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A new cloud screening algorithm for ground-based direct-beam solar radiation

  • Maosi Chen*
  • , John Davis
  • , Wei Gao
  • *此作品的通讯作者
  • Colorado State University

科研成果: 期刊稿件文章同行评审

摘要

Cloud screening of direct-beam solar radiation is an essential step for in situ calibration and atmospheric properties retrieval. The internal cloud screening module of a Langley analysis program [Langley Analyzer (LA)] used by the U.S. Department of Agriculture (USDA) UV-B Monitoring and Research Program (UVMRP) is used for screening the uncalibrated direct-beam measurements and for deriving Langley offset voltages VLO for calibration of the UV version of the Multifilter Rotating Shadowband Radiometer (UV-MFRSR). The current LA cloud screening module utilizes data from extended clear-sky periods and tends to ignore shorter periods that typify periods of broken cloudiness, and as a result, fewer VLO values are generated for sites with higher frequencies of cloudy days (cloudy sites). A new cloud screening algorithm is presented that calculates the total optical depth (TOD) difference between a target point and pairs of points, and identifies the target as cloudy if the meanTODdifference exceeds a certain threshold. The screening is an iterative process that finishes when no new cloudy points are found. The result at a typical clear/sunny site shows that VLO values from partly cloudy days are consistent with those from cloud-free days, when the new method is employed. The new cloud screening algorithm picks up significantly more VLO values at cloudy sites. The larger decrease of the annual mean value of VLO at cloudy sites than at relatively clear sites suggests the potential for improving calibration accuracy at cloudy sites. The results also show that the new cloud screening method is capable of detecting clear points in short clear windows and in transitional regions.

源语言英语
页(从-至)2591-2605
页数15
期刊Journal of Atmospheric and Oceanic Technology
31
12
DOI
出版状态已出版 - 2014
已对外发布

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