Chu Dezhang, Stanton Timothy K, Pierce Allan D
Department of Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543-1053, USA.
J Acoust Soc Am. 2007 Dec;122(6):3177-94. doi: 10.1121/1.2783001.
A cw solution of acoustic diffraction by a three-sided semi-infinite barrier or a double edge, where the width of the midplanar segment is finite and cannot be ignored, involving all orders of diffraction is presented. The solution is an extension of the asymptotic formulas for the double-edge second-order diffraction via amplitude and phase matching given by Pierce [A. D. Pierce, J. Acoust. Soc. Am. 55, 943-955 (1974)]. The model accounts for all orders of diffraction and is valid for all kw, where k is the acoustic wave number and w is the width of the midplanar segment and reduces to the solution of diffraction by a single knife edge as w-->0. The theory is incorporated into the deformed edge solution [Stanton et al., J. Acoust. Soc. Am. 122, 3167 (2007)] to model the diffraction by a disk of finite thickness, and is compared with laboratory experiments of backscattering by elastic disks of various thicknesses and by a hard strip. It is shown that the model describes the edge diffraction reasonably well in predicting the diffraction as a function of scattering angle, edge thickness, and frequency.
本文给出了一种关于三边半无限屏障或双边的声衍射的连续波(cw)解,其中中间平面段的宽度是有限的且不可忽略,该解涉及所有阶次的衍射。此解是对皮尔斯(Pierce)[A. D. Pierce, J. Acoust. Soc. Am. 55, 943 - 955 (1974)]通过幅度和相位匹配给出的双边二阶衍射渐近公式的扩展。该模型考虑了所有阶次的衍射,对所有的kw均有效,其中k是声波数,w是中间平面段的宽度,并且当w→0时简化为单刃衍射的解。该理论被纳入变形边缘解[Stanton等人,J. Acoust. Soc. Am. 122, 3167 (2007)]中,以对有限厚度圆盘的衍射进行建模,并与各种厚度弹性圆盘和硬条的后向散射实验室实验进行比较。结果表明,该模型在预测作为散射角、边缘厚度和频率函数的衍射时,能较好地描述边缘衍射。