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首页> 外文期刊>Geophysical Research Letters >Topographic meandering of Antarctic Circumpolar Current and Antarctic Circumpolar Wave in the ice-ocean-atmosphere system
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Topographic meandering of Antarctic Circumpolar Current and Antarctic Circumpolar Wave in the ice-ocean-atmosphere system

机译:冰海洋大气系统中南极绕极流和南极绕极波的地形曲折

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摘要

Topographic meandering of Antarctic Circumpolar Current (ACC) is found to be an impediment in the propagation of Antarctic Circumpolar Wave (ACW) in the Indian Ocean sector of Antarctica. Reasons for this are attributed to the southward advection of the ACW anomalies associated with the topographic meandering of the ACC. The southward meandering of ACC facilitates warming up of the region east of 20E by about 1C during winter, thereby reducing the sea ice; these processes interfere with the eastward propagating positive sea-ice anomalies, and reduce its strength. Warming of ocean induced by topographic meandering leads to upward vertical velocities between 40-60E, where the ocean surface velocities are weak and southward, and the vertical/meridional advection of temperature dominates the zonal advection in the atmosphere. This results in the decoupling of the ACW in the region east of 40E. In regions out side the Indian Ocean sector, vertical advection is minimum and zonal velocity of ACC becomes positive, which facilitates the ACW propagation in the Central Pacific, Ross and Weddell Seas.
机译:南极圆极电流(ACC)的地形曲折被发现是南极圆极波(ACW)在南极印度洋扇形区传播的障碍。其原因归因于与ACC的地形曲折有关的ACW异常的向南平流。 ACC向南弯曲有助于在冬季将20E以东地区的温度升高大约1C,从而减少海冰。这些过程会干扰向东传播的正海冰异常,并降低其强度。地形曲折引起的海洋变暖导致垂直速度在40-60E之间,那里的海面速度是弱的和向南的,温度的垂直/子午对流主导着大气中的纬向平流。这导致ACW在40E以东的区域解耦。在印度洋区域以外的区域,垂直对流最小,ACC的纬向速度为正,这有利于ACW在中太平洋,罗斯和韦德尔海的传播。

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