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首页> 外文期刊>Hydrology and Earth System Sciences >Multilevel and multiscale drought reanalysis over France with the Safran-Isba-Modcou hydrometeorological suite
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Multilevel and multiscale drought reanalysis over France with the Safran-Isba-Modcou hydrometeorological suite

机译:赛峰-伊斯巴-莫德库水文气象套件在法国进行的多层次,多尺度的干旱再分析

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Physically-based droughts can be defined as a water deficit in at least one component of the land surface hydrological cycle. The reliance of different activity domains (water supply, irrigation, hydropower, etc.) on specific components of this cycle requires drought monitoring to be based on indices related to meteorological, agricultural, and hydrological droughts. This paper describes a high-resolution retrospective analysis of such droughts in France over the last fifty years, based on the Safran-Isba-Modcou (SIM) hydrometeorological suite. The high-resolution 1958-2008 Safran atmospheric reanalysis was used to force the Isba land surface scheme and the hydrogeological model Modcou. Meteorological droughts are characterized with the Standardized Precipitation Index (SPI) at time scales varying from 1 to 24 months. Similar standardizing methods were applied to soil moisture and streamflow for identifying multiscale agricultural droughts - through the Standardized Soil Wetness Index (SSWI) - and multiscale hydrological droughts, through the Standardized Flow Index (SFI). Based on a common threshold level for all indices, drought event statistics over the 50-yr period - number of events, duration, severity and magnitude - have been derived locally in order to highlight regional differences at multiple time scales and at multiple levels of the hydrological cycle (precipitation, soil moisture, streamflow). Results show a substantial variety of temporal drought patterns over the country that are highly dependent on both the variable and time scale considered. Independent spatio-temporal drought events have then been identified and described by combining local characteristics with the evolution of area under drought. Summary statistics have finally been used to compare past severe drought events, from multi-year precipitation deficits (1989-1990) to short hot and dry periods (2003). Results show that the ranking of drought events depends highly on both the time scale and the variable considered. This multilevel and multiscale drought climatology will serve as a basis for assessing the impacts of climate change on droughts in France.
机译:基于物理的干旱可以定义为陆地表面水文循环中至少一个组成部分的缺水现象。对不同活动领域(供水,灌溉,水力发电等)的依赖取决于该周期的特定组成部分,因此需要根据与气象,农业和水文干旱有关的指数进行干旱监测。本文基于赛峰-伊斯巴-莫德库(SIM)水文气象套件,对过去50年法国的此类干旱进行了高分辨率的回顾性分析。高分辨率的1958-2008年赛峰大气重新分析被用于强制执行Isba地表计划和水文地质模型Modcou。气象干旱的特征是标准降水指数(SPI)在1至24个月的时间范围内变化。将类似的标准化方法应用于土壤水分和水流,以通过标准土壤湿度指数(SSWI)识别多尺度农业干旱,并通过标准化流量指数(SFI)识别多尺度水文干旱。根据所有指标的共同阈值水平,已在本地获得了50年期间的干旱事件统计数据-事件的数量,持续时间,严重性和严重程度,以便突出显示多个时间尺度和多个水平的区域差异。水文循环(降水,土壤湿度,水流)。结果表明,该国各地的时间干旱模式多种多样,高度依赖于所考虑的变量和时间范围。然后通过结合局部特征与干旱条件下区域的演变,确定并描述了独立的时空干旱事件。最后的汇总统计数据已用于比较过去的严重干旱事件,从多年的降水不足(1989-1990年)到短暂的炎热和干旱时期(2003年)。结果表明,干旱事件的排名在很大程度上取决于时间尺度和所考虑的变量。这种多层次,多尺度的干旱气候学将作为评估气候变化对法国干旱影响的基础。

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