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Numerical analysis of blast-induced wave propagation using FSI and ALEmulti-material formulations
Authors:Mehdi Sotudeh Chafi   Ghodrat Karami  Mariusz Ziejewski
Affiliation:aDepartment of Mechanical Engineering and Applied Mechanics, North Dakota State University, Dolve 106, Fargo, ND 58108-6050, USA
Abstract:As explosive blasts continue to cause casualties in both civil and military environments, there is a need to identify the dynamic interaction of blast loading with structures, to know the shock mitigating mechanisms and, most importantly, to identify the mechanisms of blast trauma. This paper examines the air-blast simulation using Arbitrary Lagrangian Eulerian (ALE) multi-material formulation. It will explain how the fluid–structure interaction (FSI) can be simulated using a coupling algorithm for the treatment of the fluid as a moving media by a moving mesh using ALE formulation and how the structure is treated on a deformable mesh using a Lagrangian formulation. To validate the numerical approach, as well as to prove its ability to simulate complicated scenarios, comparison of three distinct blast scenarios, i.e., blast from C-4 and TNT in open space and blast on a circular steel plate, with the experimental data was performed. The predicted numerical results match very well with those of experiments. This computational approach is able to accurately predict the relevant aspects of the blast–structure interaction problem, including the blast wave propagation in the medium and the response of the structure to blast loading.
Keywords:Blast   Arbitrary Lagrangian Eulerian   Multi-material   Fluid–  structure interaction   Wave propagation
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