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Spatial distribution of fluence rate from upper-room ultraviolet germicidal irradiation: Experimental validation of a computer-aided design tool

机译:上室紫外线杀菌照射的注量率的空间分布:计算机辅助设计工具的实验验证

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摘要

A commercial computer-aided design tool used by the lighting industry was modified to predict fluence rates for upper-room ultraviolet germicidal irradiation. Experimental validation based on more than 1600 measurements and 3 types of commercial ultraviolet fixtures, which was done in an experimental chamber and in a homeless shelter having fixtures in continuous use for over 7 years, showed differences in measured and predicted average upper-roomfluence rates of less than 10%. The computer-aided design tool, however, was not very successful at predicting fluence rates at specific room locations, a capability that is needed for mating computational fluid dynamics with ultraviolet germicidal irradiation. Although not an objective of Ms study, it was also found that the three types of fixtures used in this study have surprisingly significant differences in efficiency based on fixture ultraviolet power output and electrical input. One fixture type had an efficiency that was more than five times that of another. For comparison purposes, a standard method for measuring and reporting fixture efficiency is needed.
机译:修改了照明行业使用的商用计算机辅助设计工具,以预测上层紫外线杀菌照射的注量率。在超过1600个测量值和3种类型的商用紫外线固定装置的实验验证中,该装置在具有连续使用超过7年的固定装置的实验舱和无家可归者庇护所中进行,结果表明,在测量和预测的平均上室通气率上存在差异少于10%。但是,计算机辅助设计工具在预测特定房间位置的注量率方面不是很成功,这是将计算流体动力学与紫外线杀菌辐射相匹配所需要的能力。尽管不是Ms研究的目标,但还发现,基于灯具的紫外线功率输出和电输入,本研究中使用的三种类型的灯具在效率上具有令人惊讶的显着差异。一种灯具的效率是另一种灯具的五倍以上。为了进行比较,需要一种用于测量和报告夹具效率的标准方法。

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