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首页> 外文期刊>Journal of Physical Oceanography >Forced Near-Inertial Motion and Dissipation of Low-Frequency Kinetic Energy in a Wind-Driven Channel Flow
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Forced Near-Inertial Motion and Dissipation of Low-Frequency Kinetic Energy in a Wind-Driven Channel Flow

机译:风道流动中的强迫近惯性运动和低频动能的耗散

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Using primitive equation simulations, a zonally periodic channel is considered. The channel flow is forced by a combination of steady and high-frequency winds. The high-frequency forcing excites near-inertial motion, and the focus is on how this influences the low-frequency, nearly geostrophic part of the flow. In particular, this study seeks to clarify how Reynolds stresses exerted by the near-inertial modes affect the low-frequency kinetic energy. In the system considered, the near-inertial Reynolds stresses (i) serve as a sink term in the low-frequency kinetic energy budget and (ii) transfer low-frequency kinetic energy downward from the mixed layer. Transfer spectra show the bulk of this sink to occur at relatively small horizontal wavenumber (i.e., in the mesoscale, not the submesoscale). The presence of near-inertial motion can also affect the kinetic-to-potential energy exchanges, especially within the low-frequency band.
机译:使用原始方程式仿真,可以考虑区域周期性的通道。稳定的和高频的风共同推动了通道的流动。高频强迫会激发近惯性运动,重点是如何影响低频,近乎地转的流动。特别是,本研究试图阐明由近惯性模式施加的雷诺应力如何影响低频动能。在所考虑的系统中,近惯性雷诺应力(i)充当低频动能预算中的下沉项,并且(ii)从混合层向下传递低频动能。转移光谱表明,该吸收体的大部分发生在相对较小的水平波数(即中尺度,而不是亚中尺度)上。接近惯性运动的存在也会影响动能交换,特别是在低频频带内。

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