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The Role of Tropical, Midlatitude, and Polar Cloud-Radiative Changes for the Midlatitude Circulation Response to Global Warming

机译:热带,中间际和极性云 - 辐射变化对全球变暖的反应的作用

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摘要

Previous studies showed that global cloud-radiative changes contribute half or more to the midlatitude atmospheric circulation response to global warming. Here, we investigate the relative importance of tropical, midlatitude, and polar cloud-radiative changes for the annual-mean, wintertime, and summertime circulation response across regions in AMIP-like simulations. To this end, we study global warming simulations from the ICON model run with the cloud-locking method and prescribed sea surface temperatures, which isolate the impact of changes in atmospheric cloud-radiative heating. Tropical cloud changes dominate the global cloud impact on the 850 hPa zonal wind, jet strength, and storm track responses across most seasons and regions. For the jet shift, a more diverse picture is found. In the annual mean and DJF, tropical and midlatitude cloud changes contribute substantially to the poleward jet shift in all regions. The poleward jet shift is further supported by polar cloud changes across the Northern Hemisphere but not in the Southern Hemisphere. In JJA, the impact of regional cloud changes on the jet position is small, consistent with an overall small jet shift during this season. The jet shift can be largely understood via the anomalous atmospheric cloud-radiative heating in the tropical and midlatitude upper troposphere. The circulation changes are broadly consistent with the influence of cloud-radiative changes on upper-tropospheric baroclinicity and thus the mean potential energy available for conversion into eddy kinetic energy. Our results help to explain the jet response to global warming and highlight the importance of tropical and midlatitude cloud-radiative changes for this response.
机译:以前的研究表明,全球云 - 辐射变化为全球变暖的中美大气循环反应有所贡献了一半或更多。在这里,我们调查热带,中间际和极性云云 - 辐射变化的相对重要性,为amip样模拟区域跨越地区的年平均值,冬季,夏季流通响应。为此,我们使用云锁定方法和规定的海面温度研究了从图标模型的全球变暖模拟,并分离了大气云辐射加热中变化的影响。热带云变化在大多数季节和地区占据了850 HPA Zonal风,喷气力和风暴响应的全球云影响。对于喷射换档,找到了更多样化的照片。在年度平均值和DJF中,热带和中际云变化基本上有助于所有地区的极向射流。极地云变化进一步支持北半球的极地云变化,但不在南半球。在JJA中,区域云变化对喷射位置的影响很小,与本赛季的整体小型喷气机均一致。喷射偏移可以通过热带和中际对流层中的异常大气云辐射加热来大大理解。循环变化与云 - 辐射变化对上层间条状性的影响广泛一致,因此可用于转化为涡流能量的平均潜在能量。我们的结果有助于解释喷气式飞机对全球变暖的反应,并突出热带和中美云 - 辐射变化对此响应的重要性。

著录项

  • 来源
    《Journal of Climate》 |2020年第18期|共17页
  • 作者单位

    Karlsruhe Inst Technol Dept Troposphere Res Inst Meteorol &

    Climate Res Karlsruhe Germany;

    Karlsruhe Inst Technol Dept Troposphere Res Inst Meteorol &

    Climate Res Karlsruhe Germany;

    Colorado State Univ Dept Atmospher Sci Ft Collins CO 80523 USA;

    Karlsruhe Inst Technol Dept Troposphere Res Inst Meteorol &

    Climate Res Karlsruhe Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 气候学;
  • 关键词

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