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首页> 外文期刊>Journal of nonlinear science >Global Regularity for a 2D Tropical Climate Model with Fractional Dissipation
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Global Regularity for a 2D Tropical Climate Model with Fractional Dissipation

机译:具有分数耗散的2D热带气候模型的全球规律性

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摘要

This paper examines the global regularity problem for a 2D tropical climate model with fractional dissipation. The inviscid version of this model was derived by Frierson, Majda and Pauluis for large-scale dynamics of precipitation fronts in the tropical atmosphere. The model considered here has some very special features. This nonlinear system involves interactions between a divergence-free vector field and a non-divergence-free vector field. In addition, the fractional dissipation not only models long-range interactions but also allows simultaneous investigations of a family of system. Our study leads to the global regularity of solutions when the indices of the fractional Laplacian are in two very broad ranges. In order to establish the global-in-time bounds, we introduce an efficient way to control the gradient of the non-divergence-free vector field and make sharp estimates by controlling the regularity of related quantities simultaneously.
机译:本文研究了2D热带气候模型的全球规律性问题,分数耗散。 该模型的INCISCID版本由Frideron,Majda和Pauluis获得了热带气氛中降水前沿的大规模动态。 这里考虑的模型具有一些非常特殊的功能。 该非线性系统涉及无分离载体场与不分歧的矢量场之间的相互作用。 此外,分数耗散不仅模拟了远程交互,而且还允许同时调查一个系列的系统。 当分数拉普拉斯的指数有两个非常广泛的范围时,我们的研究会导致解决方案的全球性规律。 为了建立全球性界限,我们引入了一种有效的方法来控制无分歧矢量场的梯度,并通过同时控制相关数量的规律性来进行急剧估计。

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