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Stronger zonal convective clustering associated with a wider tropical rain belt

机译:与更广泛的热带雨带相关的更强的区域对流聚类

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摘要

Deep convection can exhibit a large diversity of spatial organizations along the equator. The form of organization may affect the tropical large-scale motions of the atmosphere, but observational evidence is currently missing. Here we show using observations that when convection along the equator is more clustered in the zonal direction, the tropical rain belt widens in the meridional direction, and exhibits a double-peak structure. About half of the influence of the convective clustering on the width of the rain belt is associated with the annual cycle and the other half is associated with unforced climate variability. Idealized climate model experiments show that the zonal convective clustering alone can explain the observed behavior and that the behavior can be explained with an energetic framework. This demonstrates that the representation of equatorial convective clustering is important for modeling the tropical rainfall distribution accurately.
机译:深对流可以表现出沿赤道的多种多样的空间组织。组织的形式可能会影响热带大气的大规模运动,但目前缺乏观测证据。在这里,我们使用观察结果表明,当沿着赤道的对流在纬向方向上更加聚类时,热带雨带在子午方向上会变宽,并表现出双峰结构。对流聚类对雨带宽度的影响约有一半与年度周期有关,另一半与不受强迫的气候变化有关。理想的气候模型实验表明,单独的区域对流聚类可以解释观测到的行为,并且可以用一个充满活力的框架来解释该行为。这表明,赤道对流聚类的表示对于准确模拟热带降雨分布很重要。

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