Fan Ying, Honarvar Farhang, Sinclair Anthony N, Jafari Mohammad-Reza
Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario M5S 3G8, Canada.
J Acoust Soc Am. 2003 Jan;113(1):102-13. doi: 10.1121/1.1525289.
When an immersed solid elastic cylinder is insonified by an obliquely incident plane acoustic wave, some of the resonance modes of the cylinder are excited. These modes are directly related to the incidence angle of the insonifying wave. In this paper, the circumferential resonance modes of such immersed elastic cylinders are studied over a large range of incidence angles and frequencies and physical explanations are presented for singular features of the frequency-incidence angle plots. These features include the pairing of one axially guided mode with each transverse whispering gallery mode, the appearance of an anomalous pseudo-Rayleigh in the cylinder at incidence angles greater than the Rayleigh angle, and distortional effects of the longitudinal whispering gallery modes on the entire resonance spectrum of the cylinder. The physical explanations are derived from Resonance Scattering Theory (RST), which is employed to determine the interior displacement field of the cylinder and its dependence on insonification angle.
当一个浸没在液体中的固体弹性圆柱体被倾斜入射的平面声波照射时,圆柱体会激发一些共振模式。这些模式与入射波的入射角直接相关。本文研究了这种浸没弹性圆柱体在大范围入射角和频率下的圆周共振模式,并对频率-入射角图的奇异特征给出了物理解释。这些特征包括一个轴向导波模式与每个横向回音壁模式的配对、在入射角大于瑞利角时圆柱体中出现异常伪瑞利波以及纵向回音壁模式对圆柱体整个共振谱的畸变效应。这些物理解释源自共振散射理论(RST),该理论用于确定圆柱体的内部位移场及其对入射角度的依赖性。