首页> 外文期刊>Marine Environmental Research >The influence of acoustic emissions for underwater data transmission on the behaviour of harbour porpoises (Phocoena phocoena) in a floating pen
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The influence of acoustic emissions for underwater data transmission on the behaviour of harbour porpoises (Phocoena phocoena) in a floating pen

机译:水下数据传输中的声发射对漂浮笔中海豚(Phocoena phocoena)行为的影响

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To prevent grounding of ships and collisions between ships in shallow coastal waters, an underwater data collection and communication network is currently under development: Acoustic Communication network for Monitoring of underwater Environment in coastal areas (ACME). Marine mammals might be affected by ACME sounds since they use sounds of similar frequencies (around 12 kHz) for communication, orientation, and prey location. If marine mammals tend to avoid the vicinity of the transmitters, they may be kept away from ecologically important areas by ACME sounds. One marine mammal species that may be affected in the North Sea is the harbour porpoise. Therefore, as part of an environmental impact assessment program, two captive harbour porpoises were subjected to four sounds, three of which may be used in the underwater acoustic data communication network. The effect of each sound was judged by comparing the animals' positions and respiration rates during a test period with those during a baseline period. Each of the four sounds could be made a deterrent by increasing the amplitude of the sound. The porpoises reacted by swim-ming away from the sounds and by slightly, but significantly, increasing their respiration rate. From the sound pressure level distribution in the pen, and the distribution of the animals during test sessions, discomfort sound level thresholds were determined for each sound. In combination with information on sound propagation in the areas where the communication system may be deployed, the extent of the 'discomfort zone' can be estimated for several source levels (SLs). The discomfort zone is denned as the area around a sound source that harbour porpoises are expected to avoid. Based on these results, SLs can be selected that have an acceptable effect on harbour porpoises in particular areas. The discomfort zone of a communication sound depends on the selected sound, the selected SL, and the propagation characteristics of the area in which the sound system is operational. In shallow, winding coastal water courses, with sandbanks, etc., the type of habitat in which the ACME sounds will be produced, propagation loss cannot be accurately estimated by using a simple propagation model, but should be measured on site. The SL of the communication system should be adapted to each area (taking into account bounding conditions created by narrow channels, sound propagation variability due to environmental factors, and the importance of an area to the affected species). The discomfort zone should not prevent harbour porpoises from spending sufficient time in ecologically important areas (for instance feeding areas), or routes towards these areas.
机译:为了防止船舶停泊和在沿海浅水区发生船舶之间的碰撞,目前正在开发水下数据收集和通信网络:用于监视沿海地区水下环境的声学通信网络(ACME)。海洋哺乳动物可能会受到ACME声音的影响,因为它们使用相似频率(大约12 kHz)的声音进行交流,定向和猎物定位。如果海洋哺乳动物倾向于避开发射器附近,则可以通过ACME声音将它们远离重要的生态区域。可能在北海受到影响的一种海洋哺乳动物是海豚。因此,作为环境影响评估计划的一部分,对两个圈养海豚进行了四种声音处理,其中三种可以在水下声数据通信网络中使用。通过比较测试期间动物的位置和呼吸速率与基线期间的动物位置和呼吸速率来判断每种声音的效果。可以通过增加声音的振幅来阻止四种声音中的每一种。豚鼠的反应是远离声音游动,略微但明显地增加了它们的呼吸速率。根据笔中的声压级分布以及测试过程中动物的分布,确定每种声音的不适声级阈值。结合有关在可能部署通信系统的区域中的声音传播的信息,可以为多个源级别(SL)估计“不适区域”的程度。不适区域的定义是,避开有海豚的声源周围区域。根据这些结果,可以选择对特定区域的海豚有可接受效果的SL。通信声音的不适区域取决于所选的声音,所选的SL以及音响系统可在其中运行的区域的传播特性。在浅而曲折的沿海水道,沙洲等中,将产生ACME声音的栖息地类型,无法使用简单的传播模型准确估算传播损失,而应在现场进行测量。通信系统的SL应该适合每个区域(考虑到狭窄通道所造成的边界条件,由于环境因素导致的声音传播可变性以及区域对受影响物种的重要性)。不适区域不应阻止海豚在生态上重要的区域(例如进食区)或通往这些区域的路线上花费足够的时间。

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