基于爆炸声传播时间的声速剖面反演

张 维 杨士莪 黄益旺 唐俊峰 宋扬

振动与冲击 ›› 2012, Vol. 31 ›› Issue (23) : 6-11.

PDF(1735 KB)
PDF(1735 KB)
振动与冲击 ›› 2012, Vol. 31 ›› Issue (23) : 6-11.
论文

基于爆炸声传播时间的声速剖面反演

  • 张 维 杨士莪 黄益旺 唐俊峰 宋扬
作者信息 +

Inversion of sound speed profile based on explosive sound transmission time

  • ZHANG Wei,YANG Shi-e,HUANG Yi-wang,TANG Jun-feng, SONG Yang
Author information +
文章历史 +

摘要

特征声线搜索以及传播时间测定的精确性是基于声传播时间的声速剖面反演的关键。在具有倾斜海底的三维海域,声线在海底的反射会导致水平偏转,给特征声线搜索和声传播时间计算带来了困难。为此,首先提出了一种三维空间特征声线搜索方法。通过对南海海洋环境反演实验数据的处理,分析了声线的水平偏转对声传播时间的影响,并用爆炸声传播时间作为代价函数,用量子粒子群算法作为优化算法进行了声速剖面反演。结果表明,海底坡度较大时,声线的水平偏转对声传播时间影响较大,考虑声线的水平偏转能有效地减小声传播时间计算的误差,进而使得声速剖面反演的精度得到显著提高。

Abstract

The key procedure for sound speed profile (SSP) inversion is the accurate determination of eigenray and precise measurement of corresponding transmission time. Horizontal deflection often occurs when a ray propagates in shallow water with an irregular sea bottom, which makes it difficult to determine eigenray trajectory and transmission time. A new method for seeking eigenray in three dimensions was proposed in this paper. The influences of horizontal deflection on transmission time were first analyzed, and then transmission time of explosive sound and quantum particle swarm were used as cost function and optimization algorithm to invert SSP for some area of South China Sea, based on experimental data. Results indicate that horizontal deflection has critical effect on transmission time when the bottom gradient is great. Considering horizontal deflection can greatly improve the accuracy of eigenray transmission time calculation and enhance the precision of SSP inversion dramatically.

关键词

爆炸声 / 传播时间 / 声速剖面反演 / 特征声线 / 水平偏转 / 量子粒子群

Key words

explosive sound / transmission time / SSP inversion / eigenray / horizontal deflection / quantum particle swarm

引用本文

导出引用
张 维 杨士莪 黄益旺 唐俊峰 宋扬. 基于爆炸声传播时间的声速剖面反演[J]. 振动与冲击, 2012, 31(23): 6-11
ZHANG Wei;YANG Shi-e;HUANG Yi-wang;TANG Jun-feng;SONG Yang. Inversion of sound speed profile based on explosive sound transmission time[J]. Journal of Vibration and Shock, 2012, 31(23): 6-11

PDF(1735 KB)

1077

Accesses

0

Citation

Detail

段落导航
相关文章

/