Numerical Modelling of Fluid-Structure Interaction for Thermal Buckling in Hypersonic Flow

Author:

Martin Katharina,Daub Dennis,Esser Burkard,Gülhan Ali,Reese Stefanie

Abstract

AbstractExperiments have shown that a high-enthalpy flow field might lead under certain mechanical constraints to buckling effects and plastic deformation. The panel buckling into the flow changes the flow field causing locally increased heating which in turn affects the panel deformation. The temperature increase due to aerothermal heating in the hypersonic flow causes the metallic panel to buckle into the flow. To investigate these phenomena numerically, a thermomechanical simulation of a fluid-structure interaction (FSI) model for thermal buckling is presented. The FSI simulation is set up in a staggered scheme and split into a thermal solid, a mechanical solid and a fluid computation. The structural solverAbaqusand the fluid solverTAUfrom the German Aerospace Center (DLR) are coupled within the FSI codeiflsdeveloped at the Institute of Aircraft Design and Lightweight Structures (IFL) at TU Braunschweig. The FSI setup focuses on the choice of an equilibrium iteration method, the time integration and the data transfer between grids. To model the complex material behaviour of the structure, a viscoplastic material model with linear isotropic hardening and thermal expansion including material parameters, which are nonlinearly dependent on temperature, is used.

Publisher

Springer International Publishing

Reference31 articles.

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Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Experiments on aerothermoelastic fluid–structure interaction in hypersonic flow;Journal of Sound and Vibration;2022-08

2. Experiments on Aerothermal Supersonic Fluid-Structure Interaction;Notes on Numerical Fluid Mechanics and Multidisciplinary Design;2020-10-27

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