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首页> 外文期刊>Journal of computational acoustics >Methodology for the Design of the Geometry of a Cavity and Its Absorption Coefficients as Random Design Variables Under Vibroacoustic Criteria
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Methodology for the Design of the Geometry of a Cavity and Its Absorption Coefficients as Random Design Variables Under Vibroacoustic Criteria

机译:振动声准则下腔的几何形状及其吸收系数作为随机设计变量的设计方法

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摘要

Reducing the noise level in the acoustic cavities is the important problem when treating inflight conditions of commercial planes or boats. Shape optimization of the acoustic cavity that will take into account the geometrical and material uncertainties, arising during the manufacturing process, is presented in this paper. The noise level is controlled by minimizing the energy density in the cavity, obtained through an energy method called Simplified Energy Method. Such formulation is based on our previous published work where transformation function mapping 3D cavity surface on a 2D domain was proposed. The optimization process directly relies on this function and thus avoids remeshing of the geometry. Robust optimization is performed using the nondominated sorting genetic algorithm (NSGA-II) together with the Kriging surrogate model. Influence of geometrical and material characteristics on the optimal solution is identified.
机译:当处理商用飞机或船只的飞行条件时,降低声腔中的噪声水平是重要的问题。本文介绍了声腔的形状优化,其中将考虑制造过程中出现的几何和材料不确定性。通过最小化腔体中的能量密度来控制噪声水平,腔体中的能量密度是通过称为简化能量法的能量方法获得的。这种表述是基于我们以前发表的工作,其中提出了在2D域上映射3D腔表面的变换函数。优化过程直接依赖于此功能,因此避免了重新几何化。使用非主导排序遗传算法(NSGA-II)和Kriging替代模型进行鲁棒优化。确定了几何和材料特性对最佳解决方案的影响。

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