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首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Climate change, reforestation/afforestation, and urbanization impacts on evapotranspiration and streamflow in Europe
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Climate change, reforestation/afforestation, and urbanization impacts on evapotranspiration and streamflow in Europe

机译:气候变化,重新造林/植树造理和城市化对欧洲蒸发和流出的影响

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Since the 1950s, Europe has undergone large shifts in climate and land cover. Previous assessments of past and future changes in evapotranspiration or streamflow have either focussed on land use/cover or climate contributions or on individual catchments under specific climate conditions, but not on all aspects at larger scales. Here, we aim to understand how decadal changes in climate (e.g. precipitation, temperature) and land use (e.g. deforestation/afforestation, urbanization) have impacted the amount and distribution of water resource availability (both evapotranspiration and streamflow) across Europe since the 1950s. To this end, we simulate the distribution of average evapotranspiration and streamflow at high resolution (1km2) by combining (a)?a steady-state Budyko model for water balance partitioning constrained by long-term (lysimeter) observations across different land use types, (b)?a novel decadal high-resolution historical land use reconstruction, and (c)?gridded observations of key meteorological variables. The continental-scale patterns in the simulations agree well with coarser-scale observation-based estimates of evapotranspiration and also with observed changes in streamflow from small basins across Europe. We find that strong shifts in the continental-scale patterns of evapotranspiration and streamflow have occurred between the period around 1960 and 2010. In much of central-western Europe, our results show an increase in evapotranspiration of the order of 5%–15% between 1955–1965 and 2005–2015, whereas much of the Scandinavian peninsula shows increases exceeding 15%. The Iberian Peninsula and other parts of the Mediterranean show a decrease of the order of 5%–15%. A similar north–south gradient was found for changes in streamflow, although changes in central-western Europe were generally small. Strong decreases and increases exceeding 45% were found in parts of the Iberian and Scandinavian peninsulas, respectively. In Sweden, for example, increased precipitation is a larger driver than large-scale reforestation and afforestation, leading to increases in both streamflow and evapotranspiration. In most of the Mediterranean, decreased precipitation combines with increased forest cover and potential evapotranspiration to reduce streamflow. In spite of considerable local- and regional-scale complexity, the response of net actual evapotranspiration to changes in land use, precipitation, and potential evaporation is remarkably uniform across Europe, increasing by ~35–60km3yr?1, equivalent to the discharge of a large river. For streamflow, effects of changes in precipitation (~95km3yr?1) dominate land use and potential evapotranspiration contributions (~45–60km3yr?1). Locally, increased forest cover, forest stand age, and urbanization have led to significant decreases and increases in available streamflow, even in catchments that are considered to be near-natural.
机译:自20世纪50年代以来,欧洲在气候和陆地覆盖中经历了大型班次。以前对过去和未来变化的评估蒸发或流出的变化既集中在土地使用/覆盖或气候缴纳或在特定气候条件下的各个流域,但在较大规模的各个方面都没有。在这里,我们的目的是了解气候(例如降水,温度)和土地利用的二数变化(例如,砍伐森林/造林,城市化)影响自20世纪50年代以来欧洲水资源可用性(蒸发蒸腾物和流出)的数量和分配。为此,我们通过组合(a)展示高分辨率(1km2)的平均蒸散和流出流出的分布,用于在不同土地使用跨不同土地使用类型的长期(Lysimeter)观察的水平分区的稳态Budyko模型。 (b)?一个新型截止的高分辨率历史土地利用重建,(c)?网格观察关键气象变量。模拟中的大陆尺度模式与较粗略的观察结果的蒸发估计估计很好,并且还具有观察到欧洲小盆地的流出的变化。我们发现,在1960年至2010年期间,在蒸发蒸发器和流出的大陆范围内的强劲转变发生了。在中西部大部分欧洲,我们的结果表明蒸发量增加了5%-15%之间的蒸发量1955-1965和2005-2015,而斯堪的纳维亚半岛的大部分显示出现超过15%。 Iberian半岛和地中海的其他部分显示出5%-15%的顺序减少。虽然中西部欧洲的变化通常很小,但发现了类似的南北梯度。在伊比利亚和斯堪的纳维亚半岛的部分分别发现强劲的降低,增加45%。例如,在瑞典,增加的降水量是较大的驾驶员,比大规模的重新造林和造林,导致流流向和蒸散蒸腾。在大多数地中海中,降水量与森林覆盖的增加和潜在的蒸散量相结合,以减少流流。尽管存在相当大的本地和区域规模复杂性,但在欧洲的土地利用,降水和潜在蒸发的变化中对净实际蒸散的反应非常均匀,增加〜35-60km3yr?1,相当于排放大河。对于流出,降水变化的影响(〜95km3yr?1)支配土地使用和潜在的蒸散效率(〜45-60km3yr?1)。在本地,森林覆盖率增加,森林覆盖率和城市化导致显着降低,即使在被认为接近自然的集水区内,也是可用的流流量的增加。

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