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首页> 外文期刊>Journal of Physical Oceanography >Impact of Horizontal Resolution (1/12° to 1/50°) on Gulf Stream Separation, Penetration, and Variability
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Impact of Horizontal Resolution (1/12° to 1/50°) on Gulf Stream Separation, Penetration, and Variability

机译:水平分辨率(1/12°至1/50°)对墨西哥湾流的分离,穿透和变化的影响

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摘要

The impact of horizontal resolution (1/12 degrees to 1/50 degrees; 6 to 1.5 km at midlatitudes) on Gulf Stream separation, penetration, and variability is quantified in a series of identical North Atlantic experiments. The questions the authors seek to address are twofold: 1) Is the realism of the modeled solution increased as resolution is increased? 2) How robust is the modeled mesoscale and submesoscale eddy activity as a function of grid spacing and how representative is it of interior quasigeostrophic (QG) or surface quasigeostrophic (SQG) turbulence? This study shows that (i) the representation of Gulf Stream penetration and associated re-circulating gyres shifts from unrealistic to realistic when the resolution is increased to 1/50 degrees and when the nonlinear effects of the submesoscale eddies intensifies the midlatitude jet and increases its penetration eastward, (ii) the penetration into the deep ocean drastically increases with resolution and closely resembles the observations, and (iii) surface power spectra in the 70-250-km mesoscale range are independent of the horizontal resolution and of the latitude and are representative of 2D QG and SQG turbulence.
机译:在一系列相同的北大西洋实验中,量化了水平分辨率(1/12度至1/50度;中纬度6至1.5 km)对墨西哥湾流分离,渗透和变化的影响。作者试图解决的问题有两个:1)随着分辨率的提高,建模解决方案的现实性是否有所提高? 2)建模的中尺度和亚中尺度涡旋活动作为网格间距的函数有多健壮,它在内部拟营养(QG)或表面拟营养(SQG)湍流中的代表性如何?这项研究表明:(i)当分辨率提高到1/50度且亚中尺度涡旋的非线性效应加剧中纬度喷气并增加其中风时,墨西哥湾流的渗透和相关的再循环涡流的表示从不现实变为现实。向东渗透,(ii)向深海的渗透随着分辨率而急剧增加,并且与观测值非常相似;(iii)70-250 km中尺度范围内的表面功率谱与水平分辨率和纬度无关,并且2D QG和SQG湍流的代表。

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  • 来源
    《Journal of Physical Oceanography 》 |2017年第8期| 1999-2021| 共23页
  • 作者单位

    Florida State Univ, Ctr Ocean Atmospher Predict Studies, Tallahassee, FL 32306 USA;

    Florida State Univ, Ctr Ocean Atmospher Predict Studies, Tallahassee, FL 32306 USA;

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