FYRE Climate: A high-resolution reanalysis of daily precipitation and temperature in France from 1871 to 2012

Alexandre Devers, J. Vidal, C. Lauvernet, O. Vannier
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引用次数: 11

Abstract

Abstract. Surface observations are usually too few and far between to properly assess multidecadal variations at the local scale and characterize historical local extreme events at the same time. A data assimilation scheme has been recently presented to assimilate daily observations of temperature and precipitation into downscaled reconstructions from a global extended reanalysis through an Ensemble Kalman fitting approach and derive high-resolution fields. Recent studies also showed that assimilating observations at high temporal resolution does not guarantee correct multidecadal variations. The current paper thus proposes (1) to apply this scheme over France and over the 1871–2012 period based on the SCOPE Climate reconstructions background dataset and all available daily historical surface observations of temperature and precipitation, (2) to develop an assimilation scheme at the yearly time scale and to apply it over the same period and lastly, (3) to derive the FYRE Climate reanalysis, a 25-member ensemble hybrid dataset resulting from the daily and yearly assimilation schemes, spanning the whole 1871–2012 period at a daily and 8-km resolution over France. Assimilating daily observations only allows reconstructing accurately daily characteristics, but fails in reproducing robust multidecadal variations when compared to independent datasets. Combining the daily and yearly assimilation schemes, FYRE Climate clearly performs better than the SCOPE Climate background in terms of bias, error, and correlation, but also better than the Safran reference surface reanalysis over France available from 1958 onward only. FYRE Climate also succeeds in reconstructing both local extreme events and multidecadal variability. It is made freely available from http://doi.org/10.5281/zenodo.4005573 (precipitation) and http://doi.org/10.5281/zenodo.4006472 (temperature).
FYRE气候:1871 - 2012年法国日降水和温度的高分辨率再分析
摘要地面观测通常太少而且相隔太远,无法正确评估当地尺度上的多年代际变化,同时也无法描述当地历史极端事件的特征。最近提出了一种数据同化方案,通过集成卡尔曼拟合方法,将温度和降水的日常观测同化到全球扩展再分析的缩小尺度重建中,并获得高分辨率场。最近的研究还表明,同化高时间分辨率的观测并不能保证正确的多年代际变化。因此,本文建议(1)基于SCOPE气候重建背景数据集和所有可用的日历史地表温度和降水观测,将该方案应用于法国和1871-2012年期间;(2)开发年时间尺度的同化方案并应用于同一时期;最后,(3)导出FYRE气候再分析,这是一个由日同化方案和年同化方案组成的25个集合混合数据集。从1871年到2012年,以每日8公里的分辨率在法国上空拍摄。同化每日观测只能准确地重建每日特征,但与独立数据集相比,无法再现稳健的多年代际变化。结合日同化和年同化方案,FYRE气候在偏差、误差和相关性方面明显优于SCOPE气候背景,但也优于仅1958年以来法国的Safran参考面再分析。FYRE Climate还成功地重建了当地极端事件和多年代际变率。该数据可从http://doi.org/10.5281/zenodo.4005573(降水)和http://doi.org/10.5281/zenodo.4006472(温度)免费获取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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