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Statistical mechanics of Fofonoff flows in an oceanic basin

机译:大洋盆地内Fofonoff流量的统计力学

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We study the minimization of potential enstrophy at fixed circulation and energy in an oceanic basin with arbitrary topography. For illustration, we consider a rectangular basin and a linear topography h = by which represents either a real bottom topography or the β-effect appropriate to oceanic situations. Our minimum enstrophy principle is motivated by different arguments of statistical mechanics reviewed in the article. It leads to steady states of the quasigeostrophic (QG) equations characterized by a linear relationship between potential vorticity q and stream function ψ. For low values of the energy, we recover Fofonoff flows [J. Mar. Res. 13, 254 (1954)] that display a strong westward jet. For large values of the energy, we obtain geometry induced phase transitions between monopoles and dipoles similar to those found by Chavanis and Sommeria [J. Fluid Mech. 314, 267 (1996)] in the absence of topography. In the presence of topography, we recover and confirm the results obtained by Venaille and Bouchet [Phys. Rev. Lett. 102, 104501 (2009)] using a different formalism. In addition, we introduce relaxation equations towards minimum potential enstrophy states and perform numerical simulations to illustrate the phase transitions in a rectangular oceanic basin with linear topography (or β-effect).
机译:我们研究了在具有任意地形的海盆中,固定循环和能量下的潜在内涡最小化。为了说明,我们考虑一个矩形盆地和一个线性地形h =,它表示真实的底部地形或适合​​于海洋情况的β效应。我们的最小熵原理是由本文中所讨论的统计力学的不同论据激发的。这导致了准营养(QG)方程的稳态,其特征在于势涡度q和流函数ψ之间的线性关系。对于低能量值,我们恢复了Fofonoff流量[J.三月水库13,254(1954)]表现出强大的西风。对于较大的能量值,我们获得了类似于Chavanis和Sommeria所发现的由单极和偶极子之间的几何形状诱导的相变[J.流体机械。 314,267(1996)]。在地形的情况下,我们恢复并确认了Venaille和Bouchet [Phys。牧师102,104501(2009)]。此外,我们引入了趋向于最小潜在涡旋状态的弛豫方程,并进行了数值模拟,以说明具有线性地形(或β效应)的矩形海洋盆地的相变。

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