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Lower bounds on zonal enstrophy

机译:区域侵权下的下限

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An analytic estimate of the lower bounds on zonal enstrophy has been studied for the beta-plane model of two-dimensional barotropic flow. The estimate provides exact lower bounds on the zonal enstrophy, which hence must be satisfied regardless of the dynamics. The energy, impulse, circulation as well as the total enstrophy are invoked as constraints for the minimization of the zonal enstrophy. The corresponding variational principle has an unusual mathematical structure (primarily because the target functional is not a coercive form), by which the constraints work out in an interesting way. A discrete set of zonal enstrophy levels is generated by the energy constraint; each level is specified by an eigenvalue that represents the meridional mode number of zonal flow. However, the value itself of the zonal enstrophy level is a function of only impulse and circulation, being independent of the energy (and total enstrophy). Instead, the energy works in selecting the 'level' (eigenvalue) of the relaxed state. The relaxation occurs by emitting small-scale wavy enstrophy, and continues as far as the nonlinear effect, scaled by the energy, can create wavy enstrophy. Comparison to numerical simulations shows that the theory gives a consistent estimate of the zonal enstrophy in the relaxed state.
机译:本文研究了二维正压气流β平面模式纬向拟能下界的解析估计。这一估计提供了纬向拟能性的精确下限,因此无论动态如何,都必须满足该下限。将能量、冲量、环流以及总能值作为约束条件,使纬向能值最小化。相应的变分原理有一个不寻常的数学结构(主要是因为目标函数不是强制形式),通过这个结构,约束以一种有趣的方式得到了解决。能量约束产生了一组离散的纬向拟能水平;每一层由一个代表纬向流子午模数的特征值指定。然而,纬向拟能水平的值本身只是脉冲和环流的函数,与能量(和总拟能)无关。相反,能量在选择松弛状态的“能级”(本征值)时起作用。这种弛豫是通过发射小尺度的波浪拟能而发生的,并一直持续到由能量所标度的非线性效应可以产生波浪拟能为止。与数值模拟的比较表明,该理论对松驰状态下的纬向拟能性给出了一致的估计。

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