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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >The dynamics of pressure and form drag on a sloping headland: Internal waves versus eddies
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The dynamics of pressure and form drag on a sloping headland: Internal waves versus eddies

机译:倾斜岬角上的压力和形式动力:内部波浪与涡流

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摘要

Topographically generated eddies and internal waves have traditionally been studied separately even though bathymetry that creates both phenomena is abundant in coastal regions. Here a numerical model is used to understand the dynamics of eddy and wave generation as tidal currents flow past Three Tree Point, a 1 km long, 200 m deep, sloping headland in Puget Sound, WA. Bottom pressure anomalies due to vertical perturbations of the sea surface and isopycnals are used to calculate form drag in different regions of the topography to assess the relative importance of eddies versus internal waves. In regions where internal waves dominate, sea surface and isopycnal perturbations tend to work together to create drag, whereas in regions dominated by eddies, sea surface, and isopycnal perturbations tend to counteract each other. Both phenomena are found to produce similar amounts of form drag even though the bottom pressure anomalies from the eddy have much larger magnitudes than those created by the internal waves. Topography like Three Tree Point is common in high latitude, coastal regions, and therefore the findings here have implications for understanding how coastal topography removes energy from tidal currents.
机译:传统上,地形学上产生的涡流和内波是分开研究的,即使造成这两种现象的测深仪在沿海地区也很丰富。在这里,一个数字模型被用来了解涡流和波浪产生的动力学,这些潮流是随着潮流流过华盛顿州普吉特海湾1公里长,深200 m,倾斜岬角的三树点而产生的。由海面和等深线的垂直扰动引起的底部压力异常被用于计算地形不同区域中的形式阻力,以评估涡旋相对于内部波浪的相对重要性。在内部波占主导的区域,海面和等深扰动往往共同作用以产生阻力,而在涡流占主导的区域中,海面和等深扰动往往相互抵消。尽管涡流的底部压力异常比内部波浪产生的异常大得多,但发现这两种现象都会产生相似数量的形式阻力。像“三树点”这样的地形在高纬度沿海地区很常见,因此,这里的发现对于理解沿海地形如何从潮汐流中去除能量具有启示意义。

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