The application of vertical sound intensity in shallow and low frequency sound field

S. X. Li, M. Dan, Guo Yong, Yichong Wei, G. Xiang
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引用次数: 1

Abstract

Sound field is described by sound pressure and velocity; this is different from the former concept. This paper has discussed the application of vertical sound intensity stream in shallow and low frequency sound field based on fast field program (FFP) model. The vector signal processing technique is analyzed from physical angle of view, and is made use of to judge the surface ship or submarine. For the past several decades, the sound wave had been simulated by many kinds of mathematical models, such as radial model, kraken model, parabola equation model, multipath expand model, FFP model and so on. These models adapt their own scope, run time, solving precision. FFP model calculates the sound filed by wave theory, and the result is shown as wave number integration, this process uses FFP model, the speed is faster than other models, the result covers both disperse pattern component and continuous pattern component, the result is exacter. In this paper the minor factor is ignored, the boundary and absorbing factor are taken into account.
垂直声强在浅低频声场中的应用
声场用声压和声速来描述;这与以前的概念不同。本文讨论了基于快速场程序(FFP)模型的垂直声强流在浅层低频声场中的应用。从物理角度对矢量信号处理技术进行了分析,并将其用于水面舰艇或潜艇的判断。在过去的几十年里,人们采用了多种数学模型来模拟声波,如径向模型、kraken模型、抛物线方程模型、多径展开模型、FFP模型等。这些模型适应自己的范围、运行时间、求解精度。FFP模型利用波动理论对声场进行计算,结果以波数积分的形式表示,该过程采用FFP模型,速度比其他模型快,计算结果既涵盖了离散模式分量,也涵盖了连续模式分量,计算结果更加精确。本文忽略了次要因素,考虑了边界和吸收因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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