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Identifying meteorological influences on marine low-cloud mesoscale morphology using satellite classifications

机译:使用卫星分类识别海洋低云Mesoscale形态的气象影响

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摘要

Marine low-cloud mesoscale morphology in the southeastern Pacific Ocean is analyzed using a large dataset of classifications spanning 3 years generated by machine learning methods. Meteorological variables and cloud properties are composited by the mesoscale cloud type of the classification, showing distinct meteorological regimes of marine low-cloud organization from the tropics to the midlatitudes. The presentation of mesoscale cellular convection, with respect to geographic distribution, boundary layer structure, and large-scale environmental conditions, agrees with prior knowledge. Two tropical and subtropical cumuli-form boundary layer regimes, suppressed cumulus and clustered cumulus, are studied in detail. The patterns in precipitation, circulation, column water vapor, and cloudiness are consistent with the representation of marine shallow mesoscale convective self-aggregation by large eddy simulations of the boundary layer. Although they occur under similar large-scale conditions, the suppressed and clustered low-cloud types are found to be well separated by variables associated with low-level mesoscale circulation, with surface wind divergence being the clearest discriminator between them, regardless of whether reanalysis or satellite observations are used. Clustered regimes are associated with surface convergence, while suppressed regimes are associated with surface divergence.
机译:使用机器学习方法产生的3年的大型分类,分析了东南太平洋的海洋低云Mescle形态。气象变量和云属性由分类的Messcale云类型构成,显示了从热带地带到中期的海洋低云组织的不同气象制度。关于地理分布,边界层结构和大规模环境条件的介质蜂窝对流的呈现与先验知识相同。详细研究了两个热带和亚热带的丰满丰富的边界层制度,抑制巨积菌和聚集积云。沉淀,循环,柱水蒸气和浑浊的图案与通过边界层的大涡流模拟的海洋浅层介质对流自聚集的表示一致。虽然它们在类似的大规模条件下发生,但发现抑制和聚类的低云类型与与低级Mescleale循环相关的变量很好地分开,并且表面风偏差是它们之间最清晰的鉴别器,无论是重新分析还是重新分析使用卫星观察。聚集的制度与表面会聚有关,而抑制的制度与表面发散相关。

著录项

  • 来源
    《Oceanographic Literature Review 》 |2021年第9期| 1909-1909| 共1页
  • 作者

    J. Mohrmann; R. Wood; T. Yuan;

  • 作者单位

    Department of Atmospheric Sciences University of Washington Seattle WA United States;

    Department of Atmospheric Sciences University of Washington Seattle WA United States;

    Department of Atmospheric Sciences University of Washington Seattle WA United States;

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  • 原文格式 PDF
  • 正文语种 eng
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