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Numerical Evaluation of Energy Transfers in Internal Gravity Wave Spectra of the Ocean

机译:海洋内部重力波谱中能量转移的数值评估

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Spectral energy transfers by internal gravity wave-wave interactions for given empirical energy spectra are evaluated numerically from the kinetic equation that is derived from the assumption of weak interactions. Wave spectrum parameters, such as bandwidth, spectral slope, and Coriolis frequency f, are varied, as is the spectral resolution. In agreement with previous studies, we find in all cases a forward energy cascade toward smaller vertical and horizontal wavelengths. Energy sinks due to the transfers are predominantly at frequencies between 2f and 3f. While the mechanism of the energy transfer differs partly from findings of previous studies, a parameterization for internal wave dissipation-which is used in the fine structure parameterization to estimate dissipation and mixing rates from observations-agrees well with the numerical evaluation of the energy transfers. We also find a dependency of the energy transfers on the spectral slope, offering the possibility to decrease the bias of the fine structure parameterization by improving the knowledge about the spatial variations of this (and other) spectral parameter.
机译:对于给定的经验能谱,通过内部重力波-波相互作用进行的谱能量转移是根据动力学方程进行数值评估的,该动力学方程是由弱相互作用的假设得出的。诸如带宽,频谱斜率和科里奥利频率f之类的频谱参数会发生变化,频谱分辨率也会随之变化。与以前的研究一致,我们发现在所有情况下,朝较小的垂直和水平波长的前向能量级联。由于转移而导致的能量吸收主要集中在2f和3f之间的频率上。虽然能量转移的机理与先前研究的结果部分不同,但内部波耗散的参数化(用于精细结构参数化以根据观测值估计耗散和混合速率)与能量转移的数值评估非常吻合。我们还发现了能量转移对光谱斜率的依赖性,从而提供了通过改善有关此(和其他)光谱参数的空间变化的知识来减少精细结构参数化偏差的可能性。

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