论文标题
在没有沿斜坡变化的情况下,深渊边界层与内海之间的耦合
Coupling Between Abyssal Boundary Layers and the Interior Ocean in the Absence of Along-Slope Variations
论文作者
论文摘要
为了关闭倾覆的循环,必须通过湍流混合而浓密的底部水。最近的研究已经确定了薄的底部边界层(BLS)是剧烈上升的位置,但尚不清楚它们如何与深渊海洋的大规模循环相互作用并塑造。当前对这种BL的内部耦合的理解是由1D理论塑造的,这表明本地产生的BL转运的变化会与内部和全球循环产生交换。然而,到目前为止,这张照片一直基于1D理论,该理论未能捕获甚至高度理想化的2D几何形状中的局部演变。本工作将BL理论应用于修订的1D动力学,该动态更自然地概括为两个和三个维度。假定BL处于浓水上升流和向下浮力通量的收敛之间的准平衡。出现明确公式的BL传输通过修改底部边界条件对内部产生影响。在1D中,该BL转运与内部进化无关,但是在2D中,BL和内部完全耦合。一旦内部变量和底部斜率在水平上变化,则与内部的BL传输交换质量中产生的收敛性和差异。该框架允许分析以前难以访问的问题,例如在有指数内部分层的情况下的BL-内部耦合,为为深渊循环开发完整的理论奠定了基础。
To close the overturning circulation, dense bottom water must upwell via turbulent mixing. Recent studies have identified thin bottom boundary layers (BLs) as locations of intense upwelling, yet it remains unclear how they interact with and shape the large-scale circulation of the abyssal ocean. The current understanding of this BL--interior coupling is shaped by 1D theory, suggesting that variations in locally produced BL transport generate exchange with the interior and thus a global circulation. Until now, however, this picture has been based on a 1D theory that fails to capture the local evolution in even highly idealized 2D geometries. The present work applies BL theory to revised 1D dynamics, which more naturally generalizes to two and three dimensions. The BL is assumed to be in quasi-equilibrium between the upwelling of dense water and the convergence of downward buoyancy fluxes. The BL transport, for which explicit formulae are presented, exerts an influence on the interior by modifying the bottom boundary condition. In 1D, this BL transport is independent of the interior evolution, but in 2D the BL and interior are fully coupled. Once interior variables and the bottom slope are allowed to vary in the horizontal, the resulting convergences and divergences in the BL transport exchange mass with the interior. This framework allows for the analysis of previously inaccessible problems such as the BL--interior coupling in the presence of an exponential interior stratification, laying the foundation for developing a full theory for the abyssal circulation.