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Time-periodic solutions of the primitive equations of large-scale moist atmosphere: existence and stability

机译:大规模潮湿气氛的原始方程的时间周期解:存在和稳定性

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摘要

This article is devoted to the study of the asymptotic stability of the three-dimensional viscous primitive equations for large-scale moist atmosphere in the pressure coordinate system. An asymptotic stability criterion for the solutions of such model with time-dependent forcing terms is obtained. In particular, under the assumptions that the associated forces are both time-periodic and small (in a suitable sense), we obtain the existence of the time-periodic solution for the primitive equations of large-scale moist atmosphere. Moreover, this time-periodic solution is asymptotically stable in L-2 sense.
机译:本文致力于研究三维粘性原始方程的渐近稳定性,在压力坐标系中大规模潮湿气氛。 获得了随着时间依赖性强制术语的这种模型的解的渐近稳定性标准。 特别地,在相关力既有时间周期性且小的假设下(在合适的意义上),我们获得了大规模潮湿气氛的原始方程的时间周期解的存在。 此外,这种时期的溶液在L-2感性中是渐近稳定的。

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