多瑙河地区干旱监测工具-方法和初步发展

A. Bucur, G. Gregorič, A. Grlj, Žiga Kokalj, A. Susnik
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引用次数: 2

摘要

干旱是气候系统中一种自然反复出现的现象,几乎影响到世界所有地区。在过去几十年中,对生态系统产生广泛负面影响的极端干旱在多瑙河地区也变得明显。目前,监测干旱的区域能力仍然非常多样化,不同国家之间也不同步。在本文中,我们介绍了一种最新开发的干旱监测工具-干旱用户服务(DUS),该工具使用遥感产品,旨在通过不同的干旱指数提供更准确和近实时的监测。DUS是作为基于风险的模式的监测工具而创建的,该模式旨在提供关于整个多瑙河地区干旱的位置和严重程度的近乎实时的信息。卫星遥感产品满足业务监测的要求,因为它们能够提供连续和一致的变量测量,可用于评估干旱的严重程度、空间范围和影响。DUS利用地球观测产品监测三个不同的变量——植被、土壤湿度和降水。通过欧盟哥白尼全球土地服务提供的NDVI和SWI产品的长期异常计算两个简单指标来跟踪植被和土壤湿度的状况。讨论了DUS和已开发的更快发现干旱的方法的重要性,这些方法是建立更好的主动干旱管理的有用基础,以便减轻该地区干旱的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tool for Drought Monitoring in the Danube Region – Methods and Preliminary Developments
Abstract Drought is a naturally recurring phenomenon of the climate system that affects virtually all regions of the world. During the past decades extreme droughts with extensive negative effects on ecosystems became evident also in the Danube region. At the moment regional capacity to monitor drought is still very diverse and not synchronised among different countries. In this is paper, we present a recently developed drought monitoring tool – the Drought User Service (DUS) for the Danube region using remote-sensing products which aims at offering a more accurate and in near-real-time monitoring via different drought indices. The DUS was created as the monitoring tool of the risk-based paradigm, which seeks to give information in near real-time about the location and severity of droughts throughout the Danube region. Satellite remote sensing products meet the requirements for operational monitoring because they are able to offer continuous and consistent measurements of variables, which can be used to assess the severity, spatial extent and impacts of drought. In the DUS three different variables – vegetation, soil moisture and precipitation – are monitored with earth observation products. The condition of vegetation and soil moisture is tracked with two simple indicators computed as long-term anomalies of the NDVI and SWI products made available through EU’s Copernicus Global Land Service. The importance of DUS and of the developed methods for faster detection of drought onset as useful foundation for establishing a better pro-active drought management in order to mitigate the negative effects of drought in the region is discussed.
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