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Unsteady similarity solutions and oscillating ocean gyres

机译:非稳态相似性解决方案和海洋涡旋振荡

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The effect of time-dependent forcing on steady solutions representing basin-scale flows is investigated. Analytical and numerical solutions are considered separately and compared. We first use symmetry methods to show how any steady solution of the ideal thermocline equations can be used to generate a family of unsteady solutions, via an arbitrary function of time α(t). The resulting time-dependent solutions correspond to distortion of the isopycnal surfaces by a velocity field which varies linearly in the three coordinate directions. Although the displacements are linear, the fluctuations can lead to a form of nonlinear streaming wherever the function α appears nonlinearly in expressions for mass and heat fluxes. For an example steady solution, changes in internal energy caused by the time-dependence are associated with changes in thermocline depth and fluxes of energy from the western boundary, although it is unclear to what extent this behavior is specific to the example chosen. We also describe another symmetry of the time-dependent thermocline equations which generates wave-like solutions from arbitrary steady solutions. All the time-dependent solutions are special cases of a symmetry which applies to a general advection equation. Potential vorticity advection provides another special case. With the inclusion of convective and dissipative processes, a more realistic steady solution is found numerically in a flat-bottomed sector. If the surface forcing functions oscillate annually, the resulting flow resembles the analytical predictions. As the oscillation period increases, spatial variations in phase disrupt the agreement as first boundary and then diffusive effects become important. For decadal period oscillations, nonlinear streaming is found to significantly increase the meridional overturning.
机译:研究了时变强迫对代表流域规模流的稳定解的影响。分析和数值解决方案分别考虑和比较。我们首先使用对称方法来展示理想的热线方程的任何稳定解如何可以通过时间α(t)的任意函数生成一系列非稳定解。所得的时间相关解对应于等速面的变形,该变形是通过在三个坐标方向上线性变化的速度场引起的。尽管位移是线性的,但波动可以导致非线性流的形式,无论函数α在质量和热通量的表达式中如何出现非线性。对于示例稳定解决方案,由时间依赖性引起的内部能量变化与热跃层深度和来自西边界的能量通量的变化相关,尽管尚不清楚这种行为在何种程度上特定于所选示例。我们还描述了与时间有关的跃线方程的另一种对称性,该对称性可从任意稳态解中生成波状解。所有与时间有关的解都是对称的特殊情况,适用于一般对流方程。潜在的涡流对流提供了另一种特殊情况。包括对流和耗散过程,在平底区域中找到了更现实的稳定解。如果表面强迫函数每年都在振荡,则所产生的流量类似于分析预测。随着振荡周期的增加,相位的空间变化破坏了作为第一边界的一致性,然后扩散效应变得重要。对于十年周期振荡,发现非线性流显着增加了经向翻转。

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