建立一致的多年代际海洋TRMM-GPM亮温数据记录

Ruiyao Chen, W. Linwood Jones
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引用次数: 0

摘要

将热带降雨测量任务(TRMM)微波成像仪(TMI)与全球降水测量(GPM)微波成像仪(GMI)进行互标定,对于生成涵盖TRMM和GPM时代的一致的多年亮度温度(Tb)数据记录是必要的。然而,TMI和GMI只有13个月的共同运营期(2014-2015)。幸运的是,2003年发射的WindSat偏振辐射计已被证实具有良好的校准能力,并且在超过8年(2005-2014年)的时间里,WindSat和TMI之间表现出了特殊的长期辐射稳定性。因此,WindSat可以作为校准桥接,实现TMI和GMI Tb时间序列之间的无缝转换。在本文中,TMI将首先对GMI进行13个月重叠期的互校准,然后对WindSat进行>12年(2003-2015)的互校准。因此,将建立一个多年代际的海洋Tb数据集,以确保覆盖TRMM和GPM时代的一致的长期降水记录。此外,为了量化该数据集的Tb不确定性,将在两个互校准过程中应用考虑各种不确定性来源的不确定性估计模型。这些结果将有助于进一步研究潜在的气候趋势和变率的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creating a Consistent Multi-Decadal Oceanic TRMM-GPM Brightness Temperature Data Record
Intercalibrating the Tropical Rainfall Measurement Mission (TRMM) Microwave Imager (TMI) to the Global Precipitation Measuring (GPM) Microwave Imager (GMI) is necessary for generating a consistent multi-decadal brightness temperature (Tb) data record that covers TRMM and GPM eras. However, TMI and GMI share only a 13-month common operational period (2014-2015). Fortunately, the polarimetric radiometer WindSat launched in 2003, has been vetted to be well-calibration, and exceptional long-term radiometric stability between WindSat and TMI over >8-year period (2005–2014) has been exhibited. Therefore, WindSat can be used as the calibration bridge to achieve a seamless transfer between TMI and GMI Tb time series. In this paper, TMI will be first intercalibrated to GMI for their 13-month overlap period, and then intercalibrated to WindSat for their >12 years period (2003–2015). Thus, a multi-decadal oceanic Tb dataset will be created to ensure a consistent long-term precipitation record that covers TRMM and GPM eras. Moreover, to quantify the Tb uncertainty of this dataset, an uncertainty estimation model considering various sources of uncertainties will be applied to both intercalibration processes. These results will allow the further study in potential climate trends and changes in the variability.
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