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Resonant triad model for studying evolution of the energy spectrum among a large number of internal waves

机译:共振三重态模型,用于研究大量内部波之间的能谱演化

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Internal waves are generally accepted to be responsible for a large fraction of mixing in the deep ocean. Internal waves interact nonlinearly with one another, exchanging energy among themselves to create the background internal wave spectrum. The most important mechanism resulting in the transfer of energy from one wave to another is believed to be resonant triad interactions. In this paper we consider a large number of resonantly interacting triads in order to investigate the evolution of the energy spectrum due to solely resonant triad interactions. To this end we solve the evolution equations for a large number of resonant triads to determine the temporal evolution of the energy distribution among the various possible wave numbers and frequencies. Our model involves internal waves with frequencies spanning the range of possible frequencies, i.e., between a maximum of the buoyancy frequency N for horizontal wave vectors (vertical motion) to a minimum of the inertial frequency f for vertical wave vectors (horizontal motion) [two limiting cases]. Because of the inclusion of high-frequency waves we cannot make the hydrostatic approximation. We investigate the evolution of the wave's amplitudes to predict the evolution of the internal wave energy spectrum.
机译:内部波浪通常被认为是造成深海大部分混合的原因。内部波彼此非线性地相互作用,彼此交换能量以创建背景内部波谱。导致能量从一个波转移到另一个波的最重要机制被认为是共振三重相互作用。在本文中,我们考虑了大量的共振相互作用的三重态,以便研究仅由共振的三重态相互作用引起的能谱的演化。为此,我们求解了大量共振三单元组的演化方程,以确定各种可能波数和频率之间能量分布的时间演化。我们的模型涉及的内部波的频率跨越可能的频率范围,即在水平波矢量(垂直运动)的最大浮力频率N与垂直波矢量(水平运动)的惯性频率f的最小值之间[两个极限情况]。由于包含了高频波,因此我们无法进行静液压近似。我们研究了波振幅的演变,以预测内部波能谱的演变。

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