Hahn Thomas R
University of Miami, RSMAS, AMP, 4600 Rickenbacker Causeway, Miami, Florida 33149, USA.
J Acoust Soc Am. 2007 Dec;122(6):3252-67. doi: 10.1121/1.2793610.
The determination of the acoustic field scattered by an underwater assembly of gas bubbles or similar resonant monopole scatterers is of considerable theoretical and practical interest. This problem is addressed from a theoretical point of view within the framework of the effective medium theory for the case of spherically shaped assemblages. Although being valid more generally, the effective medium theory is an ideal instrument to study multiple scattering effects such as low frequency collective resonances, acoustically coupled breathing modes of the entire assembly. Explicit expressions for the scattering amplitude and cross sections are derived, as well as closed form expressions for the resonance frequency and spectral shape of the fundamental collective mode utilizing analytical S-matrix methods. This approach allows, in principle, a simultaneous inversion for the assembly radius and void fraction directly from the scattering cross sections. To demonstrate the validity of the approach, the theory is applied to the example of idealized, spherically shaped schools of swim bladder bearing fish. The analytic results of the theory are compared to numerical first-principle benchmark computations and excellent agreement is found, even for densely packed schools and frequencies across the bladder resonance.
确定由气泡水下集合体或类似的共振单极散射体所散射的声场具有相当大的理论和实际意义。在有效介质理论的框架内,从理论角度针对球形集合体的情况来处理这个问题。尽管有效介质理论更具一般性,但它是研究诸如低频集体共振、整个集合体的声学耦合呼吸模式等多重散射效应的理想工具。推导了散射振幅和截面的显式表达式,以及利用解析S矩阵方法得到的基本集体模式的共振频率和频谱形状的封闭形式表达式。原则上,这种方法允许直接从散射截面同时反演集合体半径和空隙率。为了证明该方法的有效性,将该理论应用于理想化的、球形的有鱼鳔鱼群的例子。将该理论的解析结果与数值第一性原理基准计算进行比较,发现即使对于密集排列的鱼群以及跨越鱼鳔共振的频率,二者也有很好的一致性。