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Observed Characteristics of Clouds and Precipitating Systems Associated with the Tropical Circulation in Global Models and Reanalyses

机译:在全球模式和再分析中观测到的与热带环流有关的云层和降水系统的特征

摘要

This dissertation presents a series of work related to the representation of the Hadley circulation (HC) in atmospheric reanalyses and general circulation models (GCMs), with connections to the underlying tropical and subtropical cloud systems that comprise the mean meridional circulation. An intercomparison of eight atmospheric reanalyses showed that significant variability exists in the mean state for HC intensity, with less variability in HC width. Ensemble trends were broadly consistent with previous work and suggest a strengthening and widening of the tropical circulation over the last 30 years.Composite profiles of the apparent heat source and moisture sink were calculated for the International Satellite Cloud Climatology Project (ISCCP) cloud regimes using sounding observations from 10 field campaigns. Distinct heating profiles were determined for each ISCCP cloud regime, ranging from strong, upper-tropospheric heating for mesoscale convective systems to integrated cooling for populations associated with marine stratus and stratocumulus clouds. The derived profiles were generally similar over land and ocean with the notable exception of the fair-weather cumulus regime, which leads to some uncertainty in the mid- and upper-level reconstruction of subtropical heating.An instrument simulator indicated that low-latitude cloud properties from the NASA MERRA reanalysis qualitatively matched the distributions of cloud-top pressure and optical thickness in the ISCCP data, though the tallest and thickest clouds were missing from the reanalysis. Simulator results were sensitive to the choice of cloud overlap parameterization and the reanalysis consistently underpredicted the observed cloud fractions for all regimes. The vertical velocity, temperature, and moisture for each regime in MERRA largely matched observations from previous studies, suggesting that the dynamic and thermodynamic properties of the cloud regimes are well captured by the reanalysis.Finally, HC interannual variability was examined as a function of the observed frequency of the ISCCP cloud regimes. The strongest HC overturning events were attributed to an El Ni?o response in the central Pacific Ocean in addition to links between the intensity and position of the Pacific ITCZ. The ISCCP regime describing the most vigorous and organized convection contributed the most towards the total anomalous heating during HC extremes, despite an overall low frequency of occurrence. Idealized GCM simulations forced with the observed three-dimensional diabatic heating from ISCCP data produced too strong a HC with some improvement in other fields. Overall, much progress has been made regarding the links between low-latitude cloud systems and the HC, though future work will continue to address the upscale feedbacks of regional cloud variations upon the tropical circulation.
机译:本文提出了一系列与大气再分析和普通环流模型(GCM)中的哈德利环流(HC)的表示有关的工作,并与构成平均子午环流的潜在热带和亚热带云系统有关。八次大气再分析的比较表明,HC强度的平均状态下存在明显的变异性,HC宽度的变异性较小。总体趋势大致与以前的工作一致,表明过去30年中热带循环的加强和扩大。利用测深法计算了国际卫星云气候学项目(ISCCP)云制度的表观热源和湿气汇的综合概况。来自10个野战的观察结果。确定了每种ISCCP云方案的不同加热曲线,范围从中尺度对流系统的强对流层上强加热到与海洋地层和层积云有关的种群的综合冷却。得出的剖面图在陆地和海洋上大致相似,除了晴天积云情况明显例外,这导致在副热带加热的中高层重建中存在一些不确定性。仪器模拟器表明,低纬度云的性质来自NASA MERRA的重新分析定性地匹配了ISCCP数据中云顶压力和光学厚度的分布,尽管重新分析中没有最高和最厚的云。模拟器结果对云重叠参数化的选择很敏感,并且重新分析始终低估了所有方案下观察到的云分数。 MERRA中每种模式的垂直速度,温度和湿度在很大程度上与以前的研究结果相吻合,这表明通过重新分析可以很好地捕获云模式的动态和热力学特性。最后,根据HC的年际变化来检查HC的年际变化。 ISCCP云方案的观测频率。 HC倾覆事件最强的原因是太平洋中部ITCZ的强度和位置之间的联系以及太平洋中部的厄尔尼诺现象。尽管发生的频率总体较低,但描述最剧烈和有组织的对流的ISCCP机制对HC极端期间总异常加热的影响最大。根据ISCCP数据观察到的三维绝热加热,理想化的GCM模拟产生的HC太强,在其他领域也有所改善。总体而言,在低纬度云系统与HC之间的联系方面已取得很大进展,尽管未来的工作将继续解决热带环流对区域云变化的高端反馈。

著录项

  • 作者

    Stachnik Justin Paul;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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