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Using the fast impact of anthropogenic aerosols on regional land temperature to constrain aerosol forcing

机译:利用人为气溶胶对区域陆地温度的快速影响,以约束气溶胶强迫

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Anthropogenic aerosols have been postulated to have a cooling effect on climate, but its magnitude remains uncertain. Using atmospheric general circulation model simulations, we separate the land temperature response into a fast response to radiative forcings and a slow response to changing oceanic conditions and find that the former accounts for about one fifth of the observed warming of the Northern Hemisphere land during summer and autumn since the 1960s. While small, this fast response can be constrained by observations. Spatially varying aerosol effects can be detected on the regional scale, specifically warming over Europe and cooling over Asia. These results provide empirical evidence for the important role of aerosols in setting regional land temperature trends and point to an emergent constraint that suggests strong global aerosol forcing and high transient climate response.
机译:已经假定了人为气溶胶以对气候产生冷却效果,但其幅度仍然不确定。采用大气通用循环模型模拟,我们将土地温度反应分别分别对辐射强制的快速反应和对不断变化的海洋状况的缓慢反应,并发现前者占夏季北半球土地的约五分之一的大约五分之一。自20世纪60年代以来秋天。虽然小,但这种快速响应可能是通过观察的限制。可以在区域规模上检测到空间不同的气溶胶效果,特别是在欧洲变暖和亚洲冷却。这些结果为气溶胶在设定区域土地温度趋势方面的重要作用提供了经验证据,并指出了突出的全球气溶胶强迫和高瞬态气候响应的紧急约束。

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