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The design of Helmholtz resonator based acoustic lenses by using the symmetric Multi-Level Wave Based Method and genetic algorithms

机译:利用基于对称多电平波的方法和遗传算法设计基于亥姆霍兹共振器的声透镜

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摘要

Sonic crystals can be used as acoustic lenses in certain frequencies and the design of such systems by creating vacancies and using genetic algorithms has been proven to be an effective method. So far, rigid cylinders have been used to create such acoustic lens designs. On the other hand, it has been proven that Helmholtz resonators can be used to construct acoustic lenses with higher refraction index as compared to rigid cylinders, especially in low frequencies by utilizing their local resonances. In this paper, these two concepts are combined to design acoustic lenses that are based on Helmholtz resonators. The Multi-Level Wave Based Method is used as the prediction method. The benefits of the method in the context of design procedure are demonstrated. In addition, symmetric boundary conditions are derived for more efficient calculations. The acoustic lens designs that use Helmholtz resonators are compared with the acoustic lens designs that use rigid cylinders. It is shown that using Helmholtz resonator based sonic crystals leads to better acoustic lens designs, especially at the low frequencies where the local resonances are pronounced.
机译:声波晶体可以在某些频率下用作声透镜,通过创建空位并使用遗传算法设计此类系统已被证明是一种有效的方法。到目前为止,已经使用刚性圆柱体来创建这种声透镜设计。另一方面,已经证明,与刚性圆柱体相比,亥姆霍兹谐振器可用于构造具有更高折射率的声透镜,尤其是在低频中,通过利用它们的局部谐振。在本文中,将这两个概念结合起来以设计基于亥姆霍兹共振器的声透镜。基于多级波的方法用作预测方法。演示了该方法在设计过程中的好处。另外,导出对称边界条件以进行更有效的计算。将使用亥姆霍兹共鸣器的声学透镜设计与使用刚性圆柱体的声学透镜设计进行了比较。结果表明,使用基于亥姆霍兹共振器的声波晶体可以更好地设计声透镜,尤其是在低频下,局部共振明显。

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