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A Closure for Internal Wave-Mean Flow Interaction. Part II: Wave Drag

机译:内部波均值相互作用的闭包。第二部分:波浪阻力

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摘要

A novel concept for parameterizing internal wave-mean flow interaction in ocean circulation models is extended to an arbitrary two-dimensional flow with vertical shear. The concept is based on the description of the entire wave field by the wave-energy density in physical and wavenumber space and its prognostic computation by the radiative transfer equation integrated in wavenumber space. Energy compartments result for the horizontal direction of wave propagation as additional prognostic model variables, of which only four are taken here for simplicity. The mean flow is interpreted as residual velocities with respect to the wave activity. The effect of wave drag and energy exchange due to the vertical shear of the residual mean flow is then given simply by a vertical flux of momentum. This flux is related to the asymmetries in upward, downward, alongflow, and counterflow wave propagation described by the energy compartments. A numerical implementation in a realistic eddying ocean model shows that the wave drag effect is a significant sink of kinetic energy in the interior ocean.
机译:在海洋环流模型中用于参数化内部波均值流相互作用的新概念扩展到具有垂直剪切力的任意二维流。该概念基于物理波数空间中波能密度对整个波场的描述,以及通过波数空间中积分的辐射传递方程的预测计算。能量舱在波浪传播的水平方向上作为附加的预测模型变量而产生,为简单起见,此处仅取其中的四个。平均流量被解释为相对于波活动的残余速度。然后,仅通过垂直动量通量就可以得出由于残余平均流量的垂直剪切引起的波阻力和能量交换的影响。该通量与能量舱描述的向上,向下,沿流和逆流波传播中的不对称性有关。在现实的涡流海洋模型中的数值实现表明,波浪阻力效应是内部海洋中动能的重要吸收源。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2017年第6期|1403-1412|共10页
  • 作者

    Eden Carsten; Olbers Dirk;

  • 作者单位

    Univ Hamburg, Inst Meereskunde, Hamburg, Germany;

    Alfred Wegener Inst Polar & Marine Res, Bremerhaven, Germany|Univ Bremen, MARUM, Bremen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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