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Atmospheric soundings from AIRS/AMSU/HSB

机译:来自AIRS / AMSU / HSB的大气探测

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摘要

AIRS was launched on EOS Aqua on May 4, 2002, together with AMSU A and HSB, to form a next generation polar orbiting infrared and microwave atmospheric sounding system. The primary products of AIRS/AMSU/HSB are twice daily global fields of atmospheric temperature-humidity profiles, ozone profiles, sea/land surface skin temperature, and cloud related parameters including OLR. The sounding goals of AIRS are to produce 1 km tropospheric layer mean temperatures with an rms error of 1K, and 1 km tropospheric layer precipitable water with an rms error of 20%, in cases with up to 80% effective cloud cover. Pre-launch simulation studies indicated that these results should be achievable. Minor modifications have been made to the pre-launch retrieval algorithm as alluded to in this paper. Sample fields of parameters retrieved from AIRS/AMSU/HSB data are presented and temperature profiles are validated as a function of retrieved effective fractional cloud cover. As in simulation, the degradation of retrieval accuracy with increasing cloud cover is small. Select fields are also compared to those contained in the ECMWF analysis, done without the benefit of AIRS data, to demonstrate information that AIRS can add to that already contained in the ECMWF analysis. Assimilation of AIRS temperature soundings in up to 80% cloud cover for the month of January 2003 into the GSFC FVSSI data assimilation system resulted in improved 5 day forecasts globally, both with regard to anomaly correlation coefficients and the prediction of location and intensity of cyclones.
机译:2002年5月4日,AIRS与AMSU A和HSB一起在EOS Aqua上发射,形成了下一代极地轨道红外和微波大气探测系统。 AIRS / AMSU / HSB的主要产品是大气温度-湿度剖面,臭氧剖面,海/陆表面皮肤温度以及与云有关的参数(包括OLR)的全球每日两次。 AIRS的探测目标是产生1 km的均方根误差的对流层平均温度,如果有效云层达到80%,则产生1 km的均方根误差的对流层可沉淀水。发射前的模拟研究表明,这些结果应该是可以实现的。如本文所述,对发布前的检索算法进行了较小的修改。给出了从AIRS / AMSU / HSB数据中检索到的参数样本字段,并根据检索到的有效分数云量对温度曲线进行了验证。如在模拟中,随着云量的增加,检索精度的降低很小。还将选择的字段与ECMWF分析中包含的字段进行比较(在没有使用AIRS数据的情况下进行),以展示AIRS可以添加到ECMWF分析中已经包含的信息中。 2003年1月,高达80%的云量覆盖的AIRS温度探测与GSFC FVSSI数据同化系统相结合,导致在全球范围内改进了5天预报,包括异常相关系数以及气旋的位置和强度的预测。

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