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Detection of solar dimming and brightening effects on Northern Hemisphere river flow

机译:检测北半球河流流量的日光变暗和增亮作用

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Anthropogenic aerosols in the atmosphere have the potential to affect regional-scale land hydrology through solar dimming~(1,2). Increased aerosol loading may have reduced historical surface evaporation over some locations3, but the magnitude and extent of this effect is uncertain. Any reduction in evaporation due to historical solar dimming may have resulted in an increase in river flow. Here we formally detect and quantify the historical effect of changing aerosol concentrations, via solar radiation, on observed river flow over the heavily industrialized, northern extra-tropics. We use a state-of-the-art estimate of twentieth century surface meteorology~4 as input data for a detailed land surface model5, and show that the simulations capture the observed strong inter-annual variability in runoff in response to climatic fluctuations. Using statistical techniques, we identify a detectable aerosol signal in the observed river flow both over the combined region, and over individual river basins in Europe and North America. We estimate that solar dimming due to rising aerosol concentrations in the atmosphere around 1980 led to an increase in river runoff by up to 25% in the most heavily polluted regions in Europe. We propose that, conversely, these regions may experience reduced freshwater availability in the future, as air quality improvements are set to lower aerosol loading and solar dimming.
机译:大气中的人为气溶胶有可能通过日光变暗[1,2]影响区域尺度的土地水文学。气溶胶负荷的增加可能会减少某些位置的历史地表蒸发3,但是这种影响的程度和程度尚不确定。由于历史上日光暗淡造成的蒸发量的任何减少都可能导致河流流量的增加。在这里,我们正式检测和量化通过太阳辐射改变气溶胶浓度对工业化程度较高的北温带热带地区观测到的河流流量的历史影响。我们使用20世纪地面气象学〜4的最新估算作为详细陆地表面模型的输入数据5,并表明模拟结果反映了观测到的强烈的年际变化,以响应气候波动。使用统计技术,我们在整个联合区域以及欧洲和北美的单个流域中观察到的河流中识别出可检测到的气溶胶信号。我们估计,由于在1980年前后大气中的气溶胶浓度升高而使太阳变暗,导致欧洲污染最严重的地区的河流径流量增加了25%。相反,我们建议,由于改善空气质量将降低气溶胶负荷和降低太阳光的亮度,这些地区将来可能会减少淡水供应。

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