Global exact controllability of ideal incompressible magnetohydrodynamic flows through a planar duct

Fuente: arXiv
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Autori principali: Rissel, Manuel, Wang, Ya-Guang
Natura: Preprint
Pubblicazione: 2021
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author Rissel, Manuel
Wang, Ya-Guang
author_facet Rissel, Manuel
Wang, Ya-Guang
contents This article is concerned with the global exact controllability for ideal incompressible magnetohydrodynamics in a rectangular domain where the controls are situated in both vertical walls. First, global exact controllability via boundary controls is established for a related Elsässer type system by applying the return method, introduced in [Coron J.M., Math. Control Signals Systems, 5(3) (1992) 295--312]. Similar results are then inferred for the original magnetohydrodynamics system with the help of a special pressure-like corrector in the induction equation. Overall, the main difficulties stem from the nonlinear coupling between the fluid velocity and the magnetic field in combination with the aim of exactly controlling the system. In order to overcome some of the obstacles, we introduce ad-hoc constructions, such as suitable initial data extensions outside of the physical part of the domain and a certain weighted space.
format Preprint
id arxiv_https___arxiv_org_abs_2105_12321
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Global exact controllability of ideal incompressible magnetohydrodynamic flows through a planar duct
Rissel, Manuel
Wang, Ya-Guang
Analysis of PDEs
Optimization and Control
93B05, 76C99, 93C20
This article is concerned with the global exact controllability for ideal incompressible magnetohydrodynamics in a rectangular domain where the controls are situated in both vertical walls. First, global exact controllability via boundary controls is established for a related Elsässer type system by applying the return method, introduced in [Coron J.M., Math. Control Signals Systems, 5(3) (1992) 295--312]. Similar results are then inferred for the original magnetohydrodynamics system with the help of a special pressure-like corrector in the induction equation. Overall, the main difficulties stem from the nonlinear coupling between the fluid velocity and the magnetic field in combination with the aim of exactly controlling the system. In order to overcome some of the obstacles, we introduce ad-hoc constructions, such as suitable initial data extensions outside of the physical part of the domain and a certain weighted space.
title Global exact controllability of ideal incompressible magnetohydrodynamic flows through a planar duct
topic Analysis of PDEs
Optimization and Control
93B05, 76C99, 93C20
url https://arxiv.org/abs/2105.12321