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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >The accuracy of SST retrievals from Metop-A IASI and AVHRR using the EUMETSAT OSI-SAF matchup dataset
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The accuracy of SST retrievals from Metop-A IASI and AVHRR using the EUMETSAT OSI-SAF matchup dataset

机译:使用EUMETSAT OSI-SAF匹配数据集从Metop-A IASI和AVHRR检索SST的准确性

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Skin sea surface temperatures (SST) from the infra-red atmospheric sounding interferometer (IASI) have been available in the Group for High Resolution Sea Surface Temperatures (GHRSST) L2Pcore format from the EUMETSAT data centre since March 2011. IASI SSTs, produced from version 5.0 of the IASI Product Processing Facility (PPF), have been validated against drifting buoy SSTs and compared to AVHRR SSTs contained with the EUMETSAT Ocean and Sea-Ice Satellite Application Facility (OSI-SAF) matchup dataset, over the period October 2010 to July 2011. The IASI SSTs were found to be of good quality with a slight cool bias compared to drifting buoys (bias - 0.32. K, σ 0.32. K) and AVHRR SSTs (bias - 0.35. K, σ 0.30. K). The highest quality IASI SSTs had a bias compared to drifting buoys of - 0.16. K (σ 0.33. K). Using three-way collocations of differences between IASI, AVHRR, and drifting buoy SSTs gave IASI SSTs to have a standard deviation of error of 0.28. K, AVHRR 0.13. K, and drifting buoys 0.20. K. IASI and AVHRR SSTs were found to be complementary to each other, giving benefit in different locations. Some residual cloud contamination was observed in the IASI SSTs, contributing to the slight cool bias. For collocations deemed likely to be 100% cloud free, the IASI bias reduces to - 0.25. K (σ 0.39. K) using quality levels 2 to 5, and a bias of - 0.09. K (σ 0.34. K) for observations with quality level 5. In addition, some evidence of increased uncertainties due to comparing point buoy observations with areal satellite observations was seen in the daily statistics for all observation types.
机译:自2011年3月起,EUMETSAT数据中心的高分辨率海面温度组(GHRSST)L2Pcore格式已提供了来自红外大气探测干涉仪(IASI)的皮肤海面温度(SST)。在2010年10月至7月期间,IASI产品加工设施(PPF)中的5.0已针对浮标SST进行了验证,并与EUMETSAT海洋和海冰卫星应用设施(OSI-SAF)匹配数据集中包含的AVHRR SST进行了比较2011年。与漂流浮标(偏差-0.32。K,σ0.32。K)和AVHRR SST(偏差-0.35。K,σ0.30。K)相比,IASI SST的质量高,偏冷。与漂移浮标相比,最高质量的IASI SST的偏差为-0.16。 K(σ0.33。K)。使用IASI,AVHRR和浮标SST之间差异的三向搭配,可以使IASI SST的标准偏差为0.28。 K,AVHRR 0.13。 K,以及浮标0.20。发现K. IASI和AVHRR SST相互补充,在不同的地方受益。在IASI SST中观察到一些残留的云污染,导致轻微的冷偏差。对于被认为可能是100%无云的并置,IASI偏差会降低至-0.25。 K(σ0.39。K)使用2到5的质量水平,以及-0.09的偏差。质量等级为5的观测值的K(σ0.34。K)。此外,在所有观测类型的每日统计数据中,由于将点浮标观测值与区域卫星观测值进行比较而导致不确定性增加的一些证据。

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