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首页> 外文期刊>Journal of oceanography >Northward transport of pacific summer water along the Northwind Ridge in the Western Arctic Ocean
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Northward transport of pacific summer water along the Northwind Ridge in the Western Arctic Ocean

机译:沿着西北陆海的北德岭沿北夏水的向北运输

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The recent sea-ice reduction in the Arctic Ocean is not spatially uniform, but is disproportionally large around the Northwind Ridge and Chukchi Plateau compared to elsewhere in the Canada Basin. In the Northwind Ridge region, Pacific Summer Water (PSW) delivered from the Bering Sea occupies the subsurface layer. The spatial distribution of warm PSW shows a quite similar pattern to the recent ice retreat, suggesting the influence of PSW on the sea-ice reduction. To understand the regionality of the recent ice retreat, we examine the dynamics and timing of the delivery of the PSW into this region. Here, we adopt a two-layer linearized potential vorticity equation to investigate the behavior of Rossby waves in the presence of a topographic discontinuity in the high latitude ocean. The analytical results show a quite different structure from those of mid-latitude basins due to the small value of β. Incident barotropic waves excited by the sea-ice motion with large annual variation can be scattered into both barotropic and baroclinic modes at the discontinuity. Since the scattered baroclinic Rossby wave with annual frequency cannot propagate freely, a strong baroclinic current near the topographic discontinuity is established. The seasonal variation of current near the topographic discontinuity would cause a kind of selective switching system for shelf water transport into the basin. In our simple analytical model, the enhanced northward transport of summer water and reduced northward transport of winter water are well demonstrated. The present study indicates that these basic dynamics imply that a strengthening of the surface forcing during winter in the Canada Basin could cause sea-ice reduction in the Western Arctic through the changes of underlying Pacific Summer Water.
机译:最近北冰洋的海冰减少在天际上不均匀,但与加拿大盆地的其他地方相比,北岭岭和楚科奇高原周围不成比例地大。在Northwind Ridge Region,从Bering Sea送出的太平洋夏季水(PSW)占据了地下层。温暖的PSW的空间分布显示了最近的冰撤退的类似模式,表明PSW对海冰的影响。要了解最近的冰撤退的区域,我们将研究PSW交付的动态和时间进入该地区。这里,我们采用双层线性化潜在的涡度方程来研究高纬度海洋中的地形不连续性的罗斯比波的行为。由于β值少,分析结果显示了中纬度盆地的结构相当不同。由海冰运动兴奋的事件波波波,具有大型年度变化的海冰运动可以分散到间隔不连续的压力学和双冠状动物模式。由于具有年频率的散射的曲金rossby波不能自由传播,因此建立了靠近地形不连续性的强的曲金电流。地形不连续性附近的电流季节变化会导致一种用于将水输送到盆地的选择性开关系统。在我们简单的分析模型中,夏季水的增强北路运输和冬季水的北方北方运输得到了良好。本研究表明,这些基本动态意味着加强在加拿大盆地冬季迫使表面强制迫使,通过潜在的太平洋夏季水的变化导致西北北部的海冰。

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