首页> 外文期刊>Aquatic Mammals >Perception of Low-Frequency Acoustic Signals by a Harbour Porpoise (Phocoena phocoena) in the Presence of Simulated Offshore Wind Turbine Noise
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Perception of Low-Frequency Acoustic Signals by a Harbour Porpoise (Phocoena phocoena) in the Presence of Simulated Offshore Wind Turbine Noise

机译:在模拟海上风力涡轮机噪声的存在下,海豚(Phocoena phocoena)对低频声信号的感知

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摘要

Using auditory evoked potential (AEP) methods, a study was conducted on a harbour porpoise (Phocoena phocoena) at the Dolfinarium Harderwijk in The Netherlands. The study measured the audible range of wind turbine sounds and their potential masking effects on the acoustic perception of the animal. AEPs were evoked with two types of acoustic stimuli: (1) click-type signals and (2) amplitude-modulated signals. The masking noise resembling the underwater sound emissions of an operational wind turbine was simulated. At first, the animal's hearing threshold was measured at frequencies between 0.7 and 16 kHz. Subsequently, these measurements were repeated at frequencies between 0.7 and 2.8 kHz in the presence of two different levels of masking noise. The resulting data show a masking effect of the simulated wind turbine sound at 128 dB re 1 mu Pa at 0.7, 1.0, and 2.0 kHz. This masking effect varied between 4.8 and 7.3 dB at those frequencies. No significant masking was measured at a masking level of 115 dB re 1 mu Pa. The available data indicate that the potential masking effect would be limited to short ranges in the open sea, but limitations exist to this conclusion and all estimates are based on existing turbine types, not taking into account future developments of larger and potentially noisier turbine types.
机译:使用听觉诱发电位(AEP)方法,在荷兰Dolfinarium Harderwijk的海豚(Phocoena phocoena)上进行了一项研究。该研究测量了风力涡轮机声音的可听范围及其对动物的声音感知的潜在掩盖效应。 AEP诱发了两种类型的声音刺激:(1)喀嗒型信号和(2)调幅信号。模拟了类似于运行中的风力涡轮机水下声发射的掩蔽噪声。首先,在0.7至16 kHz的频率下测量动物的听力阈值。随后,在存在两种不同级别的掩蔽噪声的情况下,以0.7至2.8 kHz的频率重复这些测量。所得数据显示了在0.7、1.0和2.0 kHz时,模拟风力涡轮机声音在128 dB re 1 mu Pa下的掩蔽效果。在这些频率下,这种屏蔽效果在4.8至7.3 dB之间变化。在115 dB re 1 mu Pa的掩蔽水平下未测量到明显的掩蔽。可用数据表明,潜在的掩蔽效应将限于公海中的短距离,但该结论存在局限,所有估计均基于现有涡轮机类型,而不考虑更大和可能更嘈杂的涡轮机类型的未来发展。

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