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首页> 外文期刊>Journal of Climate >The Role of Cloud Radiative Heating in Determining the Location of the ITCZ in Aquaplanet Simulations
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The Role of Cloud Radiative Heating in Determining the Location of the ITCZ in Aquaplanet Simulations

机译:云辐射加热在确定水上飞行器模拟中ITCZ位置中的作用

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The relationship between the tropical circulation and cloud radiative effect is investigated. Output from the Clouds On-Off Klimate Intercomparison Experiment (COOKIE) is used to examine the impact of cloud radiative effects on circulation and climate. In aquaplanet simulations with a fixed SST pattern, the cloud radiative effect leads to an equatorward contraction of the intertropical convergence zone (ITCZ) and a reduction of the double ITCZ problem. It is shown that the cloud radiative heating in the upper troposphere increases the temperature, weakens CAPE, and inhibits the onset of convection until it is closer to the equator, where SSTs are higher. Precipitation peaks at higher values in a narrower band when the cloud radiative effects are active, compared to when they are inactive, owing to the enhancement in moisture convergence. Additionally, cloud-radiation interactions strengthen the mean meridional circulation and consequently enhance the moisture convergence. Although the mean tropical precipitation decreases, the atmospheric cloud radiative effect has a strong meridional gradient, which supports stronger poleward energy flux and speeds up the Hadley circulation. Cloud radiative heating also enhances cloud water path (liquid plus ice), which, combined with the reduction in precipitation, suggests that the cloud radiative heating reduces precipitation efficiency in these models.
机译:研究了热带环流与云辐射效应之间的关系。云的开/关气候比较实验(COOKIE)的输出用于检查云辐射效应对循环和气候的影响。在具有固定SST模式的水上飞机模拟中,云辐射效应导致热带辐合带(ITCZ)向赤道方向收缩并减少了双重ITCZ问题。结果表明,对流层上方的云辐射加热使温度升高,CAPE减弱,并抑制对流的发生,直到对流层温度更高的赤道附近为止。与不活跃时相比,云辐射效应活跃时,由于水分会聚作用增强,在较窄的频带中,峰值处在较高的峰值。此外,云辐射相互作用增强了平均子午环流,从而增强了水分汇聚。尽管平均热带降水减少,但大气云的辐射效应具有很强的子午梯度,这支持更强的极向能量通量并加速了哈德利环流。云辐射加热还增强了云水路径(液体加冰),这与降水减少相结合,表明在这些模型中云辐射加热会降低降水效率。

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