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Sensible heat has significantly affected the global hydrological cycle over the historical period

机译:在历史时期显热显着​​影响了全球水文循环

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摘要

Globally, latent heating associated with a change in precipitation is balanced by changes to atmospheric radiative cooling and sensible heat fluxes. Both components can be altered by climate forcing mechanisms and through climate feedbacks, but the impacts of climate forcing and feedbacks on sensible heat fluxes have received much less attention. Here we show, using a range of climate modelling results, that changes in sensible heat are the dominant contributor to the present global-mean precipitation change since preindustrial time, because the radiative impact of forcings and feedbacks approximately compensate. The model results show a dissimilar influence on sensible heat and precipitation from various drivers of climate change. Due to its strong atmospheric absorption, black carbon is found to influence the sensible heat very differently compared to other aerosols and greenhouse gases. Our results indicate that this is likely caused by differences in the impact on the lower tropospheric stability.
机译:在全球范围内,与降水变化相关的潜热通过大气辐射冷却和显热通量的变化来平衡。可以通过气候强迫机制和气候反馈来改变这两个部分,但是气候强迫和反馈对显热通量的影响却很少受到关注。在这里,我们使用一系列气候模拟结果表明,自工业化以来,显热的变化是造成当前全球平均降水量变化的主要因素,因为强迫和反馈的辐射影响可以大致补偿。模型结果表明,气候变化的各种驱动因素对显热和降水的影响不同。由于其对大气的强烈吸收,发现黑碳与其他气溶胶和温室气体相比,对显热的影响大不相同。我们的结果表明,这可能是由于对低层对流层稳定性影响的差异引起的。

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