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北方区域林火对水文的影响:2014 年瑞典韦斯特曼兰大火。

Hydrological impacts of a wildfire in a Boreal region: The Västmanland fire 2014 (Sweden).

机构信息

Hydrology Research Unit, Swedish Meteorological and Hydrological Institute, Folkborgsvägen 17, 60176 Norrköping, Sweden; Fluvial Dynamics and Hydrology Research Group, Andalusian Institute for Earth System Research, Edificio Leonardo da Vinci, Área de Ingeniería Hidráulica, Campus de Rabanales, University of Cordoba, 14014 Córdoba, Spain.

Hydrology Research Unit, Swedish Meteorological and Hydrological Institute, Folkborgsvägen 17, 60176 Norrköping, Sweden.

出版信息

Sci Total Environ. 2021 Feb 20;756:143519. doi: 10.1016/j.scitotenv.2020.143519. Epub 2020 Nov 12.

Abstract

The largest forest wildfire in Swedish modern history burnt 14,000 ha of Boreal forest in the Västmanland County (south-central Sweden) during the summer of 2014. Here, we assess the impacts of this wildfire on the hydrological regime during the three years after it happened. In the empirical experiment carried out, four catchments (two burnt and two non-burnt nearby) with similar character and climate and with mean area of 20 km were compared. A total of 23 descriptors accounting for climate, land cover and flow signatures were defined and evaluated before and after the wildfire, using both remote sensing products and in situ streamflow observations. The results show three main changes in the hydrological behaviour of the burnt areas: (i) variation in duration and timing of snow season, with shorter and later beginning of the season; (ii) more dynamic behaviour of the streamflow, with smaller variation coefficient, a reduction in duration of high and low flows conditions and a more oscillating pattern; and, (iii) variations in catchment response (flashiness, runoff coefficient and actual evapotranspiration) from rainfall-events mainly during summer, but also in late autumn The study also reflects the usefulness of the combined analysis of flow signatures and remote sensing products to detect changes in catchment hydrology.

摘要

2014 年夏季,瑞典历史上最大的森林野火在韦斯特曼兰省(瑞典中南部)烧毁了 14000 公顷北方森林。在这里,我们评估了这场野火对野火发生后三年水文状况的影响。在进行的实证实验中,比较了四个具有相似特征和气候且平均面积为 20 公里的集水区(两个燃烧区和两个附近未燃烧区)。使用遥感产品和现场流量观测,在野火前后定义和评估了总共 23 个描述符,这些描述符涵盖了气候、土地覆盖和流量特征。结果表明,燃烧区的水文行为发生了三个主要变化:(i)雪季持续时间和时间的变化,雪季开始时间更短、更晚;(ii)流量动态行为变化更大,变化系数更小,高流量和低流量条件的持续时间减少,波动模式更明显;以及(iii)主要在夏季,但也在深秋,降雨事件引起的集水区响应(突发性、径流系数和实际蒸散)的变化。研究还反映了结合流量特征和遥感产品分析来检测集水区水文变化的有用性。

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