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Main Author: Kumbhakar, Jiten
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2301.04080
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author Kumbhakar, Jiten
author_facet Kumbhakar, Jiten
contents In this article, we study boundary null controllability properties of the linearized compressible Navier-Stokes equations in the interval $(0,2π)$ for both barotropic and non-barotropic fluids using only one boundary control. We consider all the possible cases of the act of control for both systems (density, velocity and temperature). These controls are acting on the boundary and are given as the difference of the values at $x=0$ and $x=2π$. In this setup, using a boundary control acting in density, we first prove null controllability of both the barotropic and non-barotropic systems at large time in the spaces $(\dot{L}^2(0,2π))^2$ and $(\dot{L}^2(0,2π))^3$ respectively (where the dot represents functions with mean value zero). When the control is acting in the velocity component, we prove null controllability at large time in the spaces $\dot{H}^1_{\text{per}}(0,2π)\times\dot{L}^2(0,2π)$ and $\dot{H}^1_{\text{per}}(0,2π)\times(\dot{L}^2(0,2π))^2$ respectively. Further, in both cases, we prove that these null controllability results are sharp with respect to the regularity of the initial states in velocity/ temperature case, and time in the density case. Finally, for both barotropic and non-barotropic fluids, we prove that, under some assumptions, the system cannot be approximately controllable at any time, whether there is a control acting in density, velocity or temperature.
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publishDate 2023
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spellingShingle Null controllability of one-dimensional barotropic and non-barotropic linearized compressible Navier-Stokes system using one boundary control
Kumbhakar, Jiten
Analysis of PDEs
Optimization and Control
In this article, we study boundary null controllability properties of the linearized compressible Navier-Stokes equations in the interval $(0,2π)$ for both barotropic and non-barotropic fluids using only one boundary control. We consider all the possible cases of the act of control for both systems (density, velocity and temperature). These controls are acting on the boundary and are given as the difference of the values at $x=0$ and $x=2π$. In this setup, using a boundary control acting in density, we first prove null controllability of both the barotropic and non-barotropic systems at large time in the spaces $(\dot{L}^2(0,2π))^2$ and $(\dot{L}^2(0,2π))^3$ respectively (where the dot represents functions with mean value zero). When the control is acting in the velocity component, we prove null controllability at large time in the spaces $\dot{H}^1_{\text{per}}(0,2π)\times\dot{L}^2(0,2π)$ and $\dot{H}^1_{\text{per}}(0,2π)\times(\dot{L}^2(0,2π))^2$ respectively. Further, in both cases, we prove that these null controllability results are sharp with respect to the regularity of the initial states in velocity/ temperature case, and time in the density case. Finally, for both barotropic and non-barotropic fluids, we prove that, under some assumptions, the system cannot be approximately controllable at any time, whether there is a control acting in density, velocity or temperature.
title Null controllability of one-dimensional barotropic and non-barotropic linearized compressible Navier-Stokes system using one boundary control
topic Analysis of PDEs
Optimization and Control
url https://arxiv.org/abs/2301.04080