应用切比雪夫配点法求解水声传播抛物方程模型

IF 1.7 4区 物理与天体物理
Yongxian Wang, Houwang Tu, Wei Liu, Wenbin Xiao, Qiang Lan
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引用次数: 16

摘要

抛物线近似已被广泛用于水声传播,并且由于其计算效率高而具有吸引力。广泛使用的抛物方程(PE)模型程序,如距离相关声学模型(RAM),通过有限差分法离散化。基于深度算子的Pad\(\acute{\text{e}})级数展开的思想,利用切比雪夫配置法(CCM)推导了一个新的离散PE模型,并开发了代码(CCMPE)。以四个理想流体波导问题为实验,验证了用CCM求解简单水声传播问题的离散PE模型的正确性。测试结果表明,与有限差分离散PE模型相比,本文开发的CCMPE在简单海洋环境中的水声传播计算具有更高的精度,并且需要更少的离散网格点。此外,尽管所提出的方法的运行时间比有限差分离散PE程序(RAM)的运行时间长,但它比Chebyshev–Tau谱法的运行时间短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Application of a Chebyshev Collocation Method to Solve a Parabolic Equation Model of Underwater Acoustic Propagation

Application of a Chebyshev Collocation Method to Solve a Parabolic Equation Model of Underwater Acoustic Propagation

The parabolic approximation has been used extensively for underwater acoustic propagation and is attractive because it is computationally efficient. Widely used parabolic equation (PE) model programs such as the range-dependent acoustic model (RAM) are discretized by the finite difference method. Based on the idea of the Pad\(\acute{\text {e}}\) series expansion of the depth operator, a new discrete PE model using the Chebyshev collocation method (CCM) is derived, and the code (CCMPE) is developed. Taking the problems of four ideal fluid waveguides as experiments, the correctness of the discrete PE model using the CCM to solve a simple underwater acoustic propagation problem is verified. The test results show that the CCMPE developed in this article achieves higher accuracy in the calculation of underwater acoustic propagation in a simple marine environment and requires fewer discrete grid points than the finite difference discrete PE model. Furthermore, although the running time of the proposed method is longer than that of the finite difference discrete PE program (RAM), it is shorter than that of the Chebyshev–Tau spectral method.

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来源期刊
Acoustics Australia
Acoustics Australia ACOUSTICS-
自引率
5.90%
发文量
24
期刊介绍: Acoustics Australia, the journal of the Australian Acoustical Society, has been publishing high quality research and technical papers in all areas of acoustics since commencement in 1972. The target audience for the journal includes both researchers and practitioners. It aims to publish papers and technical notes that are relevant to current acoustics and of interest to members of the Society. These include but are not limited to: Architectural and Building Acoustics, Environmental Noise, Underwater Acoustics, Engineering Noise and Vibration Control, Occupational Noise Management, Hearing, Musical Acoustics.
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