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基于WOA23的日本海声道分布特征分析
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作者 邱燕萍 高思宇 +3 位作者 陈倩 宋帅 赵亚明 王敬尧 《海洋信息技术与应用》 2024年第3期141-149,共9页
本文基于WOA23温盐剖面数据集,利用声速经验公式,计算日本海的声速剖面,根据声速剖面的特点及声速梯度,诊断提取日本海表面声道及深海声道特征信息,研究表面声道及深海声道的区域分布情况和季节变化特征。结果表明:日本海的表面声道受... 本文基于WOA23温盐剖面数据集,利用声速经验公式,计算日本海的声速剖面,根据声速剖面的特点及声速梯度,诊断提取日本海表面声道及深海声道特征信息,研究表面声道及深海声道的区域分布情况和季节变化特征。结果表明:日本海的表面声道受季节变化影响大且具有明显的区域性分布特征。春夏季节,整个海域几乎无表面声道,秋冬季节,表面声道大幅生成,主要分布在东朝鲜湾和日本海东部边界附近海区,冬季与秋季相比,南北两端的表面声道分布面积减少,但东朝鲜湾以及40°N-50°N之间海区表面声道的分布面积进一步扩大。秋季,表面声道厚度基本小于40 m,冬季,表面声道厚度整体增加,特别是在44°N-50°N之间的海区,大部分表面声道厚度超过100m;表面声道梯度季节变化幅度相对较小,除了秋季鞑靼海峡附近的表面声道梯度大于0.2/s,大部分表面声道的梯度小于0.05/s。深海声道与表面声道相比,受季节变化影响较小,声道效应更加稳定,声道轴深度基本在450m以浅,声道轴声速约为1456~1468m/s,且整体表现呈自东南向西北递减之势。 展开更多
关键词 WOA23 日本海 声速剖面 表面声道 深海声道
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Spatial Distribution of Sound Channel and Its Parameters in North Indian Ocean
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作者 K.Ashalatha T.V.R.Murty K.V.S.R.Prasad 《Journal of Shipping and Ocean Engineering》 2015年第6期334-340,共7页
The Present work reports the variability of the derived sound channel and its parameters (surface sound velocity, conjugate depth, SLD (Sonic Layer depth) and SOFAR(Sound Fixing and Ranging) depth) has been pres... The Present work reports the variability of the derived sound channel and its parameters (surface sound velocity, conjugate depth, SLD (Sonic Layer depth) and SOFAR(Sound Fixing and Ranging) depth) has been presented over the Bay of Bengal and Arabian Sea. We use World Ocean Atlas Annual data (2013) on temperature; salinity of North Indian Ocean (0°-25°N; 50°-95°E) and its bathymetry have been utilized for the present computation. The depth of the sound channel axis increases towards the northern latitudes in the Arabian Sea, while it decreases in the Bay of Bengal. Coming to the conjugate depth, it shows variation from 120-400 m in the Bay of Bengal and 50-320 m in the Arabian Sea. The range of SLD is varying between 20-40 m in the Bay of Bengal and 10-30 m in the Arabian Sea. The Bay of Bengal and the Arabian Sea have depth limited nature of the profile, i.e. surface sound speed exceeds the near bottom values. This has an important implication in the sound propagation in the SOFAR channel. Anticipated acoustic rays in an ocean with depth limited profile will propagate as surface refracted, bottom reflected (RBR) rays. As a result, the effective sound channel lies much below the sea surface. 展开更多
关键词 sofar channel sonic layer conjugates depth WOA climatology.
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