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墨西哥湾抹香鲸(Physeter macrocephalus)潜水时深度依赖的声学特征。

Depth-dependent acoustic features of diving sperm whales (Physeter macrocephalus) in the Gulf of Mexico.

作者信息

Thode Aaron, Mellinger David K, Stienessen Sarah, Martinez Anthony, Mullin Keith

机构信息

Ocean Engineering Department, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

J Acoust Soc Am. 2002 Jul;112(1):308-21. doi: 10.1121/1.1482077.

Abstract

Three-dimensional dive trajectories of three sperm whales in the Gulf of Mexico have been obtained by measuring the relative arrival times and bearings of the animals' acoustic multipath reflections, using two elements of a towed hydrophone array deployed at an unknown depth and orientation. Within the first 6-12 min of the start of a dive, the intervals between successive "clicks" of all three whales corresponded closely with the two-way travel time of an acoustic pulse traveling vertically between the animals' position and the ocean bottom. The click spectra contained multiple peaks, including a faint band of energy originally centered near 10 kHz. As the animals descended over 500 m in depth, the center frequency of this band shifted to nearly 15 kHz, but subsequently remained near this value during the rest of the dive. This frequency shift is consistent with that expected from energy scattering from an ensemble of incompressible small-scale air-filled resonators, with diameters on the order of 4 mm. One possible candidate for such an ensemble is proposed to reside in the collapsed frontal sac of the animal. A comparison of the received levels for the bottom and direct multipath arrivals indicates that the whales' acoustic directivity must range between 10-30 dB in the 5-20-kHz region.

摘要

通过测量动物声学多径反射的相对到达时间和方位,利用部署在未知深度和方向的拖曳式水听器阵列的两个元件,获得了墨西哥湾三头抹香鲸的三维潜水轨迹。在潜水开始的前6 - 12分钟内,所有三头鲸鱼连续“咔哒”声之间的间隔与声脉冲在动物位置和海底之间垂直传播的双向传播时间密切对应。咔哒声谱包含多个峰值,包括最初以10 kHz附近为中心的微弱能量带。当动物下潜超过500米深度时,该频段的中心频率移至近15 kHz,但在潜水的其余时间内随后保持在该值附近。这种频率偏移与由直径约为4毫米的不可压缩小尺度充气谐振器集合体的能量散射所预期的一致。提出这样一个集合体的一个可能候选者存在于动物塌陷的额囊中。底部和直接多径到达的接收电平比较表明鲸鱼在5 - 20 kHz区域的声学指向性必须在10 - 30 dB之间。

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