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The skeleton of tropical intraseasonal oscillations

机译:热带季节内振荡的骨架

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摘要

The Madden-Julian oscillation (MJO) is the dominant mode of variability in the tropical atmosphere on intraseasonal timescales and planetary spatial scales. Despite the primary importance of the MJO and the decades of research progress since its original discovery, a generally accepted theory for its essential mechanisms has remained elusive. Here, we present a minimal dynamical model for the MJO that recovers robustly its fundamental features (i.e., its "skeleton") on intraseasonal/planetary scales: (ⅰ) the peculiar dispersion relation of dω/dk ≈ 0, (ⅱ) the slow phase speed of ≈5 m/s, and (ⅲ) the horizontal quadrupole vortex structure. This is accomplished here in a model that is neutrally stable on planetary scales; i.e., it is tacitly assumed that the primary instabilities occur on synoptic scales. The key premise of the model is that modulations of synoptic scale wave activity are induced by low-level moisture preconditioning on planetary scales, and they drive the "skeleton" of the MJO through modulated heating. The "muscle" of the MJO-including tilts, vertical structure, etc.-is contributed by other potential upscale transport effects from the synoptic scales.
机译:在季节内时间尺度和行星空间尺度上,Madden-Julian振荡(MJO)是热带大气变化的主要方式。尽管MJO的首要重要性和自最初发现以来数十年的研究进展,但对于其基本机理而言,一种普遍接受的理论仍然难以捉摸。在这里,我们为MJO提供了一个最小的动力学模型,该模型可以在季节内/行星尺度上稳健地恢复其基本特征(即其“骨架”):(ⅰ)dω/ dk≈0的奇特色散关系,(ⅱ)缓慢的相速度≈5m / s,(ⅲ)水平四极涡结构。在这里,这是在行星尺度上中性稳定的模型中完成的;即,默认地假定主要不稳定性发生在天气尺度上。该模型的关键前提是天气尺度波活动的调制是由行星尺度上的低水平水分预处理引起的,并且它们通过调制加热来驱动MJO的“骨架”。 MJO的“肌肉”(包括倾斜,垂直结构等)是由天气尺度引起的其他潜在的高层运输效应所促成的。

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