Global well-posedness and decay of the 2D incompressible MHD equations with horizontal magnetic diffusion

Author:

Lin Hongxia12ORCID,Zhang Heng12,Liu Sen12,Sun Qing12

Affiliation:

1. Geomathematics Key Laboratory of Sichuan Province, Chengdu University of Technology 1 , Chengdu 610059, People’s Republic of China

2. College of Mathematics and Physics, Chengdu University of Technology 2 , Chengdu 610059, People’s Republic of China

Abstract

This paper concerns two-dimensional incompressible magnetohydrodynamic (MHD) equations with damping only in the vertical component of velocity equations and horizontal diffusion in magnetic equations. If the magnetic field is not taken into consideration the system is reduced to Euler-like equations with an extra Riesz transform-type term. The global well-posedness of Euler-like equations remains an open problem in the whole plane R2. When coupled with the magnetic field, the global well-posedness and the stability for the MHD system in R2 have yet to be settled too. This paper here focuses on the space domain T×R, with T being a 1D periodic box. We establish the global well-posedness of the 2D anisotropic MHD system. In addition, the algebraic decay rate in the H2-setting has also been obtained. We solve this by decomposing the physical quantity into the horizontal average and its corresponding oscillation portion, establishing strong Poincaré-type inequalities and some anisotropic inequalities and combining the symmetry conditions imposed on the initial data.

Funder

National Natural Science Foundation of China

The Sichuan Science and Technology Program

Publisher

AIP Publishing

Subject

Mathematical Physics,Statistical and Nonlinear Physics

Reference43 articles.

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