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Rotation of floating particles in submesoscale cyclonic and anticyclonic eddies: a model study for the southeastern Baltic Sea

机译:浮动粒子旋转粒子旋流旋流旋流旋流和反自克隆漩涡:东南波罗的海的模型研究

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We hypothesized that the overwhelming dominance of cyclonic spirals on satellite images of the sea surface could be caused by some differences between the rotary characteristics of submesoscale cyclonic and anticyclonic eddies. This hypothesis was tested by means of numerical experiments with synthetic floating Lagrangian particles embedded offline in a regional circulation model of the southeastern Baltic Sea with very high horizontal resolution (0.125 nautical mile grid). The numerical experiments showed that the cyclonic spirals can be formed from both a horizontally uniform initial distribution of floating particles and from the initially lined-up particles during an advection time of the order of 1d. Statistical processing of the trajectories of the synthetic floating particles allowed us to conclude that the submesoscale cyclonic eddies differ from the anticyclonic eddies in three ways favoring the formation of spirals in the tracer field: they can be characterized by (a)?a?considerably higher angular velocity, (b)?a?more pronounced differential rotation and (c)?a?negative helicity.
机译:我们假设海面卫星螺旋对海面卫星图像的压倒性优势可能是由于亚透镜循环和反型射频的旋转特性之间的一些差异引起的。通过具有非常高水平分辨率(0.125海里网格网格)的综合浮动拉格朗日颗粒的数值实验,通过具有合成浮动拉格朗日颗粒的数值实验来测试该假设。数值实验表明,旋转螺旋可以由浮动颗粒的水平均匀初始分布和初始排列的颗粒在初始的1D阶的初始颗粒中形成。合成浮动颗粒的轨迹的统计处理使我们得出结论,亚透明度旋风射精的三种方式不同于三条射箭,以三种方式有利于在示踪领域中的螺旋形成:它们的特征是(a)?a?a?相当高的表征角速度,(b)?a?更明显的差分旋转和(c)?a?负螺旋。

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