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On Internal Waves Propagating across a Geostrophic Front

机译:在地球节前沿传播的内部波

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摘要

Reflection and transmission of normally incident internal waves propagating across a geostrophic front, like the Kuroshio or Gulf Stream, are investigated using a modified linear internal wave equation. A transformation from depth to buoyancy coordinates converts the equation to a canonical partial differential equation, sharing properties with conventional internal wave theory in the absence of a front. The equation type is determined by a parameter Delta, which is a function of horizontal and vertical gradients of buoyancy, the intrinsic frequency of the wave, and the effective inertial frequency, which incorporates the horizontal shear of background geostrophic flow. In the Northern Hemisphere, positive vorticity of the front may produce Delta = 0, that is, a "forbidden zone," in which wave solutions are not permitted. Thus, Delta = 0 is a virtual boundary that causes wave reflection and refraction, although waves may tunnel through forbidden zones that are weak or narrow. The slope of the surface and bottom boundaries in buoyancy coordinates (or the slope of the virtual boundary if a forbidden zone is present) determine wave reflection and transmission. The reflection coefficient for normally incident internal waves depends on rotation, isopycnal slope, topographic slope, and incident mode number. The scattering rate to high vertical modes allows a bulk estimate of the mixing rate, although the impact of internal wave-driven mixing on the geostrophic front is neglected.
机译:使用改进的线性内部波方程研究了在地顶尖前沿传播的常识内部波的反射和传输在地鼻腔阶段,如Kuroshio或海湾流。从深度到浮力坐标的变换将该方程转换为规范部分微分方程,在不存在前面的情况下与传统的内波理论共享特性。等式类型由参数δ确定,该参数δ是浮力的水平和垂直梯度的函数,波浪的内在频率和有效的惯性频率,其包括背景出色流动的水平剪切。在北半球,前面的正涡度可能产生Delta <= 0,即“禁区”,其中不允许波解决方案。因此,Delta = 0是导致波反射和折射的虚拟边界,尽管波浪可以通过弱或窄的禁区隧道隧道隧道。浮力坐标的表面和底部边界的斜率(或者如果存在禁区,则虚拟边界的斜率)确定波反射和传输。用于正常入射的内波的反射系数取决于旋转,等体斜率,地形斜率和入射模式数。散射速率对高垂直模式允许混合速率的散装估计,尽管忽略了内部波动混合在地嗜酸性前沿的影响被忽略了。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2019年第5期|1229-1248|共20页
  • 作者单位

    Tsinghua Univ Grad Sch Shenzhen Shenzhen Peoples R China;

    Tsinghua Univ Grad Sch Shenzhen Shenzhen Peoples R China;

    Natl Oceanog Ctr Liverpool Merseyside England;

    Chinese Acad Sci State Key Lab Trop Oceanog South China Sea Inst Oceanol Guangzhou Guangdong Peoples R China;

    Univ Minnesota Large Lakes Observ Duluth MN 55812 USA|Univ Minnesota Dept Phys Duluth MN 55812 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Internal waves; Tides;

    机译:内部波;潮汐;

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