...
首页> 外文期刊>Applied optics >Ozone column density determination from direct irradiance measurements in the ultraviolet performed by a four-channel precision filter radiometer
【24h】

Ozone column density determination from direct irradiance measurements in the ultraviolet performed by a four-channel precision filter radiometer

机译:由四通道精密滤光片辐射计根据紫外线的直接辐照度测量确定臭氧柱密度

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Ultraviolet light was measured at four channels (305, 311, 318, and 332 nm) with a precision filter radiometer (UV-PFR) at Arosa, Switzerland (46.78°, 9.68°, 1850 m above sea level), within the instrument trial phase of a cooperative venture of the Swiss Meteorological Institute (MeteoSwiss) and the Physikalisch-Meteorologisches Observatorium Davos/World Radiation Center. We retrieved ozonecolumn density data from these direct relative irradiance measurements by adapting the Dobson standard method for all possible single-difference wavelength pairs and one double-difference pair (305/311 and 305/318) under conditions of cloud-free sky and of thin clouds (cloud optical depth <2.5 at 500 nm). All UV-PFR retrievals exhibited excellent agreement with those of collocated Dobson and Brewer spectrophotometers for data obtained during two months in 1999. Combining the results of the error analysis and the findings of the validation, we propose to retrieve ozone-column density by using the 305/311 single difference pair and the double-difference pair. Furthermore, combining both retrievals by building the ratio of ozone-column density yields information that is relevant to data quality control. Estimates of the 305/311 pair agree with measurements by the Dobson and Brewer instruments within 1% for both the mean and the standard deviation of the differences. For the double pair these values are in a range up to 1.6%. However, this pair is less sensitive to model errors. The retrieval performance is also consistent with satellite-based data from the Earth Probe Total Ozone Mapping Spectrometer (EP-TOMS) and the Global Ozone Monitoring Experiment instrument (GOME).
机译:在仪器试验中,在瑞士阿罗萨(46.78°,9.68°,海拔1850 m)使用精密滤光辐射计(UV-PFR)在四个通道(305、311、318和332 nm)处测量了紫外线。瑞士气象研究所(MeteoSwiss)和达沃斯Physikalisch-Meteorologisches天文台/世界辐射中心的合作项目的第一阶段。我们通过在无云天空和薄弱天气条件下,对所有可能的单差波长对和一个双差对(305/311和305/318)采用Dobson标准方法,从这些直接的相对辐照度测量中获取了臭氧柱密度数据。云(云光学深度在500 nm处小于2.5)。对于1999年两个月内获得的数据,所有UV-PFR检索均与并置的Dobson和Brewer分光光度计显示出极佳的一致性。结合误差分析的结果和验证的结果,我们建议使用以下方法检索臭氧柱的密度305/311单差分对和双差分对。此外,通过建立臭氧柱密度的比率来结合这两种方法,可以获得与数据质量控制有关的信息。 305/311对的估计值与Dobson和Brewer仪器的测量值的均值和标准差均在1%之内。对于双对,这些值的范围最大为1.6%。但是,这对模型误差较不敏感。检索性能还与来自地球探测总臭氧测图仪(EP-TOMS)和全球臭氧监测实验仪(GOME)的基于卫星的数据一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号