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首页> 外文期刊>Journal of Physical Oceanography >Baroclinic Instability of Nonzonal Flows and Bottom Slope Effects on the Propagation of the Most Unstable Wave
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Baroclinic Instability of Nonzonal Flows and Bottom Slope Effects on the Propagation of the Most Unstable Wave

机译:非区流的斜压不稳定性和最不稳定波传播的底坡效应

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A linear, two-layer potential vorticity (PV) equation model on the plane is employed to study the baroclinic instability of nonzonal basic currents flowing over a uniform bottom slope. Criteria for the instability, phase speed, and growth rate of unstable waves are all given as functions of the basic shear velocity, , and bottom slope. The study suggests two kinds of long wave cutoff, one induced by the slope and the other by ; the first one exists in all directions, while the second requires at least a slight deviation of the wave vector from the meridians. Subtle differences between configurations of the PV gradient lead to completely different characteristics of unstable perturbations, such as propagation and scale. In the case of a positive slope (the bottom slope in the same direction as the isopycnal tilt), the fastest-growing wave is capable of propagating across the basic flow streamlines. By contrast, in the case of a negative slope (the bottom slope opposed to the isopycnal tilt), the most unstable wave always propagates along the streamlines. In addition, the spatial scale of the most unstable mode can be heavily reduced by a negative slope.
机译:平面上的线性两层势涡(PV)方程模型用于研究在均匀底坡上流动的非区域基本电流的斜压不稳定性。给出了不稳定波的不稳定性,相速度和增长率的标准,它们是基本剪切速度和底部斜率的函数。研究提出了两种长波截止,一种是由斜率引起的,另一种是由斜率引起的。第一个方向全方位存在,而第二个方向则要求波矢至少与子午线略有偏离。 PV梯度配置之间的细微差异导致不稳定扰动的完全不同的特性,例如传播和水垢。在正斜率(与等腰倾斜方向相同的底部斜率)的情况下,增长最快的波能够在基本流线中传播。相反,在负斜率(与等腰倾斜相对的底部斜率)的情况下,最不稳定的波总是沿流线传播。另外,最不稳定模式的空间尺度可以通过负斜率大大减小。

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