Partitioned Co-Simulation for CAD-integrated Vibroacoustic Problems in Unbounded Domains

📅 2026-09-14
📈 Citations: 0
Influential: 0
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🤖 AI Summary
本文提出一种分区协同仿真框架,结合IBRA结构求解器与IGA-BEM声学求解器,解决CAD集成振动声学问题,扩展了复杂值接口量的收敛加速器。
📝 Abstract
Vibroacoustic analysis often requires coupling structural and acoustic solvers based on different numerical formulations and discretizations, making monolithic implementations intrusive and limiting software modularity and reuse. This work presents a partitioned co-simulation framework for exterior vibroacoustic analysis that couples an Isogeometric boundary representation analysis (IBRA) structural solver with an isogeometric boundary element method (IGA-BEM) acoustic solver. The methodology operates directly on the computer-aided design (CAD) boundary representation, preserving the exact geometry throughout the analysis and supporting both weak and strong coupling between non-conforming discretizations. A key contribution is the extension of the Aitken dynamic relaxation and Interface Quasi-Newton with Inverse Least-Squares (IQN-ILS) convergence accelerators to complex-valued interface quantities, allowing the coupling iterations to account directly for both amplitude and phase information. The approach is validated using one-way and two-way coupled vibroacoustic benchmark problems involving thin-shell structures and exterior acoustic domains. The results show excellent agreement with monolithic reference solutions, while the proposed complex-valued convergence accelerators improve the robustness and convergence behavior of the strongly coupled solution procedure without compromising solution accuracy. These results demonstrate that the proposed approach provides an accurate, robust, and modular approach for CAD-integrated frequency-domain vibroacoustic analysis.
Problem

Research questions and friction points this paper is trying to address.

Vibroacoustic Analysis
Partitioned Co-Simulation
CAD Integration
Unbounded Domains
Isogeometric Analysis
Innovation

Methods, ideas, or system contributions that make the work stand out.

partitioned co-simulation
isogeometric analysis
convergence accelerators
complex-valued interface quantities
non-conforming discretizations
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J. I. Camarotti
Chair of Structural Analysis, Technical University of Munich, Arcisstr. 21, 80333 München, Germany
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P. Le
Department of Mechanical Engineering, Campus Diepenbeek, KU Leuven, Wetenschapspark 27, Diepenbeek, B-3590, Belgium
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Y. Cai
Department of Mechanical Engineering, KU Leuven, Celestijnenlaan 300, B-3001, Heverlee, Belgium
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R. Aristio
Chair of Structural Analysis, Technical University of Munich, Arcisstr. 21, 80333 München, Germany
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D. Panagiotopoulos
Department of Mechanical Engineering, Campus De Nayer, KU Leuven, Jan Pieter de Nayerlaan 5, B-2680, St. Katelijne Waver, Belgium
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R. Wüchner
Chair of Structural Analysis, Technical University of Munich, Arcisstr. 21, 80333 München, Germany
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E. Deckers
Department of Mechanical Engineering, Campus Diepenbeek, KU Leuven, Wetenschapspark 27, Diepenbeek, B-3590, Belgium