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首页> 外文期刊>The Journal of the Acoustical Society of America >Comparisons of two effective medium approaches for predicting sound scattering by periodic arrays of elastic shells
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Comparisons of two effective medium approaches for predicting sound scattering by periodic arrays of elastic shells

机译:两种通过弹性壳周期阵列预测声音散射的有效介质方法的比较

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摘要

Two effective medium models are presented and used to predict complex reflection and transmission coefficients of finite periodic arrays of resonant elastic shells as well as their effective density and bulk modulus at low frequencies. Comparisons with full multiple scattering theory and measurements show that the self-consistent model fails to correctly predict the shape of the transmission/reflection curves when scatterer resonances are close to the first Bragg bandgap. The low frequency grating model, which neglects the evanescent modes and considers scattered wave propagation only in the same direction as the incident one, gives a much better agreement with both measurements and the full multiple scattering theory. Moreover, because it does not require the wavelength to strongly exceed the size of scatterers, the model gives reliable predictions even at frequencies around the first periodicity related bandgap. In contrast to the self-consistent model, the low frequency grating model is applicable when the resonant scatterers have more than two low frequency resonances.
机译:提出了两个有效的介质模型,并用于预测共振弹性壳的有限周期阵列的复杂反射和透射系数,以及它们在低频下的有效密度和体积模量。与全倍散射理论和测量结果的比较表明,当散射共振接近第一个布拉格带隙时,自洽模型无法正确预测透射/反射曲线的形状。低频光栅模型忽略了渐逝模式,只考虑了与入射方向相同的方向上的散射波传播,这与测量和全多次散射理论都具有更好的一致性。此外,由于不需要波长强烈超过散射体的大小,因此该模型即使在与第一周期性相关的带隙附近的频率下也能提供可靠的预测。与自洽模型相反,当共振散射体具有两个以上的低频共振时,可应用低频光栅模型。

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