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Evaluating and Extending the Ocean Wind Climate Data Record

机译:评估和扩展海洋风气候数据记录

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摘要

Satellite microwave sensors, both active scatterometers and passive radiometers, have been systematically measuring near-surface ocean winds for nearly 40 years, establishing an important legacy in studying and monitoring weather and climate variability. As an aid to such activities, the various wind datasets are being intercalibrated and merged into consistent climate data records (CDRs). The ocean wind CDRs (OW-CDRs) are evaluated by comparisons with ocean buoys and intercomparisons among the different satellite sensors and among the different data providers. Extending the OW-CDR into the future requires exploiting all available datasets, such as OSCAT-2 scheduled to launch in July 2016. Three planned methods of calibrating the OSCAT-2 σo measurements include 1) direct Ku-band σo intercalibration to QuikSCAT and RapidScat; 2) multisensor wind speed intercalibration; and 3) calibration to stable rainforest targets. Unfortunately, RapidScat failed in August 2016 and cannot be used to directly calibrate OSCAT-2. A particular future continuity concern is the absence of scheduled new or continuation radiometer missions capable of measuring wind speed. Specialized model assimilations provide 30-year long high temporal/spatial resolution wind vector grids that composite the satellite wind information from OW-CDRs of multiple satellites viewing the Earth at different local times.
机译:卫星微波传感器,既有主动散射仪又有无源辐射仪,已经有系统地测量近地表海风近40年,为研究和监测天气和气候变异性奠定了重要的遗产。作为此类活动的辅助手段,各种风数据集正在相互校准并合并为一致的气候数据记录(CDR)。通过与不同的卫星传感器之间以及不同的数据提供者之间的海洋浮标和相互比较的比较来评估海风CDR(OW-CDR)。将OW-CDR扩展到未来需要利用所有可用的数据集,例如计划于2016年7月启动的OSCAT-2。三种计划的校准OSCAT-2σo测量的方法包括:1)将Ku波段σo互校准到QuikSCAT和RapidScat ; 2)多传感器风速互标; 3)校准稳定的雨林目标。不幸的是,RapidScat在2016年8月失败了,无法用于直接校准OSCAT-2。未来特别需要关注的连续性是缺少能够测量风速的新的或连续的辐射计任务。专门的模型同化提供了长达30年的高时间/空间分辨率风向矢量栅格,该栅格合成了来自多个在不同本地时间查看地球的卫星的OW-CDR的卫星风向信息。

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