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On the interpretation of energy and energy fluxes of nonlinear internal waves: an example from Massachusetts Bay

机译:关于非线性内波的能量和能量通量的解释:以马萨诸塞湾为例

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A self-consistent formalism to estimate baroclinic energy densities and fluxes resulting from the propagation of internal waves of arbitrary amplitude is derived using the concept of available potential energy. The method can be applied to numerical, laboratory or field data. The total energy flux is shown to be the sum of the linear energy flux integral u'p'dz (primes denote baroclinic quantities), plus contributions from the non-hydrostatic pressure anomaly and the self-advection of kinetic and available potential energy. Using highly resolved observations in Massachusetts Bay, it is shown that due to the presence of nonlinear internal waves periodically propagating in the area, integral u'p'dz accounts for only half of the total flux. The same data show that equipartition of available potential and kinetic energy can be violated, especially when the nonlinear waves begin to interact with the bottom.
机译:使用可用势能的概念,得出了一个自洽形式主义,用于估计斜压能量密度和通量,该内斜波能量密度是由任意振幅的内部波的传播产生的。该方法可以应用于数值,实验室或现场数据。总能量通量显示为线性能量通量积分u'p'dz(素数表示斜压量)的总和,再加上非静水压力异常以及动能和可用势能的自对流的贡献。利用马萨诸塞湾的高分辨率观测资料表明,由于该区域周期性传播非线性内波,积分u'p'dz仅占总通量的一半。相同的数据表明,可能会破坏可用势和动能的均分,特别是当非线性波开始与底部相互作用时。

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