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Interaction of the Lofoten Vortex with a Satellite Cyclone

机译:Lofoten Vortex与卫星旋风的相互作用

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The Lagrangian-particles simulation in the Lofoten Basin area in the Norwegian Sea, based on the GLORYS12V1 reanalysis for the period from 2016-05-31 to 2016-06-28, was used to track the vortex pair consisting of the large quasi-permanent Lofoten Vortex (LV) and a cyclone generated nearby the LV. We show that the cyclone is a part of a shield around the LV. The core of the cyclone is partly located inside the LV. This structure forms an uneven vortex pair. We provide a complementary analysis of Lagrangian maps with temperature, salinity, and relative vorticity at 75 horizons from the surface to the bottom, consider the evolution of the vortex pair and obtain its characteristics. The cyclone moves around the LV passing along its periphery 348.97 km with a speed of 14 cm/s, which is comparable 23 cm/s, the orbital velocity of the LV during the study period. The orbital velocity of the satellite cyclone is 15 cm/s. The mean amplitude of the LV in the period from 2016-05-31 to 2016-06-28 is 12.50 cm, and the mean amplitude of the satellite cyclone for the same period is - 2.92 cm. The average radius of the LV is 57.48 km and 13.42 km for its satellite cyclone. The orbital velocities of the LV and its satellite cyclone (with their mean values of amplitude and radii) are 0.23 m/s and 0.15 m/s, respectively. The average integral (in a volume) relative vorticity of the eddies in the vortex pair is - 1.41 x 10(18) c(-1) for the LV and 3.19 x 10(9) c(-1) for the satellite cyclone.
机译:根据2016年5月31日至2016年6月28日期间的GLORYS12V1再分析,在挪威海洛弗敦盆地区域进行拉格朗日粒子模拟,用于跟踪由大型准永久性洛弗敦涡(LV)和在LV附近产生的气旋组成的涡对。我们表明,气旋是LV周围屏蔽的一部分。旋风分离器的核心部分位于LV内部。这种结构形成了一个不均匀的涡对。我们从表面到底部的75个视界提供了拉格朗日图与温度、盐度和相对涡度的互补分析,考虑了涡对的演化并获得了其特征。气旋在LV周围移动,沿其外围348.97 km,速度为14 cm/s,与研究期间LV的轨道速度23 cm/s相当。卫星气旋的轨道速度为15cm/s。2016-05-31至2016-06-28期间LV的平均振幅为12.50cm,同一时期卫星气旋的平均振幅为-2.92cm。LV的平均半径为57.48公里,其卫星气旋的平均半径为13.42公里。LV及其卫星气旋的轨道速度(振幅和半径的平均值)分别为0.23 m/s和0.15 m/s。涡对中涡旋的平均积分(体积)相对涡度,LV为-1.41 x 10(18)c(-1),卫星气旋为3.19 x 10(9)c(-1)。

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