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Internal Wave Reflection on Shelf Slopes with Depth-Varying Stratification

机译:层状深度变化层对内坡的内波反射

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Reflection of internal waves from sloping topography is simple to predict for uniform stratification and linear slope gradients. However, depth-varying stratification presents the complication that regions of the slope may be subcritical and other regions supercritical. Here, a numerical model is used to simulate a mode-1, M_2 internal tide approaching a shelf slope with both uniform and depth-varying stratifications. The fractions of incident internal wave energy reflected back offshore and transmitted onto the shelf are diagnosed by calculating the energy flux at the base of slope (with and without topography) and at the shelf break. For the stratifications/topographies considered in this study, the fraction of energy reflected for a given slope criti-cality is similar for both uniform and depth-varying stratifications. This suggests the fraction reflected is dependent only on maximum slope criticality and independent of the depth of the pycnocline. The majority of the reflected energy flux is in mode 1, with only minor contributions from higher modes due to topographic scattering. The fraction of energy transmitted is dependent on the depth-structure of the stratification and cannot be predicted from maximum slope criticality. If near-surface stratification is weak, transmitted internal waves may not reach the shelf break because of decreased horizontal wavelength and group velocity.
机译:倾斜地形的内部波反射很容易预测均匀的分层和线性斜率梯度。然而,随深度变化的分层带来了以下复杂性:斜坡区域可能是亚临界的,而其他区域则是超临界的。在这里,一个数值模型被用来模拟模式一,M_2内部潮汐逼近具有相同和不同深度分层的陆架坡度。通过计算在坡底(有或没有地形)和架子折断处的能量通量,可以诊断入射的内部波能在海上反射回来并传递到架子上的比例。对于本研究中考虑的分层/地形而言,对于给定的坡度calcal-cality,反射的能量分数对于均匀分层和深度变化分层都是相似的。这表明所反射的分数仅取决于最大斜率临界度,而与比克索克林的深度无关。大部分反射能量通量处于模式1,由于地形散射,较高模式的贡献很小。传输的能量的比例取决于分层的深度结构,无法根据最大的坡度临界值进行预测。如果近地表分层较弱,则由于减小的水平波长和群速度,传输的内部波可能不会到达架子破裂处。

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  • 来源
    《Journal of Physical Oceanography 》 |2013年第2期| 248-258| 共11页
  • 作者单位

    School of Envi-ronmental Sciences, University of East Anglia, Norwich Research Park, Norwich, NR4 7TJ, United Kingdom;

    National Oceanography Centre, Liverpool, United Kingdom;

    School of Environmental Sciences, University of Liverpool, Liverpool, United Kingdom;

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