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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Bandgap calculation of two-dimensional mixed solid-fluid phononic crystals by Dirichlet-to-Neumann maps
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Bandgap calculation of two-dimensional mixed solid-fluid phononic crystals by Dirichlet-to-Neumann maps

机译:用Dirichlet-to-Neumann映射计算二维混合固液声子晶体的带隙

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摘要

A numerical method based on the Dirichlet-to-Neumann (DtN) map is presented to compute the bandgaps of two-dimensional phononic crystals, which are composed of square or triangular lattices of circular solid cylinders in a fluid matrix. The DtN map is constructed using the cylindrical wave expansion in a unit cell. A linear eigenvalue problem, which depends on the Bloch wave vector and involves relatively small matrices, is formulated. Numerical calculations are performed for typical systems with various acoustic impedance ratios of the solid inclusions and the fluid matrix. The results indicate that the DtN-map based method can provide accurate results for various systems efficiently. In particular it takes into account the fluid-solid interface conditions and the transverse wave mode in the solid component, which has been proven to be significant when the acoustic impedance of the solid inclusions is close to or smaller than that of the fluid matrix. For systems with an acoustic impedance of the inclusion much less than that of the matrix, physical flat bands appear in the band structures, which will be missed if the transverse wave mode in the solid inclusions is neglected.
机译:提出了一种基于Dirichlet-to-Neumann(DtN)映射的数值方法来计算二维声子晶体的带隙,该声子晶体由圆形固体圆柱体的正方形或三角形晶格组成。 DtN图是使用单位单元中的圆柱波展开构造的。提出了一个线性特征值问题,该问题取决于Bloch波矢量,并且涉及相对较小的矩阵。对于具有固体夹杂物和流体基质的各种声阻抗比的典型系统,进行了数值计算。结果表明,基于DtN-map的方法可以有效地为各种系统提供准确的结果。特别地,它考虑了固体中的流体-固体界面条件和横波模式,当固体夹杂物的声阻抗接近或小于流体基体的声阻抗时,这已被证明是重要的。对于夹杂物的声阻抗远小于基体的声阻抗的系统,在带结构中会出现物理平坦的带,如果忽略了固体夹杂物中的横波模式,则会漏掉。

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