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Eddy-mean flow interactions in western boundary current jets

机译:西部边界流动射流中的涡流相互作用

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摘要

This thesis examines the nature of eddy-mean flow interactions in western boundary current jets and recirculation gyre dynamics from both theoretical and observational perspectives. It includes theoretical studies of eddy-mean flow interactions in idealized configurations relevant to western boundary current jet systems, namely (i) a study of the mechanism by which eddies generated from a localized forcing drive mean recirculation gyres through the process of nonlinear rectification; and (ii) a study of the role of eddies in the downstream evolution of a baroclinic jet subject to mixed instabilities. It also includes an observational analysis to characterize eddy-mean flow interactions in the Kuroshio Extension using data from the downstream location of maximum eddy kinetic energy in the jet. New insights are presented into a rectification mechanism by which eddies drive the recirculation gyres observed in western boundary current systems. Via this mechanism, eddies drive the recirculations by an up-gradient eddy potential vorticity flux inside a localized region of eddy activity. The effectiveness of the process depends on the properties of the energy radiation from the region, which in turn depends on the population of waves excited. In the zonally-evolving western boundary current jet, eddies also act to stabilize the unstable jet through down-gradient potential vorticity fluxes. In this configuration, the role of eddies depends critically on their downstream location relative to where the unstable time-mean jet first becomes stabilized by the eddy activity. The zonal advection of eddy activity from upstream of this location is fundamental to the mechanism permitting the eddies to drive the mean flows.
机译:本文从理论和观察的角度研究了西部边界流射流中涡旋-均流相互作用的本质以及再循环回旋动力学。它包括对与西部边界流射流系统相关的理想构型中的涡旋-均流相互作用的理论研究,即:(i)对由局部强迫驱动均值回旋涡流通过非线性整流过程产生的涡旋的机理的研究; (ii)研究涡流在混合不稳定条件下的斜压射流下游演化中的作用。它还包括观测分析,以使用来自射流中最大涡动能的下游位置的数据来表征黑潮扩展区中的涡旋-均流相互作用。提出了一种新的见解,介绍了一种整流机制,通过该机制,涡流驱动了在西部边界流系统中观察到的回流环流。通过这种机制,涡流通过涡旋活动局部区域内的向上的涡流势涡通量来驱动再循环。该过程的有效性取决于来自该区域的能量辐射的特性,而该特性又取决于激发的波群。在纬向演化的西部边界流射流中,涡流还通过降低梯度势涡通量来稳定不稳定的射流。在这种构造中,涡流的作用主要取决于它们的下游位置,相对于不稳定的时间平均射流首先通过涡流活动稳定的位置。从该位置上游开始的涡流的区域平流是允许涡流驱动平均流量的机制的基础。

著录项

  • 作者

    Waterman Stephanie N;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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