Design Optimization for Structural-Acoustic Problems Using FEA-BEA With Adjoint Variable Method
نویسندگان
چکیده
A noise-vibration-harshness (NVH) design optimization of a complex vehicle structure is presented using finite element and boundary element analyses. The steady-state dynamic behavior of the vehicle is calculated from the frequency response finite element analysis, while the sound pressure level within the acoustic cavity is calculated from the boundary element analysis. A reverse solution process is employed for the design sensitivity calculation using the adjoint variable method. The adjoint load is obtained from the acoustic boundary element re-analysis, while the adjoint solution is calculated from the structural dynamic re-analysis. The evaluation of pressure sensitivity only involves a numerical integration process over the structural part where the design variable is defined. A design optimization problem is formulated and solved, where the structural weight is reduced while the noise level in the passenger compartment is lowered. @DOI: 10.1115/1.1701879#
منابع مشابه
Design Optimization of Structural Acoustic Problems Using Fem-bem
A design optimization procedure of a noise-vibrationharshness (NVH) problem of a complicated vehicle structure is presented by assuming the acoustic pressure does not affect the structural vibration. The steady-state dynamic behavior of the vehicle is calculated from the frequency response finite element analysis, while the sound pressure level within the acoustic cavity is calculated from the ...
متن کاملDesign Sensitivity Analysis and Optimization of High Frequency Radiation Problems Using Energy Finite Element Method and Energy Boundary Element Method
This paper presents a continuum design sensitivity analysis (DSA) and optimization of high frequency radiation problems using the Energy Finite Element Method (EFEM) and Energy Boundary Element Method (EBEM). The noise radiated from the vibrating structure at a high frequency range is obtained through a sequential procedure. The structural EFEM calculates structural energy distribution, which i...
متن کاملParametric Design Sensitivity Analysis of High Frequency Structural- Acoustic Problems Using Energy Finite Element Method
A design sensitivity analysis of high frequency structuralacoustic problem is formulated and presented. The Energy Finite Element Method (EFEM) is used to predict the structuralacoustic responses in high frequency range, where the coupling between the structural and acoustic domain are modeled by using radiation efficiency. The continuum design sensitivity formulation is derived from the govern...
متن کاملOptimum Structural Design with Discrete Variables Using League Championship Algorithm
In this paper a league championship algorithm (LCA) is developed for structural optimization where the optimization variables are of discrete type and the set of the values possibly obtained by each variable is also given. LCA is a relatively new metaheuristic algorithm inspired from sport championship process. In LCA, each individual can choose to approach to or retreat from other individuals ...
متن کاملLevel Set-based Topology Optimization of Acoustic Metamaterials
1. Abstract This paper discusses a topology optimization method for the design of acoustic metamaterials that exhibit negative bulk modulus, using level set-based boundary expression. The purpose of the optimization problem here is to find optimal configurations of acoustic metamaterial unit cells composed of rubber and epoxy that achieve a negative effective bulk modulus. The presence of grays...
متن کامل