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Acoustic design of boundary segments in aircraft fuselages using topology optimization and a specialized acoustic pressure function

机译:使用拓扑优化和专用声压功能的飞机机身边界段声学设计

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In most aviation applications, a major cost benefit can be achieved by a reduction of the system weight. Often the acoustic properties of the fuselage structure are not in the focus of the primary design process, too. A final correction of poor acoustic properties is usually done using insulation mats in the chamber between the primary and secondary shell. It is plausible that a more sophisticated material distribution in that area can result in a substantially reduced weight. Topology optimization is a well-known approach to reduce material of compliant structures. In this paper an adaption of this method to acoustic problems is investigated. The gap full of insulation mats is suitably parameterized to achieve different material distributions. To find advantageous configurations, the objective in the underlying topology optimization is chosen to obtain good acoustic pressure patterns in the aircraft cabin. An important task in the optimization is an adequate Finite Element model of the system. This can usually not be obtained from commercially available programs due to the lack of special sensitivity data with respect to the design parameters. Therefore an appropriate implementation of the algorithm has been done, exploiting the vector and matrix capabilities in the MATLAB? environment. Finally some new aspects of the Finite Element implementation will also be presented, since they are interesting on its own and can be generalized to efficiently solve other partial differential equations as well.
机译:在大多数航空应用中,通过减少系统重量,可以实现重大的成本效益。通常,机身结构的声学特性也不是主要设计过程的焦点。通常在初级和二次壳之间使用腔室中的绝缘垫进行差的声学性质的最终校正。它是合理的,在该区域中更复杂的材料分布可能导致大幅减轻的重量。拓扑优化是一种众所周知的方法,可以减少符合符合结构的结构。本文研究了这种方法对声学问题的适应。充满保温垫的间隙适当地参数化以实现不同的材料分布。为了找到有利的配置,选择了基础拓扑优化的目标以在飞机舱中获得良好的声压图案。优化中的一个重要任务是系统的适当有限元模型。这通常不能从商业上可获得的程序获得,因为缺乏关于设计参数的特殊灵敏度数据。因此,已经完成了算法的适当实现,利用MATLAB中的向量和矩阵功能进行了完成?环境。最后还将提出有限元实现的一些新方面,因为它们是有趣的,并且可以推广以有效地解决其他偏差方程。

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