数学物理学报 ›› 2023, Vol. 43 ›› Issue (5): 1397-1408.

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三维可压缩 MHD 方程大解的时间衰减率

陈菲1,*(),王帅1(),赵永叶2(),王传宝1()   

  1. 1青岛大学数学与统计学院 山东青岛 266071
    2广州航海学院 广州 510725
  • 收稿日期:2022-08-15 修回日期:2023-04-10 出版日期:2023-10-26 发布日期:2023-08-09
  • 通讯作者: 陈菲 E-mail:feichenstudy@163.com;shuai172021@163.com;yongyezhao@163.com;wcb1216@163.com
  • 作者简介:王帅,Email: shuai172021@163.com;|赵永叶,Email: yongyezhao@163.com;|王传宝,Email: wcb1216@163.com
  • 基金资助:
    国家自然科学基金(12101345);山东省自然科学基金(ZR2021QA017);广州市基础研究计划基础与应用基础研究项目(202102020283)

Time Decay Rate for Large-Solution About 3D Compressible MHD Equations

Chen Fei1,*(),Wang Shuai1(),Zhao Yongye2(),Wang Chuanbao1()   

  1. 1School of Mathematics and Statistics, Qingdao University, Shandong Qingdao 266071
    2Department of Basic Courses, Guangzhou Maritime University, Guangzhou 510725
  • Received:2022-08-15 Revised:2023-04-10 Online:2023-10-26 Published:2023-08-09
  • Contact: Fei Chen E-mail:feichenstudy@163.com;shuai172021@163.com;yongyezhao@163.com;wcb1216@163.com
  • Supported by:
    NSFC(12101345);Natural Science Foundation of Shandong Province of China(ZR2021QA017);Basic and Applied Basic Research Project of Guangzhou Basic Research Plan(202102020283)

摘要:

该文主要研究 $\mathbb{R}^3$ 中可压缩磁流体力学方程大解的时间衰减率. 当 $(\sigma_{0}-1,u_{0},M_{0})$ 属于 $L^1\cap H^2$ 时, 基于 Chen[1] 等人的成果, 文献 [2] 中得到了 $\|\nabla(\sigma-1,u,M)\|_{H^1}\leqslant C(1+t)^{-\frac{5}{4}}$, 可见, 解二阶导数的时间衰减率不是最理想的. 因此, 该文通过借助频率分解[3] 的方法将 $\|\nabla^2 (\sigma-1,u,M)\|_{L^2}$ 的时间衰减率改进为 $(1+t)^{-\frac{7}{4}}$.

关键词: 时间衰减率, 大解, 可压缩磁流体力学方程

Abstract:

This paper focus on time decay rate for large-solution about compressible magnetohydrodynamic equations in $\mathbb{R}^3$. Provided that $(\sigma_{0}-1,u_{0},M_{0})\in L^1\cap H^2$, based on the work of Chen et al.[1], $\|\nabla(\sigma-1,u,M)\|_{H^1}\leqslant C(1+t)^{-\frac{5}{4}}$ is obtained in reference [2], obviously, time decay rate of the 2nd-order derivative of the solution in [2] is not ideal. Here, we improve that of $\|\nabla^2 (\sigma-1,u,M)\|_{L^2}$ to be $(1+t)^{-\frac{7}{4}}$ by the frequency decomposition method[3].

Key words: Time decay rate, Large-solution, Compressible magnetohydrodynamic equations

中图分类号: 

  • O175