首页> 外文学位 >From winds to eddies to diapycnal mixing of the deep ocean: the abyssal meridional overturning circulation driven by the surface wind-stress.
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From winds to eddies to diapycnal mixing of the deep ocean: the abyssal meridional overturning circulation driven by the surface wind-stress.

机译:从大风到涡流再到深海的斜向混合:由表面风应力驱动的深渊经向翻转环流。

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摘要

Previous numerical and theoretical results based on constant diapycnal diffusivity suggested the abyssal meridional overturning circulation (MOC) should weaken as winds over the Southern Ocean intensify. We corroborate this result in a simple ocean model, but find it does not hold in more complex models. First, models with a variable eddy transfer coefficient and simple yet dynamic atmosphere and sea-ice models show an increase, albeit slightly, of the abyssal MOC under increasing winds. Second, the abyssal MOC significantly strengthens with winds when diapycnal diffusivity is parameterized to be energetically supported by the winds. This tests the emerging idea that a significant fraction of the wind energy input to the large-scale ocean circulation is removed by mesoscale eddies and may then be transferred to internal lee waves, and thence to bottom-enhanced diapycnal mixing. A scaling theory of the abyssal MOC is extended to incorporate this energy pathway, corroborating our numerical results.
机译:先前基于恒定的径向扩散率的数值和理论结果表明,随着南大洋上风的增强,深渊子午翻转环流(MOC)应该减弱。我们在一个简单的海洋模型中证实了这一结果,但是发现它在更复杂的模型中不成立。首先,具有可变涡流传递系数的模型以及简单而又动态的大气和海冰模型显示,随着风的增加,深海MOC有所增加,尽管有所增加。其次,当将斜向扩散系数设定为受风大力支撑时,深海MOC随风而显着增强。这检验了新出现的想法,即输入到大规模海洋循环中的风能的很大一部分被中尺度涡旋所去除,然后可能被转移到内部的背风波中,并因此而增加了底部的对流混合。深渊MOC的定标理论得到扩展,以纳入该能量路径,从而证实了我们的数值结果。

著录项

  • 作者

    Stanley, Geoffrey John.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Atmospheric sciences.;Physical oceanography.
  • 学位 M.Sc.
  • 年度 2013
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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