Department of Mechanical and Nuclear Engineering, Kansas State University, 3031 Rathbone Hall, Manhattan, Kansas 66506, USA.
J Acoust Soc Am. 2011 Jan;129(1):12-23. doi: 10.1121/1.3500687.
A computational procedure for analyzing acoustical scattering by multilayer concentric spherical scatterers having an arbitrary mixture of acoustic and elastic materials is proposed. The procedure is then used to analyze the scattering by a spherical scatterer consisting of a solid shell and a solid core encasing an electrorheological (ER) fluid layer, and the tunability in the scattering characteristics afforded by the ER layer is explored numerically. Tunable scatterers with two different ER fluids are analyzed. One, corn starch in peanut oil, shows that a significant increase in scattering cross-section is possible in moderate frequencies. Another, fine poly-methyl methacrylate (PMMA) beads in dodecane, shows only slight change in scattering cross-sections overall. But, when the shell is thin, a noticeable local resonance peak can appear near ka=1, and this resonance can be turned on or off by the external electric field.
提出了一种分析具有任意声学和弹性材料混合的多层同心球形散射体的声学散射的计算程序。然后,该程序用于分析由固体壳和固体核包围电流变(ER)流体层组成的球形散射体的散射,并通过数值方法探索 ER 层赋予的散射特性的可调谐性。分析了两种不同 ER 流体的可调散射体。一种是花生油中的玉米淀粉,表明在中等频率下可能会显著增加散射截面。另一种是十二烷中的细聚甲基丙烯酸甲酯(PMMA)珠,整体散射截面变化不大。但是,当壳层较薄时,在 ka=1 附近可能会出现明显的局部共振峰,并且可以通过外部电场打开或关闭此共振。