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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Aerosol Optical Depth measurements at 340 nm with a Brewer spectrophotometer and comparison with Cimel sunphotometer observations at Uccle, Belgium
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Aerosol Optical Depth measurements at 340 nm with a Brewer spectrophotometer and comparison with Cimel sunphotometer observations at Uccle, Belgium

机译:使用Brewer分光光度计在340 nm处测量气溶胶光学深度,并与比利时Uccle的Cimel日光光度计进行比较

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The Langley Plot Method (LPM) is adapted for the retrieval of Aerosol Optical Depth (AOD) values at 340 nm from Brewer#178 sun scan measurements between 335 and 345 nm (convoluted with the band pass function of the Cimel sunphotometer filter at 340 nm) performed in Uccle, Belgium. The use of sun scans instead of direct sun measurements simplifies the comparison of the AOD values with quasi-simultaneous Cimel sunphotometer values. Also, the irradiance at 340 nm is larger than the one at 320.1 nm due to lower ozone absorption, thus improving the signal to noise ratio. For the selection of the cloudless days (from now on referred to as calibration quality clear days), a new set of criteria is proposed. With the adapted method, individual clear sky AOD values, for which the selection criteria are also presented in this article, are calculated for a period from September 2006 until the end of August 2010. These values are then compared to quasi-simultaneous Cimel sunphotometer measurements, showing a very good agreement (the correlation coefficient, the slope and the intercept of the regression line are respectively 0.974, 0.968 and 0.011), which proves that good quality observations can be obtained from Brewer sun scan measurements at 340 nm. The analysis of the monthly and seasonal Brewer AODs at Uccle is consistent with studies at other sites reporting on the seasonal variation of AODs in Europe. The highest values can be observed in summer and spring, whereas more than 50% of the winter AODs are lower than 0.3. On a monthly scale, the lowest AOD are observed in December and the highest values occur in June and April. No clear weekly cycle is observed for Uccle. The current cloud-screening algorithm is still an issue, which means that some AOD values can still be influenced by scattered clouds. This effect can be seen when comparing the calculated monthly mean values of the Brewer with the AERONET measurements.
机译:Langley图解法(LPM)适用于从335和345 nm之间的Brewer#178太阳扫描测量值中检索340 nm处的气溶胶光学深度(AOD)值(与Cimel日光光度计滤光片在340 nm处的带通函数进行卷积)在比利时乌克勒(Uccle)演出。使用日光扫描代替直接日光测量,可以简化AOD值与准同时Cimel日光光度计值的比较。另外,由于较低的臭氧吸收,在340 nm处的辐照度比在320.1 nm处的辐照度大,因此提高了信噪比。为了选择无云天(从现在起称为校准质量晴天),提出了一组新的标准。使用调整后的方法,可以计算出从2006年9月到2010年8月结束的各个晴朗天空的AOD值,本文还介绍了选择标准。然后将这些值与准同时Cimel日光光度计的测量值进行比较,显示出非常好的一致性(回归线的相关系数,斜率和截距分别为0.974、0.968和0.011),这证明可以从340 nm的Brewer太阳扫描测量中获得高质量的观察结果。对Uccle的Brewer月度和季节性AOD的分析与其他地区的报告一致,该研究报告了欧洲AOD的季节性变化。在夏季和春季可以看到最高值,而冬季超过50%的AOD低于0.3。在月度范围内,AOD最低的月份是12月,AOD最高的月份是6月和4月。没有观察到明确的每周Uccle周期。当前的云筛选算法仍然是一个问题,这意味着某些AOD值仍会受到散布的云的影响。将Brewer的月度平均值与AERONET测量值进行比较时,可以看到这种效果。

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