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首页> 外文期刊>Journal of Physical Oceanography >Inferring Circulation and Lateral Eddy Fluxes in the Arctic Ocean's Deep Canada Basin Using an Inverse Method
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Inferring Circulation and Lateral Eddy Fluxes in the Arctic Ocean's Deep Canada Basin Using an Inverse Method

机译:用反演方法推断北冰洋深部加拿大盆地的环流和横向涡通量

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The deep waters in the Canada Basin display a complex temperature and salinity structure, the evolution of which is poorly understood. The fundamental physical processes driving changes in these deep water masses are investigated using an inverse method based on tracer conservation combined with empirical orthogonal function analysis of repeat hydrographic measurements between 2003 and 2015. Changes in tracer fields in the deep Canada Basin are found to be dominated by along-isopycnal diffusion of water properties from the margins into the central basin, with advection by the large-scale Beaufort Gyre circulation as well as localized, vertical mixing playing important secondary roles. In the Barents Sea branch of the Atlantic Water layer, centered around 1200-m depth, diffusion is shown to be nearly twice as important as advection to lateral transport. Along-isopycnal diffusivity is estimated to be similar to 300-600 m(2) s(-1). Large-scale circulation patterns and lateral advective velocities associated with the anticyclonic Beaufort Gyre are inferred, with an average speed of 0.6 cm s(-1). Below about 1500 m, along-isopycnal diffusivity is estimated to be similar to 200-400 m(2) s(-1).
机译:加拿大盆地的深水区显示出复杂的温度和盐度结构,人们对其演化的了解却很少。使用基于示踪剂守恒的反演方法结合2003年至2015年重复水文测量的经验正交函数分析,研究了驱动这些深水团块变化的基本物理过程。发现加拿大深海盆地示踪剂场的变化占主导地位通过沿边缘等量水属性从边缘向中央盆地的扩散,伴随着大规模的Beaufort Gyre循环的平流作用以及局部的垂直混合作用起着重要的次要作用。在大西洋水层的巴伦支海分支中,深度大约为1200米,扩散对侧向运输的重要性几乎是对流的两倍。沿等渗扩散率估计类似于300-600 m(2)s(-1)。可以推断出与反气旋博福特涡流相关的大规模循环模式和横向对流速度,平均速度为0.6 cm s(-1)。在大约1500 m以下,估计沿等密度线的扩散率类似于200-400 m(2)s(-1)。

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