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关于波弗特海声导变空间/时间尺度的观测及其对模态相互作用参数传输损耗的影响。

Observations of the space/time scales of Beaufort sea acoustic duct variability and their impact on transmission loss via the mode interaction parameter.

机构信息

Department of Ocean Sciences, University of California Santa Cruz, 1156 High St., Santa Cruz, California 95064, USA.

Department of Oceanography, Naval Postgraduate School, 1 University Circle, Monterey, California 93943, USA.

出版信息

J Acoust Soc Am. 2023 May 1;153(5):2659. doi: 10.1121/10.0019335.

Abstract

The Beaufort duct (BD) is a subsurface sound channel in the western Arctic Ocean formed by cold Pacific Winter Water (PWW) sandwiched between warmer Pacific Summer Water (PSW) and Atlantic Water (AW). Sound waves can be trapped in this duct and travel long distances without experiencing lossy surface/ice interactions. This study analyzes BD vertical and temporal variability using moored oceanographic measurements from two yearlong acoustic transmission experiments (2016-2017 and 2019-2020). The focus is on BD normal mode propagation through observed ocean features, such as eddies and spicy intrusions, where direct numerical simulations and the mode interaction parameter (MIP) are used to quantify ducted mode coupling strength. The observations show strong PSW sound speed variability, weak variability in the PWW, and moderate variability in the AW, with typical time scales from days to weeks. For several hundreds Hertz propagation, the BD modes are relatively stable, except for rare episodes of strong sound speed perturbations. The MIP identifies a resonance condition such that the likelihood of coupling is greatest when there is significant sound speed variability in the horizontal wave number band 1/11<kh<1/5 km-1. MITgcm ocean model results are used to estimate sound speed fluctuations in this resonance regime.

摘要

比弗福特海道(BD)是北极西部的一个水下声道,由寒冷的太平洋冬季水(PWW)夹在温暖的太平洋夏季水(PSW)和大西洋水(AW)之间形成。声波可以被困在这个声道中,并在没有经历损耗的表面/冰相互作用的情况下传播很长的距离。本研究使用两年的声学传输实验(2016-2017 年和 2019-2020 年)中的系泊海洋测量数据,分析了 BD 的垂直和时间变化。重点是通过观测到的海洋特征,如漩涡和强烈入侵,研究 BD 正常模式的传播,其中直接数值模拟和模式相互作用参数(MIP)用于量化有导管模式的耦合强度。观测结果显示 PSW 声速变化较大,PWW 声速变化较小,AW 声速变化适中,典型时间尺度为几天到几周。对于几百赫兹的传播,BD 模式相对稳定,除非出现强烈的声速扰动。MIP 确定了一个共振条件,即当水平波数带 1/11<kh<1/5 km-1 中的声速变化显著时,耦合的可能性最大。MITgcm 海洋模型结果用于估计这个共振区域的声速波动。

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