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首页> 外文期刊>Journal of Physical Oceanography >Dissecting the Pressure Field in Tidal Flow past a Headland: When Is Form Drag 'Real'?
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Dissecting the Pressure Field in Tidal Flow past a Headland: When Is Form Drag 'Real'?

机译:剖析经过岬角的潮汐流中的压力场:何时将表格拖动为“真实”?

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摘要

In the few previous measurements of topographic form drag in the ocean, drag that is much larger than a typical bluff body drag estimate has been consistently found. In this work, theory combined with a numerical model of tidal flow around a headland in a channel gives insight into the mechanisms that create form drag in oscillating flow situations. The total form drag is divided into two parts: the inertial drag, which is derived from a local potential flow solution, and the separation drag, which accounts for flow features such as eddies. The inertial drag can have a large magnitude, yet it cannot do work on the flow because its phase is in quadrature with the velocity. The separation drag has a magnitude that is nearly equal to the bluff body drag and accounts for all of the energy removed from the flow by the topography. In addition, the dependence of the form drag on the tidal excursion distance and the aspect ratio of the headlands were determined with a series of numerical experiments. This theory explains why form drag can be so large in the ocean, and it provides a method for separating the pressure field into the parts that can and cannot extract energy from the flow.
机译:在先前对海洋中地形形式阻力的一些测量中,一直发现比典型的虚张声势阻力大得多的阻力。在这项工作中,将理论与通道中围绕岬角的潮汐流数值模型相结合,可以深入了解在振荡水流情况下形成阻力的机制。总形式阻力分为两部分:惯性阻力(来自局部势流解决方案)和分离阻力(考虑涡流等流动特征)。惯性阻力可能很大,但由于其相位与速度成正交关系,因此它不能对流体起作用。分离阻力的大小几乎等于钝体阻力,并说明了从地形中从流中去除的所有能量。此外,通过一系列数值实验确定了形式阻力对潮汐偏移距离和岬角纵横比的依赖性。该理论解释了为什么形式阻力在海洋中会如此之大,并提供了一种将压力场分离为可以从流中提取能量的部分的方法。

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  • 来源
    《Journal of Physical Oceanography》 |2009年第11期|2971-2984|共14页
  • 作者单位

    School of Oceanography, University of Washington, Box 357940, Seattle, WA 98195-7940;

    School of Oceanography, University of Washington, Seattle, Washington;

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  • 正文语种 eng
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