Department of Civil Engineering and Engineering Mechanics, University of Arizona, Tucson, Arizona 85721, USA.
J Acoust Soc Am. 2012 Aug;132(2):718-27. doi: 10.1121/1.4730895.
The ultrasonic field generated by a point focused acoustic lens placed in a fluid medium adjacent to a solid half-space, containing one or more spherical cavities, is modeled. The semi-analytical distributed point source method (DPSM) is followed for the modeling. This technique properly takes into account the interaction effect between the cavities placed in the focused ultrasonic field, fluid-solid interface and the lens surface. The approximate analytical solution that is available in the literature for the single cavity geometry is very restrictive and cannot handle multiple cavity problems. Finite element solutions for such problems are also prohibitively time consuming at high frequencies. Solution of this problem is necessary to predict when two cavities placed in close proximity inside a solid can be distinguished by an acoustic lens placed outside the solid medium and when such distinction is not possible.
研究了置于固体半空间中含有一个或多个球形空穴的邻近流体内的点聚焦超声透镜所产生的超声场。采用分布式点源法对该模型进行了半解析处理。该技术适当考虑了置于聚焦超声场、流固界面和透镜表面的空穴之间的相互作用。文献中对于单个空穴几何结构的近似解析解非常局限,无法处理多个空穴问题。对于高频情况,此类问题的有限元解也非常耗时。解决该问题有助于预测当两个空穴置于固体内部近距离时,外部的声学透镜是否能够区分这两个空穴,以及何时无法区分。