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Multiple Oscillatory Modes of the Argentine Basin. Part Ⅱ: The Spectral Origin of Basin Modes

机译:阿根廷盆地的多种振荡模式。第二部分:盆地模式的谱源

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摘要

In this paper the spectrum of barotropic basin modes of the Argentine Basin is shown to be connected to the classical Rossby basin modes of a flat-bottom (constant depth), rectangular basin. First, the spectrum of basin modes is calculated for the Argentine Basin, by performing a normal-mode analysis of the barotropic shallow-water equations. Then a homotopy transformation is performed that gradually morphs the full-bathymetry geometry through a flat-bottom configuration into a rectangular basin. Following the eigenmodes through this transition establishes a connection between most of the basin modes and the classical Rossby basin modes of a rectangular geometry. In particular, the 20-day mode of the Argentine Basin is identified with the lowest-order mode of classical theory. Sensitivity studies show that the decay rate of each mode is controlled by bottom friction, but that it is insensitive to lateral friction; lateral friction strongly impacts the oscillation frequency. In addition, the modes are found to be only slightly sensitive to the presence of a background flow.
机译:在本文中,阿根廷盆地的正压盆地模式频谱显示为与平底(恒定深度)矩形盆地的经典Rossby盆地模式相关。首先,通过对正压浅水方程进行正态分析,计算出阿根廷盆地的盆地模式频谱。然后执行同构转换,通过平底配置逐渐将全测深几何体变形为矩形盆。通过该过渡遵循本征模,在大多数盆地模式和矩形几何体的经典Rossby盆地模式之间建立了联系。特别是,阿根廷盆地的20天模式被认为是古典理论的最低阶模式。灵敏度研究表明,每种模式的衰减率均受底部摩擦的控制,但对横向摩擦不敏感。横向摩擦会严重影响振荡频率。另外,发现这些模式仅对背景流的存在稍微敏感。

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