Mursaline Miad Al, Stanton Timothy K, Lavery Andone C
Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543, USA.
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Acoust Soc Am. 2024 Oct 1;156(4):2106-2118. doi: 10.1121/10.0028677.
Bistatic laboratory measurements are presented for acoustic scattering from both smooth and rough elastic cylinders insonified by directional spherical waves. A scattering model, accounting for incident directional spherical waves while assuming negligible end effects, was derived in a previous article [Mursaline, Stanton, Lavery, and Fischell, J. Acoust. Soc. Am. 154, 307-322 (2023)] but only evaluated for monostatic scattering by smooth cylinders. The evaluation is extended here to bistatic geometries for both smooth and rough cylinders. The effect of axi-symmetric Gaussian roughness (axi-symmetric random variations in cylinder radius) on the cylinder on overall scattering levels and resonances is investigated. Particular emphasis is given to the influence of roughness on the excitation of axially propagating guided wave resonances associated with oblique incident angles. Bistatic laboratory observations presented herein further substantiate the effects on scattering due to the properties of the incident field from practical sonars, such as spherical spreading, as observed in the above-mentioned article. For smooth cylinders, axially propagating guided wave resonances are seen to become more prominent during bistatic in-plane scattering compared to bistatic orthogonal-plane scattering and previously published monostatic data. For rough cylinders, both overall scattering levels and resonances are found to be diminished compared to the smooth case.
本文给出了定向球面波照射下光滑和粗糙弹性圆柱的声散射双基地实验室测量结果。在前一篇文章[Mursaline、Stanton、Lavery和Fischell,《美国声学学会杂志》154, 307 - 322 (2023)]中推导了一个散射模型,该模型考虑了入射定向球面波,同时假设端部效应可忽略不计,但仅对光滑圆柱的单基地散射进行了评估。在此将评估扩展到光滑和粗糙圆柱的双基地几何结构。研究了轴对称高斯粗糙度(圆柱半径的轴对称随机变化)对圆柱整体散射水平和共振的影响。特别强调粗糙度对与斜入射角相关的轴向传播导波共振激发的影响。本文给出的双基地实验室观测结果进一步证实了如上述文章中所观察到的,实际声纳入射场特性(如球面扩展)对散射的影响。对于光滑圆柱,与双基地正交平面散射和先前发表的单基地数据相比,轴向传播导波共振在双基地平面内散射过程中显得更为突出。对于粗糙圆柱,与光滑情况相比,整体散射水平和共振均有所降低。