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Structural-Acoustic Design Sensitivity Analysis based on Direct Differentiation Method with Different Element Types

机译:基于不同元素类型直接差分法的结构声学设计灵敏度分析

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摘要

Engineers have started to develop ways to decrease noise radiation. Structural-acoustic design sensitivity analysis can provide information on how changes in design variable affect the radiated acoustic performance. As such, it is an important step in the structural-acoustic design and in optimization processes. For thin structures immersed in water, a full interaction between the structural domain and the fluid domain needs to be taken into account. In this work, the finite element method is used to model the structure parts and the boundary element method is applied to the exterior acoustic problem. The formula of the sound pressure sensitivity based on the direct differentiation method is presented. The design variable can be chosen as the material parameters, structure and fluid parameters, such as the fluid density, structural density, Poisson's ratio, Young's modulus, structural shape size and so on. Numerical examples are presented to demonstrate the validity of the proposed algorithm. Different types elements are used for the numerical solution, and the performance of different types of FE/BE element is presented and compared.
机译:工程师已经开始研究减少噪声辐射的方法。结构声学设计灵敏度分析可以提供有关设计变量的变化如何影响辐射声学性能的信息。因此,这是结构声学设计和优化过程中的重要一步。对于浸入水中的薄结构,需要考虑结构域和流体域之间的充分相互作用。在这项工作中,使用有限元方法对结构部件进行建模,并将边界元方法应用于外部声学问题。提出了基于直接微分法的声压灵敏度公式。设计变量可以选择为材料参数,结构和流体参数,例如流体密度,结构密度,泊松比,杨氏模量,结构形状尺寸等。数值例子表明了该算法的有效性。不同类型的元素用于数值解,并介绍和比较了不同类型的FE / BE元素的性能。

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