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首页> 外文期刊>Dynamics of Atmospheres and Oceans >Generation of oceanic internal gravity waves by a cyclonic surface stress disturbance
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Generation of oceanic internal gravity waves by a cyclonic surface stress disturbance

机译:通过旋风表面应力干扰产生海洋内部重力波

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Atmospheric cyclones with strong winds significantly impact ocean circulation, regional sea surface temperature, and deep water formation across the global oceans. Thus they are expected to play a key role in a variety of energy transport mechanisms. Even though wind-generated internal gravity waves are thought to contribute significantly to the energy balance of the deep ocean, their excitation mechanisms are only partly understood.The present study investigates the generation of internal gravity waves during a geostrophic adjustment process in a Boussinesq model with axisymmetric geometry. The atmospheric disturbance is set by an idealized pulse of cyclonic wind stress with a Rankine vortex structure. Strength, radius and duration of the forcing are varied. The effect upon wave generation of stratification with variable mixed-layer depth is also examined.Results indicate that internal gravity waves are generated after approximately one inertial period. The outward radial energy flux is dominated by waves having structure close to vertical mode-1 and with frequency close to the inertial frequency. Less energetic higher mode waves are observed to be generated close to the sea floor underneath the storm. The total radiated energy corresponds to approximately 0.02% of the wind input. Deeper mixed-layer conditions as well as weaker stratification reduce this fraction.The low energy transfer rates suggest that other processes that drive vertical motion like surface heat fluxes, turbulent motion, mixed region collapse and storm translation are essential for significant energy extraction by internal gravity waves to occur.
机译:具有强风的大气旋风,大大冲击海洋循环,区域海面温度和全球海洋深水形成。因此,它们有望在各种能源运输机制中发挥关键作用。即使被思考的风力产生的内部重力波对深海的能量平衡贡献,它们的激发机制才会被部分地理解。本研究在BoussinesQ模型中的出色性调整过程中调查了内部重力波的产生轴对称几何。大气干扰由具有朗肯涡旋结构的旋风风应力的理想化脉冲设定。强度,半径和迫使持续时间变化。还检查了对具有可变混合层深度的分层波产生的影响。结果表明在大约一个惯性时期之后产生内部重力波。向外径向能量通量由具有靠近垂直模式-1的结构的波导,并且频率接近惯性频率。观察到较少的精力充沛的更高模式波被靠近风暴下方的海底生成。总辐射能量对应于大约0.02%的风输入。更深的混合层条件以及较弱的分层减少了这一部分。低能量传输速率表明,驱动垂直运动,如表面热通量,湍流运动,混合区域塌陷和风暴翻译的其他过程对于通过内部重力提取显着的能量提取至关重要浪潮发生。

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