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Multi-year Trends in MODIS and MISR Observed Cloud Fraction over the Extratropical Oceans.

机译:MODIS和MISR的多年趋势观测到温带海洋的云层分数。

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摘要

Examination of cloud fraction and top of atmosphere radiation data from NASA's MISR, MODIS, and CERES instruments reveals a pervasive temporal decline in optically thick cloud over the extratropical ocean basins during the period 2000 to 2015, which is compensated by a corresponding increase in cloud of moderate optical depth. While cloud optical depth has changed in these regions, no significant trend in total cloud fraction or large scale area-averaged albedo over the world's oceans has been observed by these instruments during this period. Likewise, no significant poleward shift in cloud associated with the extratropical storm tracks has been observed during this period. These changes in cloud fraction have had an observable effect on albedo at regional scales and comparison to ECMWF reanalysis data and NOAA CPC climate indices indicates that they are the result of intra-decadal to decadal scale synoptic variability, which may be natural climate variability.
机译:对NASA的MISR,MODIS和CERES仪器的云量和大气顶辐射数据的检查显示,在2000年至2015年期间,温带海洋盆地光学厚云的普遍时间下降,这被相应的云量增加所补偿。适中的光学深度。尽管这些地区的云光学深度发生了变化,但在此期间,这些仪器并未观测到全球海洋中总云分数或大规模面积平均反照率的显着趋势。同样,在此期间,未观测到与温带风暴径迹相关的云的极极偏移。这些云量变化在区域尺度上对反照率有明显影响,与ECMWF再分析数据和NOAA CPC气候指数的比较表明,这是年代际到年代际天气变化的结果,这可能是自然气候的变化。

著录项

  • 作者

    Geiss, Andrew.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Climate change.;Remote sensing.
  • 学位 Masters
  • 年度 2016
  • 页码 72 p.
  • 总页数 72
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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