Abstract
The sound propagation in a wedge-shaped waveguide with perfectly reflecting boundaries is one of the few range-dependent problems with an analytical solution. This provides a benchmark for the theoretical and computational studies on the simulation of ocean acoustic applications. We present a direct finite volume method (FVM) simulation for the ideal wedge problem, and both time and frequency domain results are analyzed. We also study the broadband problem with large-scale parallel simulations. The results presented in this paper validate the accuracy of the numerical techniques and show that the direct FVM simulation could be applied to large-scale complex acoustic applications with a high performance computing platform.
Cite
CITATION STYLE
Ji, H., Xu, X., Guo, X., Ye, S., Chen, J., & Yang, X. (2016). Direct FVM Simulation for Sound Propagation in an Ideal Wedge. Shock and Vibration, 2016. https://doi.org/10.1155/2016/3703974
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