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在 2006 年海洋声波导遥感实验期间缅因湾集群大西洋鲱(Clupea harengus)的低频目标强度和丰度。

Low-frequency target strength and abundance of shoaling Atlantic herring (Clupea harengus) in the Gulf of Maine during the Ocean Acoustic Waveguide Remote Sensing 2006 Experiment.

机构信息

Department of Electrical and Computer Engineering, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

J Acoust Soc Am. 2010 Jan;127(1):104-23. doi: 10.1121/1.3268595.

Abstract

The low-frequency target strength of shoaling Atlantic herring (Clupea harengus) in the Gulf of Maine during Autumn 2006 spawning season is estimated from experimental data acquired simultaneously at multiple frequencies in the 300-1200 Hz range using (1) a low-frequency ocean acoustic waveguide remote sensing (OAWRS) system, (2) areal population density calibration with several conventional fish finding sonar (CFFS) systems, and (3) low-frequency transmission loss measurements. The OAWRS system's instantaneous imaging diameter of 100 km and regular updating enabled unaliased monitoring of fish populations over ecosystem scales including shoals of Atlantic herring containing hundreds of millions of individuals, as confirmed by concurrent trawl and CFFS sampling. High spatial-temporal coregistration was found between herring shoals imaged by OAWRS and concurrent CFFS line-transects, which also provided fish depth distributions. The mean scattering cross-section of an individual shoaling herring is found to consistently exhibit a strong, roughly 20 dB/octave roll-off with decreasing frequency in the range of the OAWRS survey over all days of the roughly 2-week experiment, consistent with the steep roll-offs expected for sub-resonance scattering from fish with air-filled swimbladders.

摘要

2006 年秋季鳕鱼产卵季节,在缅因湾,利用(1)低频海洋声学波导遥感(OAWRS)系统、(2)几种传统的鱼类探测声纳(CFFS)系统的面积种群密度校准和(3)低频传输损耗测量,从实验数据中估算了群体洄游的大西洋鳕鱼(Clupea harengus)的低频目标强度。OAWRS 系统的瞬时成像直径为 100 公里,且定期更新,使人们能够在生态系统尺度上对鱼类种群进行无混淆监测,包括包含数亿个体的大西洋鳕鱼群,这一点得到了同时进行的拖网和 CFFS 采样的证实。OAWRS 成像的鲱鱼群与同时进行的 CFFS 线探测之间发现了高时空配准,这也提供了鱼类的深度分布。在 OAWRS 调查范围内,所有大约两周实验日的频率范围内,个体鲱鱼群的平均散射截面都表现出很强的、大约 20dB/倍频程的下降,与充满空气的鳔对鱼类次共振散射所预期的急剧下降一致。

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