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首页> 外文期刊>Journal of Climate >The Response of the Ozone Layer to Quadrupled CO2 Concentrations: Implications for Climate
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The Response of the Ozone Layer to Quadrupled CO2 Concentrations: Implications for Climate

机译:臭氧层与四倍二氧化碳浓度的响应:气候的影响

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The quantification of the climate impacts exerted by stratospheric ozone changes in abrupt 4 x CO2 forcing experiments is an important step in assessing the role of the ozone layer in the climate system. Here, we build on our previous work on the change of the ozone layer under 4 x CO2 and examine the effects of ozone changes on the climate response to 4 x CO2, using the Whole Atmosphere Community Climate Model. We show that the global-mean radiative perturbation induced by the ozone changes under 4 x CO2 is small, due to nearly total cancellation between high and low latitudes, and between longwave and shortwave fluxes. Consistent with the small global-mean radiative perturbation, the effect of ozone changes on the global-mean surface temperature response to 4 x CO2 is negligible. However, changes in the ozone layer due to 4 x CO2 have a considerable impact on the tropospheric circulation. During boreal winter, we find significant ozone-induced tropospheric circulation responses in both hemispheres. In particular, ozone changes cause an equatorward shift of the North Atlantic jet, cooling over Eurasia, and drying over northern Europe. The ozone signals generally oppose the direct effects of increased CO2 levels and are robust across the range of ozone changes imposed in this study. Our results demonstrate that stratospheric ozone changes play a considerable role in shaping the atmospheric circulation response to CO2 forcing in both hemispheres and should be accounted for in climate sensitivity studies.
机译:通过平坦散臭型突然4×CO2强制实验施加的气候抗冲击性的量化是评估臭氧层在气候系统中的作用的重要一步。在这里,我们在我们之前的工作中建立了在4×CO2下的臭氧层的变化,并使用整个大气群落气候模型检查臭氧变化对4×二氧化碳的影响。我们表明,由于高纬度和低纬度之间的几乎全部取消,并且长波和短波助焊剂之间的臭氧变化引起的全球平均辐射扰动较小。与小全球平均辐射扰动一致,臭氧变化对4×CO2的全局平均表面温度响应的影响可忽略不计。然而,由于4×CO2导致的臭氧层的变化对流层循环具有相当大的影响。在北冬,我们在半球中发现了显着的臭氧诱导的对流层循环反应。特别是,臭氧变化导致北大西洋喷气机赤道换档,冷却欧亚亚洲,并在北欧烘干。臭氧信号通常反对二氧化碳水平增加的直接影响,并且在本研究中施加的臭氧变化范围内具有稳健。我们的研究结果表明,平流层臭氧变化在塑造了对两种半球的CO2强迫的大气循环响应方面发挥了相当大的作用,并且应占气候敏感性研究。

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