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Underwater Noise from a Wave Energy Converter Is Unlikely to Affect Marine Mammals

机译:波能转换器的水下噪声不太可能影响海洋哺乳动物

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摘要

Underwater noise was recorded from the Wavestar wave energy converter; a full-scale hydraulic point absorber, placed on a jack-up rig on the Danish North Sea coast. Noise was recorded 25 m from the converter with an autonomous recording unit (10 Hz to 20 kHz bandwidth). Median sound pressure levels (Leq) in third-octave bands during operation of the converter were 106–109 dB re. 1 μPa in the range 125–250 Hz, 1–2 dB above ambient noise levels (statistically significant). Outside the range 125–250 Hz the noise from the converter was undetectable above the ambient noise. During start and stop of the converter a more powerful tone at 150 Hz (sound pressure level (Leq) 121–125 dB re 1 μPa) was easily detectable. This tone likely originated from the hydraulic pump which was used to lower the absorbers into the water and lift them out of the water at shutdown. Noise levels from the operating wave converter were so low that they would barely be audible to marine mammals and the likelihood of negative impact from the noise appears minimal. A likely explanation for the low noise emissions is the construction of the converter where all moving parts, except for the absorbers themselves, are placed above water on a jack-up rig. The results may thus not be directly transferable to other wave converter designs but do demonstrate that it is possible to harness wave energy without noise pollution to the marine environment.
机译:Wavestar波能转换器记录了水下噪声;一种全尺寸的液压点吸收器,位于丹麦北海沿岸的自升式钻井平台上。使用自主记录单元(10 Hz至20 kHz带宽)从转换器记录了25 m的噪声。在转换器工作期间,第三倍频程频带的中值声压级(Leq)为106–109 dB re。在125–250 Hz范围内为1μPa,比环境噪声水平高1-2 dB(具有统计意义)。超出125–250 Hz范围时,在环境噪声以上无法检测到来自转换器的噪声。在转换器启动和停止期间,可以轻松检测到150 Hz处更强的音调(声压级(Leq)121–125 dB re 1μPa)。这种声音可能源自液压泵,该液压泵用于将吸收器降低到水中,并在停机时将其从水中提起。来自工作波转换器的噪声水平是如此之低,以至于海洋哺乳动物几乎听不到它们,并且噪声产生负面影响的可能性似乎很小。低噪音排放的一个可能解释是转换器的结构,除吸收器本身外,所有活动部件均在自升式钻机上置于水面上。因此,结果可能无法直接传递给其他波转换器设计,但确实证明了可以利用波能而不会对海洋环境造成噪声污染。

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    Jakob Tougaard;

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  • 年(卷),期 -1(10),7
  • 年度 -1
  • 页码 e0132391
  • 总页数 7
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