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Drought impacts on vegetation activity in the Mediterranean region: An assessment using remote sensing data and multi-scale drought indicators

机译:干旱对地中海地区植被活动的影响:使用遥感数据和多尺度干旱指标进行的评估

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The present work analyzes the drought impacts on vegetation over the entire Mediterranean basin, with the purpose of determining the vegetation communities, regions and seasons at which vegetation is driven by drought. Our approach is based on the use of remote sensing data and a multi-scalar drought index. Correlation maps between fields of monthly Normalized Difference Vegetation Index (NDVI) and the Standardized Precipitation-Evapotranspiration Index (SPEI) at different time scales (1-24 months) were computed for representative months of winter (Feb), spring (May), summer (Aug) and fall (Nov). Results for the period from 1982 to 2006 show large areas highly controlled by drought, although presenting high spatial and seasonal differences, with a maximum influence in August and a minimum in February. The highest correlation values are observed in February for 3 months' time scale and in May for 6 and 12 months. The higher control of drought on vegetation in February and May is obtained mainly over the drier vegetation communities (Mediterranean Dry and Desertic) at shorter time scales (3 to 9 months). Additionally, in February the impact of drought on vegetation is lower for Temperate Oceanic and Continental vegetation types and takes place at longer time scales (18-24). The dependence of drought time-scale response with water balance, as obtained through a simple difference between precipitation and reference evapotranspiration, varies with vegetation communities. During February and November low water balance values correspond to shorter time scales over dry vegetation communities, whereas high water balance values implies longer time scales over Temperate Oceanic and Continental areas. The strong control of drought on vegetation observed for Mediterranean Dry and Desertic vegetation types located over areas with high negative values of water balance emphasizes the need for an early warning drought system covering the entire Mediterranean basin. We are confident that these results will provide a useful tool for drought management plans and play a relevant role in mitigating the impact of drought episodes. (C) 2016 Elsevier B.V. All rights reserved.
机译:目前的工作分析了干旱对整个地中海盆地植被的影响,目的是确定干旱造成植被的植被群落,区域和季节。我们的方法基于遥感数据和多尺度干旱指数的使用。针对冬季(二月),春季(五月),夏季的代表性月份,计算了不同时间尺度(1-24个月)的月均归一化植被指数(NDVI)和标准降水-蒸散指数(SPEI)之间的相关图。 (八月)和秋天(十一月)。 1982年至2006年期间的结果显示,受干旱严重影响的大面积地区,尽管表现出很大的空间和季节差异,但8月影响最大,2月影响最小。在2月份的3个月时间尺度和5月份的6个月和12个月观测到最高的相关值。 2月和5月对干旱的较高控制主要是在较短的时间范围内(3至9个月)在较干燥的植被群落(地中海干旱和沙漠)上进行的。此外,2月,温带海洋和大陆性植被类型的干旱对植被的影响较小,发生的时间跨度较长(18-24)。通过降雨和参考蒸散量之间的简单差异得出的干旱时间尺度响应与水平衡的相关性随植被群落而变化。在2月和11月,较低的水平衡值对应于干旱植被群落上较短的时间尺度,而较高的水平衡值意味着较温带海洋和大陆地区的时间尺度较长。在水平衡负值高的地区,对地中海干旱和荒漠植被类型观察到的干旱对植被的强烈控制,强调了需要覆盖整个地中海盆地的预警干旱系统。我们相信,这些结果将为干旱管理计划提供有用的工具,并在减轻干旱事件的影响方面发挥重要作用。 (C)2016 Elsevier B.V.保留所有权利。

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