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Evolution of Denmark Strait Overflow Cyclones and Their Relationship to Overflow Surges

机译:丹麦海峡溢流飓风的演变及其与溢流的关系

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Mesoscale features present at the Denmark Strait sill regularly enhance the volume transport of the Denmark Strait overflow (DSO). They are important for the Atlantic Meridional Overturning Circulation and ultimately, for the global climate system. Using a realistic numerical model, we find new evidence of the causal relationship between overflow surges (i.e., mesoscale features associated with high-transport events) and DSO cyclones observed downstream. Most of the cyclones form at the Denmark Strait sill during overflow surges and, because of potential vorticity conservation and stretching of the water column, grow as they move equatorward. A fraction of the cyclones form downstream of the sill, when anticyclonic vortices formed during high-transport events start collapsing. Regardless of their formation mechanism, DSO cyclones weaken starting roughly 150 km downstream of the sill, and potential vorticity is only materially conserved during the growth phase.
机译:丹麦海峡门槛的Mescle特征定期增强丹麦海峡溢出(DSO)的体积传输。 对于全球气候制度来说,它们对大西洋化的经络倾覆流通很重要。 使用现实的数值模型,我们发现了新的证据证明溢流浪涌之间的因果关系(即,与高传输事件相关的Mescre特征)和DSO旋风在下游观察到。 大多数旋风在丹麦海峡门槛在溢流浪涌期间,由于潜在的涡流保存和水柱拉伸,在移动赤道时生长。 当在高运输事件期间形成的反气旋涡旋开始塌陷时,窗台下游的旋风分裂形式的一部分。 无论其形成机制如何,DSO旋风分裂都削弱了在窗台下游大约150公里的开始,并且潜在的涡流在生长期期间只有物质保守。

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