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Structural-acoustic optimum design of shell structures in open/closed space based on a free-form optimization method

机译:基于自由形式优化方法的开/闭空间壳体结构的声学优化设计

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Noise reduction by structural geometry optimization has attracted much attention among designers. In the present work, we propose a free-form optimization method for the structural-acoustic design optimization of shell structures to reduce the noise of a targeted frequency or frequency range in an open or closed space. The objective of the design optimization is to minimize the average structural vibration-induced sound pressure at the evaluation points in the acoustic field under a volume constraint. For the shape design optimization, we carry out structural-acoustic coupling analysis and adjoint analysis to calculate the shape gradient functions. Then, we use the shape gradient functions in velocity analysis to update the shape of shell structures. We repeat this process until convergence is confirmed to obtain the optimum shape of the shell structures in a structural-acoustic coupling system. The numerical results for the considered examples showed that the proposed design optimization process can significantly reduce the noise in both open and closed spaces. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过结构几何优化来降低噪声已引起设计人员的广泛关注。在目前的工作中,我们提出了一种用于壳体结构的结构声学设计优化的自由形式优化方法,以减少目标频率或开放或封闭空间中的频率范围的噪声。设计优化的目的是在体积约束下最小化声场中评估点处的平均结构振动感应声压。为了优化形状设计,我们进行了结构声耦合分析和伴随分析,以计算形状梯度函数。然后,我们在速度分析中使用形状梯度函数来更新壳结构的形状。我们重复此过程,直到确认收敛,以在结构声耦合系统中获得壳结构的最佳形状。所考虑示例的数值结果表明,所提出的设计优化过程可以显着降低开放空间和封闭空间中的噪声。 (C)2015 Elsevier Ltd.保留所有权利。

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