AbstractShallow circulations are central to many tropical cloud systems. We investigate the potential '/> Shallow Circulations: Relevance and Strategies for Satellite Observation
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Shallow Circulations: Relevance and Strategies for Satellite Observation

机译:浅循环:卫星观察的相关性和策略

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AbstractShallow circulations are central to many tropical cloud systems. We investigate the potential of existing and upcoming data to document these circulations. Different methods to observe or constrain atmospheric circulations rely on satellite-borne instruments. Direct observations of the wind are currently possible at the ocean surface or using tracer patterns. Satellite-borne wind lidar will soon be available, with a much better coverage and accuracy. Meanwhile, circulations can be constrained using satellite observations of atmospheric diabatic heating. We evaluate the commonalities and discrepancies of these estimates together with reanalysis in systems that include shallow circulations. It appears that existing datasets are in qualitative agreement, but that they still differ too much to provide robust evaluation criteria for general circulation models. This state of affairs highlights the potential of satellite-borne wind lidar and of further work on current satellite retrievals.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>浅循环是许多热带云系统的核心。我们调查现有和即将到来的数据以记录这些循环的潜力。观察或约束大气循环的不同方法依赖于卫星型仪器。风中的直接观察目前在海洋表面或使用示踪模式时可以进行。卫星传承的风激光器很快就会提供,具有更好的覆盖和准确性。同时,可以使用大气性蛋白型加热的卫星观察来限制循环。我们将这些估计的共性和差异与包括浅循环的系统中的再分析。似乎现有数据集处于定性协议,但它们仍然对一般循环模型提供了强大的评估标准。这种状况突出了卫星风潮的潜力,并进一步研究当前的卫星检索。 ]]>

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