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Symmetric stability of compressible zonal flows on a generalized equatorial β plane

机译:广义赤道β平面上可压缩纬向流的对称稳定性

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摘要

Sufficient conditions are derived for the linear stability with respect to zonally symmetric perturbations of a steady zonal solution to the nonhydrostatic compressible Euler equations on an equatorial � plane, including a leading order representation of the Coriolis force terms due to the poleward component of the planetary rotation vector.ud A version of the energy–Casimir method of stability proof is applied: an invariant functional of the Euler equations linearized about the equilibrium zonal flow is found, and positive definiteness of the functional is shown to imply linear stability of the equilibrium. It is shown that an equilibrium is stable if the potential vorticity has the same sign as latitude and the Rayleigh centrifugal stability condition that absolute angular momentum increase toward the equator on surfaces of constant pressure is satisfied. The result generalizes earlier results for hydrostatic and incompressible systems and for systems that do not account for the nontraditional Coriolis force terms.ud The stability of particular equilibrium zonal velocity, entropy, and density fields is assessed. A notable case in which the effect of the nontraditional Coriolis force is decisive is the instability of an angular momentum profile that decreases away from the equator but is flatter than quadratic in latitude, despite its satisfying both the centrifugal and convective stability conditions.
机译:对于赤道面上非静压可压缩Euler方程的稳定区域解的区域对称扰动,得出了足够的线性稳定性条件,其中包括由于行星旋转的极点分量引起的科里奥利力项的前导表示向量。 ud采用了能量证明的Casimir方法的稳定性证明:找到了关于平衡地带流线性化的Euler方程的不变函数,并且该函数的正定性表明了平衡的线性稳定性。结果表明,如果势涡具有与纬度相同的符号,并且满足瑞利离心稳定条件,即在恒压表面上朝向赤道的绝对角动量增加,则平衡是稳定的。该结果概括了静液压和不可压缩系统以及未考虑非传统科里奥利力项的系统的早期结果。 ud评估了特定平衡区域速度,熵和密度场的稳定性。非传统的科里奥利力的影响起决定性作用的一个值得注意的情况是,尽管它既满足离心和对流稳定性条件,但角动量分布的不稳定性逐渐远离赤道,但在纬度上比平方更平坦。

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