Boundary Control for Suppressing Chaotic Response to Dynamic Hydrogen Blending in a Gas Pipeline

Fuente: arXiv
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Autores principales: Baker, Luke S., Zlotnik, Anatoly
Formato: Preprint
Publicado: 2023
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author Baker, Luke S.
Zlotnik, Anatoly
author_facet Baker, Luke S.
Zlotnik, Anatoly
contents It is known that periodic forcing of nonlinear flows can result in a chaotic response under certain conditions. Such non-periodic and chaotic solutions have been observed in simulations of heterogeneous gas flow in a pipeline with periodic, time-varying boundary conditions. In this paper, we examine a proportional feedback law for boundary control of a parabolic partial differential equation system that represents the flow of two gases through a pipe. We demonstrate that periodic variation of the mass fraction of the lighter gas at the pipe inlet can result in the chaotic propagation of gas pressure waves, and show that appropriate flow control can suppress this response. We examine phase space solutions for the single pipe system subject to boundary control, and use numerical experiments to characterize conditions for the controller gain to suppress chaos.
format Preprint
id arxiv_https___arxiv_org_abs_2311_04407
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Boundary Control for Suppressing Chaotic Response to Dynamic Hydrogen Blending in a Gas Pipeline
Baker, Luke S.
Zlotnik, Anatoly
Dynamical Systems
Optimization and Control
Chaotic Dynamics
Fluid Dynamics
It is known that periodic forcing of nonlinear flows can result in a chaotic response under certain conditions. Such non-periodic and chaotic solutions have been observed in simulations of heterogeneous gas flow in a pipeline with periodic, time-varying boundary conditions. In this paper, we examine a proportional feedback law for boundary control of a parabolic partial differential equation system that represents the flow of two gases through a pipe. We demonstrate that periodic variation of the mass fraction of the lighter gas at the pipe inlet can result in the chaotic propagation of gas pressure waves, and show that appropriate flow control can suppress this response. We examine phase space solutions for the single pipe system subject to boundary control, and use numerical experiments to characterize conditions for the controller gain to suppress chaos.
title Boundary Control for Suppressing Chaotic Response to Dynamic Hydrogen Blending in a Gas Pipeline
topic Dynamical Systems
Optimization and Control
Chaotic Dynamics
Fluid Dynamics
url https://arxiv.org/abs/2311.04407