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Horizontal Density Structure and Restratification of the Arctic Ocean Surface Layer

机译:北冰洋表层的水平密度结构和再定化

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摘要

Ice-tethered profiler (ITP) measurements from the Arctic Ocean's Canada Basin indicate an ocean surface layer beneath sea ice with significant horizontal density structure on scales of hundreds of kilometers to the order 1 km submesoscale. The observed horizontal gradients in density are dynamically important in that they are associated with restratification of the surface ocean when dense water flows under light water. Such restratification is prevalent in wintertime and competes with convective mixing upon buoyancy forcing (e.g., ice growth and brine rejection) and shear-driven mixing when the ice moves relative to the ocean. Frontal structure and estimates of the balanced Richardson number point to the likelihood of dynamical restratification by isopycnal tilt and submesoscale baroclinic instability. Based on the evidence here, it is likely that submesoscale processes play an important role in setting surface-layer properties and lateral density variability in the Arctic Ocean.
机译:北冰洋加拿大盆地的冰栓剖面仪(ITP)测量表明,海冰下的海表层具有显着的水平密度结构,其规模在数百公里至1公里亚中尺度范围内。观察到的密度水平梯度在动力学上很重要,因为当浓水在轻水下流动时,它们与表层海洋的再定化有关。这种再定殖在冬季很普遍,并且在浮力作用下(例如,冰的生长和盐水的排泄)与对流混合以及当冰相对于海洋运动时由剪切驱动的混合而竞争。额叶结构和平衡理查森数的估计指出了由等腰倾斜和亚中尺度斜斜不稳定引起的动态再定形的可能性。根据这里的证据,亚中尺度过程可能在设定北冰洋的表层特性和侧向密度变化中起重要作用。

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  • 来源
    《Journal of Physical Oceanography》 |2012年第4期|p.659-668|共10页
  • 作者单位

    Department of Geology and Geophysics, Yale University, New Haven, Connecticut;

    Department of Physical Oceanography, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Department of Physical Oceanography, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

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