Jan Aasim Ullah, Porter R
Department of Mathematics, The Commission on Science and Technology for Sustainable Development in the South, Institute of Information Technology, Islamabad, Pakistan.
School of Mathematics, University Walk, University of Bristol, Bristol, BS8 1TW, United Kingdom.
J Acoust Soc Am. 2018 Dec;144(6):3172. doi: 10.1121/1.5080558.
The reflection and transmission of acoustic waves along a waveguide of uniform width by a metamaterial cavity is considered. The metamaterial is comprised of a closely spaced array of micro-channels separated by thin plates between which the field may be damped. Exact equations governing the field in the microstructured metamaterial cavity are replaced by an effective field using the homogenisation approach. This allows a solution to be formulated in terms of an integral equation across the interface between the metamaterial cavity and the waveguide. Attention focuses on the resonant and damping effects of a metamaterial cavity of tapered height where rainbow trapping phenomena are encountered. It is shown that near-perfect broadbanded absorption of the incoming wave energy can be achieved.
研究了声波在具有均匀宽度的波导中通过超材料腔的反射和传输。该超材料由紧密排列的微通道阵列组成,微通道由薄板隔开,薄板之间的场可能会被衰减。利用均匀化方法,用有效场代替了控制微结构超材料腔中场的精确方程。这使得可以根据超材料腔与波导之间界面上的积分方程来制定解决方案。重点关注遇到彩虹捕获现象的高度渐变的超材料腔的共振和阻尼效应。结果表明,可以实现对入射波能量近乎完美的宽带吸收。