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On the Geostrophic Adjustment of an Isolated Lens: Dependence on Burger Number and Initial Geometry

机译:关于孤立透镜的地转调节:对伯格数和初始几何的依赖

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摘要

Geostrophic adjustment of an isolated axisymmetric lens was examined to better understand the dependence of radial displacements and the adjusted velocity on the Burger number and the geometry of initial conditions. The behavior of the adjustment was examined using laboratory experiments and numerical simulations, which were in turn compared to published analytical solutions. Three defining length scales of the initial conditions were used to distinguish between various asymptotic behaviors for large and small Burger numbers: the Rossby radius of deformation, the horizontal length scale of the initial density defect, and the horizontal length scale of the initial pressure gradient. Numerical simulations for the fully nonlinear time-dependent adjustment agreed both qualitatively and quantitatively with analogous analytical solutions. For large Burger numbers, similar agreement was found in laboratory experiments. Results show that a broad range of final states can result from different initial geometries, depending on the values of the relevant length scales and the Burger number computed from initial conditions. For Burger numbers much larger or smaller than unity, differences between different initial geometries can readily exceed an order of magnitude for both displacement and velocity.
机译:检查了孤立轴对称透镜的地转调整,以更好地了解径向位移和调整后的速度对伯格数和初始条件的几何形状的依赖性。使用实验室实验和数值模拟检查了调整的行为,然后将其与已发布的分析解决方案进行了比较。初始条件的三个定义长度标度用于区分大和小Burger数的各种渐近行为:Rossby变形半径,初始密度缺陷的水平长度标度和初始压力梯度的水平长度标度。完全非线性的与时间有关的调整的数值模拟在质量和定量上都与类似的解析解一致。对于大量汉堡,在实验室实验中也发现了类似的共识。结果表明,取决于相关长度标度的值和从初始条件计算出的伯格数,最终的不同状态可能由不同的初始几何形状引起。对于大于或小于1的Burger数,对于位移和速度,不同初始几何形状之间的差异可能会轻易超过一个数量级。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第4期|p.725-741|共17页
  • 作者单位

    University of Massachusetts Dartmouth, Dartmouth, Massachusetts;

    School for Marine Science and Technology, University of Massachusetts Dartmouth, 706 S. Rodney French Blvd., New Bedford, MA 02744;

    Graduate School of Oceanography, University of Rhode Island, Narragansett, Rhode Island;

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