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Fluid-structure interaction modeling with nonmatching interface discretizations for compressible flow problems: Computational framework and validation study

delete2022-12-31
delete6
PRE
AI
M
Manoj R. Rajanna
E
Emily L. Johnson
刘宁 (Ning Liu)
A
Artem Korobenko
Y
Yuri Bazilevs
M
Ming‐Chen Hsu *
DOI:10.1142/S0218202522500592delete
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Abstract

Abstract

En 中文
This work presents a strongly-coupled fluid-structure interaction (FSI) formulation for compressible flows that is developed based on an augmented Lagrangian approach. The method is suitable for handling problems that involve nonmatching fluid-structure interface discretizations. In this work, the fluid is modeled using a stabilized finite element method for the Navier-Stokes equations of compressible flows and is coupled to the structure, which is formulated using isogeometric Kirchhoff-Love shells. The strongly-coupled system is solved using a block-iterative approach. The proposed method is validated using two compressible flow benchmark problems to assess the accuracy of the developed formulation.
Keywords:
Compressible flow
fluid-structure interaction
nonmatching interface
isogeometric analysis
Kirchhoff-Love shell

Journal

Mathematical Models and Methods in Applied Sciences cover
Mathematical Models and Methods in Applied Sciences
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3
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2.2K
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