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On the Exchange of Momentum over the Open Ocean

机译:论海洋动量交换

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摘要

This study investigates the exchange of momentum between the atmosphere and ocean using data collected from four oceanic field experiments. Direct covariance estimates of momentum fluxes were collected in all four experiments and wind profiles were collected during three of them. The objective of the investigation is to improve parameterizations of the surface roughness and drag coefficient used to estimate the surface stress from bulk formulas. Specifically, the Coupled Ocean-Atmosphere Response Experiment (COARE) 3.0 bulk flux algorithm is refined to create COARE 3.5. Oversea measurements of dimensionless shear are used to investigate the stability function under stable and convective conditions. The behavior of surface roughness is then investigated over a wider range of wind speeds (up to 25ms~(-1)) and wave conditions than have been available from previous oversea field studies. The wind speed dependence of the Charnock coefficient α in the COARE algorithm is modified to α = mU_(10N) + b, where m = 0.017 m~(-1) s and b = -0.005. When combined with a parameterization for smooth flow, this formulation gives better agreement with the stress estimates from all of the field programs at all winds speeds with significant improvement for wind speeds over 13 m s~(-1). Wave age- and wave slope-dependent parameterizations of the surface roughness are also investigated, but the COARE 3.5 wind speed-dependent formulation matches the observations well without any wave information. The available data provide a simple reason for why wind speed-, wave age-, and wave slope-dependent formulations give similar results-the inverse wave age varies nearly linearly with wind speed in long-fetch conditions for wind speeds up to 25 ms~(-1).
机译:这项研究使用从四个海洋野外实验中收集的数据来研究大气与海洋之间的动量交换。在所有四个实验中收集了动量通量的直接协方差估计,并且在其中三个实验中收集了风廓线。研究的目的是改进表面粗糙度和阻力系数的参数化,该参数用于从整体公式估算表面应力。具体来说,完善了海洋-大气耦合反应实验(COARE)3.0整体通量算法,以创建COARE 3.5。国外对无量纲剪切力的测量被用于研究稳定和对流条件下的稳定性函数。与以前的海外野外研究相比,然后在更宽的风速范围(高达25ms〜(-1))和波浪条件下研究了表面粗糙度的行为。将COARE算法中Charnock系数α的风速依赖性修改为α= mU_(10N)+ b,其中m = 0.017 m〜(-1)s和b = -0.005。当与参数化相结合以实现平稳流动时,该公式与所有现场程序在所有风速下的应力估计值更好地吻合,并且对于13 m s〜(-1)以上的风速有显着改善。还研究了与波浪年龄和波浪坡度有关的表面粗糙度参数化,但是COARE 3.5与风速有关的公式与观测值很好地匹配,没有任何波浪信息。现有数据提供了一个简单的原因,说明为什么风速,波龄和与波坡度有关的公式给出相似的结果-在长获取条件下,风速高达25 ms时,逆波龄几乎随风速线性变化。 (-1)。

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  • 来源
    《Journal of Physical Oceanography 》 |2013年第8期| 1589-1610| 共22页
  • 作者单位

    Department of Marine Sciences, University of Connecticut, Groton, Connecticut,University of Connecticut, Marine Sciences, 1080 Shennecossett Road, Groton, CT 06340;

    Department of Marine Sciences, University of Connecticut, Groton, Connecticut;

    Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    NOAA/Environmental System Laboratory, Boulder, Colorado;

    Atmospheric Sciences Research Center, State University of New York, Albany, New York;

    College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, Oregon;

    College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, Oregon;

    European Centre for Medium-Range Weather Forecasts, Reading, United Kingdom;

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