Acoustic Antennas for On-Line Monitoring in Very Deep Sea

G. Riccobene, G. Cosentino, G. Pavan, F. Speziale
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Abstract

The long-term measurement and characterization of acoustic noise spectrum in deep sea is a powerful tool to study the underwater environment and the impact of human activities on the marine ecosystem. Despite sound is extensively used in military and scientific application, there is a lack of measurement of noise level and its variation over long term, in deep sea. This is mainly due to the difficulties in performing long- term accurate wideband measurements in such a hostile environment. Following the scientific and technological success of OvDE, a pilot experimental acoustic station that acquired and transmitted acoustic data from 2000 m depth for 2 years, we propose the realization of innovative deep-sea stations for long- term on-line monitoring of acoustic signals. The innovations of proposed project are summarized in seven key points: 1) pressure resistance up to 350 bar (corresponding to -3500 m depth); 2) capability to operate for more than 5 years; 3) capability to transmit data to shore from distances of about 100 km; 4) sensitivity close to Wenz minimum noise and dynamic range of -120 dB; 5) operational range of frequencies from few Hz to about 80 kHz; 6) capability of point-source identification and tracking; 7) modularity. In order to test and operate these stations the NEMO Collaboration built two scientific infrastructures equipped with shore laboratories and underwater electro-optical cables connecting shore with deep-sea. One is located 25 km SE of the port of Catania (Sicily), already used for OvDE; the other one is located at 3500 m depth 100 km South East of Capo Passero (Siracusa, Sicily), and will be soon operative. These antennas are expected to reach good sensitivity, to allow reconstruction of source position and permit pulse shape study of acoustic signals. These tasks will be fundamental in order to perform studies on sound sources in different research fields: geophysics, acoustical oceanography, bioacoustics, astro-particle physics et cetera.
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超深海在线监测声天线
深海噪声谱的长期测量和表征是研究水下环境和人类活动对海洋生态系统影响的有力工具。尽管声音在军事和科学应用中得到了广泛的应用,但在深海中缺乏对噪声水平及其长期变化的测量。这主要是由于在这样恶劣的环境中进行长期准确的宽带测量的困难。在连续2年采集和传输2000 m深度水声数据的试点实验水声站OvDE取得科技成功的基础上,我们提出了实现水声信号长期在线监测的创新型深海站的设想。拟建项目的创新之处概括为七个关键点:1)耐压高达350 bar(对应于-3500 m深度);2)具备5年以上经营能力;3)能够从约100公里的距离向岸上传输数据;4)灵敏度接近温氏最小噪声,动态范围-120 dB;5)工作频率范围从几赫兹到约80千赫;6)点源识别与跟踪能力;7)模块化。为了测试和操作这些台站,NEMO合作组织建造了两个科学基础设施,配备了岸上实验室和连接海岸与深海的水下光电电缆。一个位于卡塔尼亚港(西西里岛)东南25公里处,已用于OvDE;另一个位于Capo Passero(西西里岛锡拉库萨)东南100公里处3500米深,并将很快投入使用。这些天线有望达到良好的灵敏度,允许重建源位置,并允许声学信号的脉冲形状研究。这些任务将是在不同的研究领域进行声源研究的基础:地球物理学、声学海洋学、生物声学、天体粒子物理学等等。
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