定TMY数据的时步性能。这项研究的目的是向创新型日光系统的设计人员和开发人员解释此功能的价值,并通过将日光重定向百叶窗系统的模拟照度数据与实测照度数据进行比较,证明其速度和准确性。结果表明,该方法可提供有效结果,可准确复制真实情况,且绝对平均偏差误差低于13%,均方根误差低于23%。这项新功能的常规应用不会受到照度计算速度慢的阻碍。取而代之的是,功能将取决于采光,遮光和开窗系统的BSDF数据的可用性。

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