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Resonant Generation and Energetics of Wind-Forced Near-Inertial Motions in a Geostrophic Flow

机译:地转流中风强迫近惯性运动的共振产生与能量学

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摘要

A slab mixed layer model and two-dimensional numerical simulations are used to study the generation and energetics of near-inertial oscillations in a unidirectional, laterally sheared geostrophic current forced by oscillatory winds. The vertical vorticity of the current zeta(g) modifies the effective Coriolis frequency f root 1 + zeta(g)/f which is equivalent to the local resonant forcing frequency. In addition, the resonant oscillatory velocity response is elliptical, not circular, because the oscillation periodically exchanges energy with the geostrophic flow via shear production. With damping, this energy exchange becomes permanent, but its magnitude and sign depend strongly on the angle of the oscillatory wind vector relative to the geostrophic flow. However, for a current forced by an isotropic distribution of wind directions, the response averaged over all wind angles results in a net extraction of energy from the geostrophic flow that scales as the wind work on the inertial motions times (zeta(g)/f)(2) for zeta(g) f. For zeta(g) similar to f, this sink of geostrophic kinetic energy preferentially damps flows with anticyclonic vorticity and thus could contribute toward shaping the positively skewed vorticity distribution observed in the upper ocean.
机译:平板混合层模型和二维数值模拟被用来研究在单向,横向剪切地转流中由振荡风强迫产生的近惯性振荡和能量。当前zeta(g)的垂直涡度会修改有效科里奥利频率f root 1 + zeta(g)/ f,它等于局部共振强迫频率。另外,共振振荡速度响应是椭圆形的,而不是圆形的,因为振荡通过剪切力周期性地与地转流交换能量。通过阻尼,这种能量交换成为永久性的,但是其大小和符号在很大程度上取决于振荡风矢量相对于地转流的角度。但是,对于由各向同性的风向分布推动的电流,在所有风向角上平均的响应会导致从地转流中净提取能量,并随着风以惯性运动时间(zeta(g)/ f )(2)for zeta(g) f。对于类似于f的zeta(g),该地转动能汇会优先以反气旋涡旋阻尼流动,因此可能有助于塑造在上层海洋中观察到的正偏涡旋分布。

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  • 来源
    《Journal of Physical Oceanography》 |2015年第1期|181-208|共28页
  • 作者单位

    Stanford Univ, Environm Earth Syst Sci Dept, Stanford, CA 94305 USA;

    Stanford Univ, Environm Earth Syst Sci Dept, Stanford, CA 94305 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:34:19

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