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Time-Variable Refraction of the Internal Tide at the Hawaiian Ridge

机译:夏威夷海岭内潮的时变折射

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摘要

The interaction of the dominant semidiurnal M_2 internal tide with the large-scale subtidal flow is examined in an ocean model by propagating the tide through an ensemble of background fields in a domain centered on the Hawaiian Ridge. The background fields are taken from the Simple Ocean Data Assimilation (SODA) ocean analysis, at 2-month intervals from 1992 through 2001. Tides are computed with the Primitive Equation Z-coordinate Harmonic Analysis of Tides (PEZ-HAT) model by 14-day integrations using SODA initial conditions and M_2 tidal forcing. Variability of the tide is found to occur primarily as the result of propagation through the nonstationary background fields, rather than via generation site variability. Generation of incoherent tidal variability is mapped and shown to occur mostly in association with waves generated at French Frigate Shoals scattering near the Musicians Seamounts to the north of the ridge. The phase-coherent internal tide loses energy at a domain-average rate of 2mW m~(-2) by scattering into the non-stationary tide. Because of the interference of waves from multiple generation sites, variability of the internal tide is spatially inhomogeneous and values of the scattering rate 10 times larger occur in localized areas, ft is estimated that 20% of the baroclinic tidal energy flux is lost by adiabatic scattering (refraction) within 250 km of the ridge, a value regarded as a lower bound because of the smoothed nature of the SODA fields used in this study.
机译:在海洋模型中,通过使潮汐通过以夏威夷山脊为中心的区域中的背景场的整体传播,来检验主要的半日M_2内部潮汐与大规模潮汐流之间的相互作用。背景字段取自1992年至2001年的2个月间隔的简单海洋数据同化(SODA)海洋分析。使用原始方程Z潮汐谐波分析(PEZ-HAT)模型,通过14-使用SODA初始条件和M_2潮汐强迫进行日积分。发现潮汐的变化主要是由于通过非平稳背景场传播而不是通过发电地点的变化而发生的。绘制了不连贯的潮汐变化的发生图,并显示该变化主要与法国护卫舰浅滩所产生的海浪有关,该海浪在山脊北部的音乐家海山附近散射。相干内潮通过散射到非平稳潮中而以2mW m〜(-2)的域平均速率损失能量。由于来自多个发电站的波的干扰,内部潮汐的变化在空间上是不均匀的,并且局部区域的散射率值大10倍,ft估计绝热散射会损失20%的斜压潮汐能通量。 (折射)距离山脊250公里以内,由于该研究中使用的SODA场具有平滑性质,因此该值被视为下限。

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  • 来源
    《Journal of Physical Oceanography》 |2014年第2期|538-557|共20页
  • 作者单位

    Portland State University, Portland, Oregon,Department of Civil and Environmental Engineering, Portland State University, P.O. Box 751, Portland, OR 97207-0751;

    Oregon State University, Corvallis, Oregon;

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  • 正文语种 eng
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