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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Modified calibration procedures for a Yankee Environmental System UVB-1 biometer based on spectral measurements with a brewer spectrophotometer
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Modified calibration procedures for a Yankee Environmental System UVB-1 biometer based on spectral measurements with a brewer spectrophotometer

机译:扬克环境系统UVB-1生物测定仪基于啤酒酿造分光光度计进行光谱测量的修正校准程序

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The calibration of the erythemal irradiance measured by a Yankee Environmental System (YES) UVB-1 biometer is presented using two methods of calibration with a wide range of experimental solar zenith angles (SZAs) and ozone values. The calibration is performed through simultaneous spectral measurements by a calibrated double-monochromator Brewer MK-III spectrophotometer at "EI Arenosillo" station, located in southwestern Spain. Because the range of spectral measurements of the Brewer spectrophotometer is 290-363 nm, a previously validated radiative transfer model was used to account for the erythemal contribution between 363 and 400 nm. Both methods are recommended by the World Meteorological Organization and we present and discuss here a wide range of results and features given by modified procedures applied to these two general methods. As is well established, the calibration factor for this type of radiometric system is dependent on atmospheric conditions, the most important of which are the ozone content and the SZA. Although the first method is insensitive to these two factors, we analyze this behavior in terms of the range used for the SZA and the use of two different mathematical approaches for its determination. The second method shows the dependence on SZA and ozone content and, thus, a polynomial as a function of SZA or a matrix including SZA and ozone content were determined as general calibration factors for the UV radiometric system. We must note that the angular responses of the YES radiometer and Brewer spectroradiometer have not been considered, because of the difficulty in correcting them. The results show in detail the advantages and drawbacks (and the corresponding associated error) given by the different approaches used for the determination of these calibration coefficients.
机译:使用两种在大范围实验太阳天顶角(SZAs)和臭氧值范围内进行校准的方法,介绍了由洋基环境系统(YES)UVB-1生物测量仪测量的红斑辐照度的校准方法。校准是通过位于西班牙西南部“ EI Arenosillo”站的经校准的双单色仪Brewer MK-III分光光度计同时进行光谱测量来进行的。因为Brewer分光光度计的光谱测量范围是290-363 nm,所以使用先前验证的辐射传输模型来说明363和400 nm之间的红斑贡献。两种方法都是世界气象组织推荐的,我们在此介绍和讨论通过对这两种通用方法应用修改后的程序而得出的各种结果和特征。众所周知,这种辐射测量系统的校准因子取决于大气条件,其中最重要的是臭氧含量和SZA。尽管第一种方法对这两个因素不敏感,但我们会根据SZA的范围以及使用两种不同的数学方法进行确定来分析此行为。第二种方法显示了对SZA和臭氧含量的依赖性,因此,将确定多项式作为SZA的函数或包含SZA和臭氧含量的矩阵作为UV辐射测量系统的一般校准因子。我们必须注意,由于校正困难,因此未考虑YES辐射计和Brewer分光辐射计的角度响应。结果详细显示了用于确定这些校准系数的不同方法所带来的优缺点(以及相应的相关误差)。

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