Application of a Spectral Method to Simulate Quasi-Three-Dimensional Underwater Acoustic Fields
Houwang Tu, Yongxian Wang, Wei Liu, Chunmei Yang, Jixing Qin, Shuqing, Ma, Xiaodong Wang

TL;DR
This paper introduces a spectral method-based numerical algorithm for efficiently simulating quasi-three-dimensional underwater acoustic fields, significantly reducing computational costs compared to traditional three-dimensional solutions.
Contribution
The paper develops a novel combination of integral transformation, stepwise coupling, and spectral methods for faster, accurate simulation of quasi-3D underwater acoustics.
Findings
Algorithm is faster than full 3D methods.
Numerical results match analytical solutions.
The method is reliable and efficient.
Abstract
The calculation of a three-dimensional underwater acoustic field has always been a key problem in computational ocean acoustics. Traditionally, this solution is usually obtained by directly solving the acoustic Helmholtz equation using a finite difference or finite element algorithm. Solving the three-dimensional Helmholtz equation directly is computationally expensive. For quasi-three-dimensional problems, the Helmholtz equation can be processed by the integral transformation approach, which can greatly reduce the computational cost. In this paper, a numerical algorithm for a quasi-three-dimensional sound field that combines an integral transformation technique, stepwise coupled modes and a spectral method is designed. The quasi-three-dimensional problem is transformed into a two-dimensional problem using an integral transformation strategy. A stepwise approximation is then used to…
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Taxonomy
TopicsUnderwater Acoustics Research · Underwater Vehicles and Communication Systems
