English

Exponential Stability and Supporting Spectral Analysis of a Linearized Compressible Flow-Structure PDE Model

Analysis of PDEs 2017-12-11 v1

Abstract

In this work, a result of exponential stability is obtained for solutions of a compressible flow-structure partial differential equation (PDE) model which has recently appeared in the literature. In particular, a compressible flow PDE and its associated state equation for the associated pressure variable, each evolving within a three dimensional domain O\mathcal{O}, are coupled to a fourth order plate equation which holds on a flat portion % \Omega of the boundary O\partial \mathcal{O}. Moreover, since this coupled PDE model is the result of a linearization of the compressible Navier-Stokes equations about an arbitrary state, the flow PDE component contains a generally nonzero ambient flow profile U\mathbf{U}. By way of obtaining the aforesaid exponential stability, a \textquotedblleft frequency domain\textquotedblright\ approach is adopted here, an approach which is predicated on obtaining a uniform estimate on the resolvent of the associated flow-structure semigroup generator.

Keywords

Cite

@article{arxiv.1712.02852,
  title  = {Exponential Stability and Supporting Spectral Analysis of a Linearized Compressible Flow-Structure PDE Model},
  author = {George Avalos and Pelin G. Geredeli},
  journal= {arXiv preprint arXiv:1712.02852},
  year   = {2017}
}
R2 v1 2026-06-22T23:11:44.824Z