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Mesoscale dynamics and walleye pollock catches in the Navarin Canyon area of the Bering Sea

机译:白令海纳瓦林峡谷地区的中尺度动力学和角膜鳕

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摘要

Large canyons incise the shelf break of the eastern Bering Sea to be preferred sites of the cross-shelf exchange. The mesoscale eddy activity is particularly strong near the shelf-break canyons. To study the mesoscale dynamics in the Navarin Canyon area of the Bering Sea, the time series of velocities derived from AVISO satellite altimetry between 1993 and 2015, drifters, Argo buoys, and ship-borne data are analyzed. We demonstrate that the strength of anticyclonic eddies along the shelf edge in spring and summer is determined by the wind stress in March-April. The increased southward wind stress in the central Bering Sea forced a supply of low-temperature and low-salinity outer shelf water to the deep basin and formation of the anticyclonic mesoscale circulation seaward of the Navarin Canyon. Enhanced northwestward advection of the Bering Slope Current water leads to increase in an ice-free area in March and April and increased bottom-layer temperature at the outer shelf. The strong (weak) northwestward advection of the eastern Bering Sea waters, determined by eastern winds in spring, creates favorable (unfavorable) conditions for the pollock abundance in the western Navarin Canyon area in summer.
机译:大峡谷切开了白令海东部的陆架折断处,成为跨架交换的首选地点。在架子破裂峡谷附近,中尺度涡旋活动特别强烈。为了研究白令海纳瓦林峡谷地区的中尺度动力学,分析了1993年至2015年间从AVISO卫星测高仪得出的速度,漂流者,Argo浮标和船载数据的时间序列。我们证明,春季和夏季沿货架边缘的反气旋涡的强度取决于三月至四月的风应力。白令海中部南风压力的增加迫使向深海盆地供应低温和低盐度的外层架水,并形成了纳瓦林峡谷的反气旋中尺度循环海。白令坡向西北的平流增强,导致三月和四月无冰区的水增加,外架子的底层温度升高。白令海东部水域西北向的强(弱)对流,是由春季的东风确定的,为夏季纳瓦林峡谷西部的鳕鱼丰度创造了有利的(不利的)条件。

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