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首页> 外文期刊>Applied optics >Improving solar ultraviolet irradiance measurements by applying a temperature correction method for Teflon diffusers
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Improving solar ultraviolet irradiance measurements by applying a temperature correction method for Teflon diffusers

机译:通过对聚四氟乙烯漫射器采用温度校正方法来改善太阳紫外线辐照度的测量

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摘要

To establish trends in surface ultraviolet radiation levels, accurate and stable long-term measurements are required. The accuracy level of today's measurements has become high enough to notice even smaller effects that influence instrument sensitivity. Laboratory measurements of the sensitivity of the entrance optics have shown a decrease of as much as 0.07-0.1%/deg temperature increase. Since the entrance optics can heat to greater than 45 degrees C in Dutch summers, corrections are necessary. A method is developed to estimate the entrance optics temperatures from pyranometer measurements and meteorological data. The method enables us to correct historic data records for which temperature information is not available. The temperature retrieval method has an uncertainty of less than 2.5 degrees C, resulting in a 0.3% uncertainty in the correction to be performed. The temperature correction improves the agreement between modeled and measured doses and instrument intercomparison as performed within the Quality Assurance of Spectral Ultraviolet Measurements in Europe project. The retrieval method is easily transferable to other instruments. (C) 2007 Optical Society of America.
机译:为了确定表面紫外线辐射水平的趋势,需要准确而稳定的长期测量。如今的测量精度已经足够高,可以注意到影响仪器灵敏度的更小的影响。实验室对入口光学器件灵敏度的测量表明,温度升高幅度降低了0.07-0.1%/ deg。由于在荷兰夏天,入射光学元件可能会加热到超过45摄氏度,因此必须进行校正。开发了一种根据总辐射表测量和气象数据估算入口光学温度的方法。该方法使我们能够纠正没有温度信息的历史数据记录。温度恢复方法的不确定度小于2.5摄氏度,导致要进行的校正的不确定度为0.3%。在欧洲光谱紫外线测量质量保证项目中,温度校正改善了建模剂量与测量剂量之间的一致性,并实现了仪器比对。检索方法很容易转移到其他仪器。 (C)2007年美国眼镜学会。

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