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首页> 外文期刊>Journal of Physical Oceanography >A Simple Shelf Circulation Model: Intrusion of Atlantic Water on the West Spitsbergen Shelf
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A Simple Shelf Circulation Model: Intrusion of Atlantic Water on the West Spitsbergen Shelf

机译:一个简单的架子循环模型:西斯匹次卑尔根架子上的大西洋水入侵

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Barotropic flow along depth contours is found in accordance with standard geostrophic theory. A numerical model is developed that studies the deviation from such a flow. The model gives a good approximation of the dynamical processes on the West Spitsbergen Shelf (WSS) and shows that the West Spitsbergen Current (WSC), the main gateway of Atlantic water (AW) toward the Arctic, connects more easily to the Isfjorden Trough than anywhere else along the shelf. The circulation of AW in the troughs along the WSS is here named the Spitsbergen Trough Current (STC). From hydrographical and ocean current observations it is evident that the STC is primarily barotropic and driven by the sea surface height. A connection between the along-coast wind stress and the STC is established, and it is demonstrated how the increased occurrence of winter cyclones in Fram Strait during January-February accelerates and widens the WSC. Ultimately, this results in a strengthened STC and dominance of AW on the WSS. The STC represents a slower route of AW toward the Arctic Ocean and a large heat transport toward the West Spitsbergen fjords during winter (0.2-0.4 TW toward Isfjorden). Heat flux estimates show that half of the AW heat loss in the Isfjorden Trough is due to heat loss to the surrounding water masses, while the rest is lost to the atmosphere. Sea ice production along West Spitsbergen has been reduced, or even nonexistent, in some fjords since 2006. Here, the authors argue that this is a consequence of the strong southerly wind periods along the WSS during winter.
机译:沿深度等高线的正压流是根据标准地转理论发现的。建立了一个数值模型来研究这种流动的偏差。该模型很好地近似了西斯匹次卑尔根大陆架(WSS)上的动力学过程,并表明西斯匹次卑尔根洋流(WSC)是大西洋水(AW)通往北极的主要通道,它比伊斯峡湾海槽更容易连接架子上其他任何地方。沿WSS的槽中的AW循环在此称为Spitsbergen槽电流(STC)。从水文和洋流观测中可以看出,STC主要是正压性的,并受海面高度的驱动。建立了沿海风应力与STC之间的联系,并证明了在一月至二月期间弗拉姆海峡冬季旋风的发生增加如何加速和扩大了WSC。最终,这将导致增强的STC以及AW在WSS上的优势。在冬季,STC表示AW通往北冰洋的路线较慢,并且向冬季Spitsbergen峡湾的热量传输较大(往Isfjorden的流量为0.2-0.4 TW)。热通量估算表明,伊斯峡湾槽内的AW热损失的一半是由于周围水团的热损失,而其余部分则损失了大气。自2006年以来,一些峡湾西Spitsbergen沿岸的海冰产量减少,甚至不存在。在这里,作者认为这是冬季WSS沿南风强烈的结果。

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