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首页> 外文期刊>The Journal of the Acoustical Society of America >Passive acoustic monitoring using a towed hydrophone array results in identification of a previously unknown beaked whale habitat
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Passive acoustic monitoring using a towed hydrophone array results in identification of a previously unknown beaked whale habitat

机译:使用拖曳的水听器阵列进行的无源声波监测可以识别以前未知的喙鲸栖息地

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摘要

Beaked whales are diverse and species rich taxa. They spend the vast majority of their time submerged, regularly diving to depths of hundreds to thousands of meters, typically occur in small groups, and behave inconspicuously at the surface. These factors make them extremely difficult to detect using standard visual survey methods. However, recent advancements in acoustic detection capabilities have made passive acoustic monitoring (PAM) a viable alternative. Beaked whales can be discriminated from other odontocetes by the unique characteristics of their echolocation clicks. In 2009 and 2010, PAM methods using towed hydrophone arrays were tested. These methods proved highly effective for real-time detection of beaked whales in the Southern California Bight (SCB) and were subsequently implemented in 2011 to successfully detect and track beaked whales during the ongoing Southern California Behavioral Response Study. The three year field effort has resulted in (1) the successful classification and tracking of Cuvier's (Ziphius cavirostris), Baird's (Berardius bairdii), and unidentified Mesoplodon beaked whale species and (2) the identification of areas of previously unknown beaked whale habitat use. Identification of habitat use areas will contribute to a better understanding of the complex relationship between beaked whale distribution, occurrence, and preferred habitat characteristics on a relatively small spatial scale. These findings will also provide information that can be used to promote more effective management and conservation of beaked whales in the SCB, a heavily used Naval operation and training region.
机译:喙鲸种类繁多,种类丰富。他们将大部分时间都淹没在水中,有规律地潜入数百至数千米的深度,通常成群结队,在地表上不起眼。这些因素使它们很难使用标准的视觉调查方法进行检测。但是,声学检测功能的最新发展已使无源声学监视(PAM)成为可行的替代方案。喙鲸可以通过其回声定位咔嗒声的独特特征与其他齿形鲸区别开来。在2009年和2010年,测试了使用拖曳水听器阵列的PAM方法。这些方法在南加州湾(SCB)中实时检测喙鲸非常有效,随后在2011年实施,以在正在进行的南加州行为反应研究中成功检测和跟踪喙鲸。三年的现场工作已导致(1)成功对Cuvier(Ziphius cavirostris),Baird(Berardius bairdii)和未鉴定的Mesoplodon喙鲸物种进行分类和跟踪,以及(2)识别以前未知的喙鲸栖息地用途。识别栖息地使用区域将有助于在相对较小的空间尺度上更好地了解喙鲸的分布,发生与首选栖息地特征之间的复杂关系。这些发现还将提供信息,可用于促进在SCB(一个经常使用的海军作战和训练区域)中更有效地管理和保护喙鲸。

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