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在对照暴露实验期间,使用声学标签记录的抹香鲸(Physeter macrocephalus)身上气枪脉冲的定量测量。

Quantitative measures of air-gun pulses recorded on sperm whales (Physeter macrocephalus) using acoustic tags during controlled exposure experiments.

作者信息

Madsen P T, Johnson M, Miller P J O, Aguilar Soto N, Lynch J, Tyack P

机构信息

Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543, USA.

出版信息

J Acoust Soc Am. 2006 Oct;120(4):2366-79. doi: 10.1121/1.2229287.

Abstract

The widespread use of powerful, low-frequency air-gun pulses for seismic seabed exploration has raised concern about their potential negative effects on marine wildlife. Here, we quantify the sound exposure levels recorded on acoustic tags attached to eight sperm whales at ranges between 1.4 and 12.6 km from controlled air-gun array sources operated in the Gulf of Mexico. Due to multipath propagation, the animals were exposed to multiple sound pulses during each firing of the array with received levels of analyzed pulses falling between 131-167 dB re. 1 microPa (pp) [111-147 dB re. 1 microPa (rms) and 100-135 dB re. 1 microPa2 s] after compensation for hearing sensitivity using the M-weighting. Received levels varied widely with range and depth of the exposed animal precluding reliable estimation of exposure zones based on simple geometric spreading laws. When whales were close to the surface, the first arrivals of air-gun pulses contained most energy between 0.3 and 3 kHz, a frequency range well beyond the normal frequencies of interest in seismic exploration. Therefore air-gun arrays can generate significant sound energy at frequencies many octaves higher than the frequencies of interest for seismic exploration, which increases concern of the potential impact on odontocetes with poor low frequency hearing.

摘要

在地震海底勘探中广泛使用强大的低频气枪脉冲引发了人们对其对海洋野生动物潜在负面影响的担忧。在此,我们对附着在8头抹香鲸身上的声学标签所记录的声暴露水平进行了量化,这些抹香鲸位于距离墨西哥湾中受控气枪阵列源1.4至12.6千米的范围内。由于多径传播,在每次气枪阵列发射时,这些动物会暴露于多个声脉冲,经过使用M加权法对听力敏感度进行补偿后,所分析脉冲的接收水平在131 - 167分贝声压级(相对于1微帕斯卡(峰值))[111 - 147分贝声压级(相对于1微帕斯卡(均方根值))以及100 - 135分贝声压级(相对于1微帕斯卡²秒)]之间。接收水平随暴露动物的距离和深度变化很大,这使得基于简单几何扩展定律对暴露区域进行可靠估计变得不可能。当鲸鱼靠近海面时,气枪脉冲的首次到达包含了大部分在0.3至3千赫兹之间的能量,这个频率范围远远超出了地震勘探中通常感兴趣的频率范围。因此,气枪阵列能够在比地震勘探感兴趣的频率高许多倍频程的频率上产生显著的声能,这增加了人们对其对低频听力较差的齿鲸潜在影响的担忧。

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