深海声场的幅相结构

IF 1.1 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
S. P. Aksenov, G. N. Kuznetsov, A. N. Stepanov
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引用次数: 0

摘要

本文对夏季条件下深海声压的幅相特性进行了分析和数值研究。为此,得到了解析关系,可以计算和比较水模态、漏模态、困模态以及模态和形成的SP场的空频结构特征。使用改进的Wentzel-Kramers-Brillouin近似进行计算。结果表明,不同类型的模态在不同的距离上占主导地位,这使得描述具有不同模态组成的不同区域SP场振幅和相位分布的结构变异性成为可能。在基于所有模态和的场中,模态性质在不同距离上更明显地表现为在这些距离上占主导地位的模态。因此,在不同的区域,SP振幅的空间频率结构有很大的不同。但是,由于相位梯度在干涉最大值区域的稳定性,对于所有类型的模式、所有频率和几乎所有距离,相位表面的形状都是一致的。仅在近场区漏模处观察到一些差异。和场的有效相速度数值取决于不同类型模态的相速度及其“消光”速率,并且在不同的区域有明显的差异。在测向和估计噪声源坐标时应考虑到这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Amplitude–Phase Structure of the Sound Field in the Deep Sea

Amplitude–Phase Structure of the Sound Field in the Deep Sea

Amplitude-phase characteristics of sound pressure (SP) in the deep ocean is analytically and numerically investigated under summer conditions. To this end, analytical relations are obtained, which allow calculating and comparing space–frequency structure characteristics of water, leaky, and trapped modes, as well as of the SP field formed by the mode sum. The calculations are performed using the modified Wentzel–Kramers–Brillouin approximation. It is shown that modes of different types dominate at different distances, and this enables describing structure variability of both the amplitude and the phase distribution of the SP field in different zones with a different mode composition. It is found that in the field based on the sum of all modes the mode properties more distinctly manifested at various distances are of those modes which dominate at these distances. As a consequence, space–frequency structures of SP amplitudes are substantially different in different zones. But, due to stability of phase gradients in zones of interference maxima, phase surfaces coincide in shape for all types of modes, all frequencies, and almost all distances. Some difference is only observed for leaky modes in the near-field zone. Numerical values of effective phase velocities of the summed field depend, as expected, on phase velocities of modes of various types and on their “extinction” rate, and they are appreciably different in different zones. This should be taken into account during direction finding and estimation of noise source coordinates.

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来源期刊
Physics of Wave Phenomena
Physics of Wave Phenomena PHYSICS, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
21.40%
发文量
43
审稿时长
>12 weeks
期刊介绍: Physics of Wave Phenomena publishes original contributions in general and nonlinear wave theory, original experimental results in optics, acoustics and radiophysics. The fields of physics represented in this journal include nonlinear optics, acoustics, and radiophysics; nonlinear effects of any nature including nonlinear dynamics and chaos; phase transitions including light- and sound-induced; laser physics; optical and other spectroscopies; new instruments, methods, and measurements of wave and oscillatory processes; remote sensing of waves in natural media; wave interactions in biophysics, econophysics and other cross-disciplinary areas.
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