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On the frictional destabilization of abyssal overflows dynamically coupled to internal gravity waves

机译:动态耦合内部重力波的深渊溢流的摩擦失稳

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In the immediate vicinity of a sill, abyssal overflows can possess current speeds greater the local long internal gravity wave speed with bottom friction and downslope gravitational acceleration playing a dominant role in the dynamics. The transition to instability is described of supercritical frictional abyssal overflows on a super-inertial time scale (where rotation, and hence along slope motion, is secondary), but where there is dynamic coupling between the overflow and gravest-mode internal gravity waves in the overlying water column. It is shown that dynamical coupling with ambient internal gravity waves leads to a significant 'up or blue spectrum shift in the frequencies, wavelengths and growth rates as compared to an instability theory without dynamical coupling. For oceanographically relevant parameter values, the most unstable mode has been found to have a wavelength of about 484 m, an e-folding amplification time of about 13 min, a geostationary period of about 17 min and propagates in a retrograde manner with a co-moving period of about 19 min.
机译:在门槛附近,深渊溢流的流速可能比局部长内部重力波的速度更大,而底部摩擦和下坡重力加速度在动力学中起主要作用。在超惯性时间尺度上描述了超临界摩擦深渊溢流向不稳定性的过渡(其中旋转以及因此沿斜坡运动是次要的),但是溢流与重力模式内部重力波之间存在动态耦合。上覆水柱。结果表明,与不具有动态耦合的不稳定性理论相比,与环境内部重力波的动态耦合导致频率,波长和增长率的显着“向上”或“蓝色”光谱偏移。对于与海洋学相关的参数值,已发现最不稳定的模式具有约484 m的波长,约13分钟的电子折叠放大时间,约17分钟的地球静止期,并以逆行方式传播。移动时间约19分钟。

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