Frommelt Thomas, Gogel Daniel, Kostur Marcin, Talkner Peter, Hänggi Peter, Wixforth Achim
Universität Augsburg, Institut für Physik, Augsburg, Germany.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Oct;55(10):2298-305. doi: 10.1109/TUFFC.928.
This work presents an approach for determining the streaming patterns that are generated by Rayleigh surface acoustic waves in arbitrary 3-D geometries by finite element method (FEM) simulations. An efficient raytracing algorithm is applied on the acoustic subproblem to avoid the unbearable memory demands and computational time of a conventional FEM acoustics simulation in 3-D. The acoustic streaming interaction is modeled by a body force term in the Stokes equation. In comparisons between experiments and simulated flow patterns, we demonstrate the quality of the proposed technique.
这项工作提出了一种通过有限元方法(FEM)模拟来确定由瑞利表面声波在任意三维几何结构中产生的流动模式的方法。一种高效的光线追踪算法应用于声学子问题,以避免传统三维有限元声学模拟难以承受的内存需求和计算时间。声流相互作用通过斯托克斯方程中的体力项进行建模。在实验与模拟流动模式的比较中,我们展示了所提出技术的质量。