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Energy Conversion Routes in the Western Mediterranean Sea Estimated from Eddy-Mean Flow Interactions

机译:由涡-均流相互作用估算的西地中海能量转换路径

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Energy conversion routes are investigated in the western Mediterranean Sea from the eddy-mean flow interactions. The sources of eddy kinetic energy are analyzed by applying a regional formulation of the Lorenz energy cycle to 18 years of numerical simulation at eddy-resolving resolution (3.5 km), which allows for identifying whether the energy exchange between the mean and eddy flow is local or nonlocal. The patterns of energy conversion between the mean and eddy kinetic and potential energy are estimated in three subregions of the domain: the Alboran Sea, the Algerian Basin, and the northern basin. The spatial characterization of the energy routes hints at the physical mechanisms involved in maintaining the balance, suggesting that flow-topography interaction is strongly linked to eddy growth in most of the domain.
机译:通过涡旋-均值流相互作用研究了地中海西部的能量转换路径。通过将Lorenz能量循环的区域公式应用到18年的数值模拟中,以解析涡旋的分辨率(3.5 km)来分析涡旋动能的来源,这可以确定平均涡流与涡流之间的能量交换是否为局部或非本地。在该域的三个子区域中估计了平均动能和涡动能与势能之间的能量转换模式:阿尔伯兰海,阿尔及利亚盆地和北部盆地。能量路径的空间特征暗示了维持平衡所涉及的物理机制,这表明在大多数区域中,流-地形相互作用与涡流的增长密切相关。

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