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Differences in the efficacy of climate forcings explained by variations in atmospheric boundary layer depth

机译:大气边界层深度的变化解释了气候强迫效力的差异

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摘要

The Earth has warmed in the last century and a large component of that warming has been attributed to increased anthropogenic greenhouse gases. There are also numerous processes that introduce strong, regionalized variations to the overall warming trend. However, the ability of a forcing to change the surface air temperature depends on its spatial and temporal distribution. Here we show that the efficacy of a forcing is determined by the effective heat capacity of the atmosphere, which in cold and dry climates is defined by the depth of the planetary boundary layer. This can vary by an order of magnitude on different temporal and spatial scales, and so we get a strongly amplified temperature response in shallow boundary layers. This must be accounted for to assess the efficacy of a climate forcing, and also implies that multiple climate forcings cannot be linearly combined to determine the temperature response.
机译:上个世纪,地球变暖,其中很大一部分归因于人为温室气体的增加。还有许多过程会给整体变暖趋势带来强烈的区域差异。但是,强迫改变地面气温的能力取决于其时空分布。在这里,我们表明强迫的效力由大气的有效热容量决定,在寒冷和干燥的气候中,有效热容量由行星边界层的深度定义。在不同的时间和空间尺度上,这可以变化一个数量级,因此我们在浅边界层中获得了强烈的温度响应。必须考虑到这一点,以评估气候强迫的效力,并且还暗示不能将多个气候强迫线性组合以确定温度响应。

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