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Acoustic environment of admiralty inlet: Broadband noise measurements

机译:金钟入口的声学环境:宽带噪声测量

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Admiralty Inlet has been selected as a potential tidal energy site. It is located near shipping lanes, is a highly variable acoustic environment, and is frequented by the endangered southern resident killer whale (SRKW). Resolving environmental impacts is the first step to receiving approval to deploy tidal turbines at Admiralty Inlet. Of particular concern is the potential for blade strike or other negative interactions between the SRKW and the tidal turbine. A variety of technologies including passive and active monitoring systems are being considered as potential tools to determine the presence of SRKW in the vicinity of the turbines. Broadband noise level measurements are critical for determining design and operational specifications of ocean energy capture technologies. Acoustic environment data at the proposed site was acquired at different depths using a cabled vertical line array (VLA) with four calibrated hydrophones. The power spectrum density of the sound pressure level (SPL) was estimated using the fast Fourier transform. This study describes the first broadband SPL measurements for this site at different depths with frequencies ranging from 10 kHz to 480 kHz in combination with other information. To understand the SPL caused by bedload transport, three different pressure sensors with temperature and conductivity were also assembled on the VLA to measure the conditions at the hydrophone deployment depth. The broadband SPL levels at frequency ranges of 3 kHz to 7 kHz as a function of depth were estimated. Only the hydrophone at an average depth of 40 m showed the strong dependence of SPL with distance from the bottom, which was possibly caused by the cobbles shifting on the seabed. Automatic Identification System data were also studied to understand the influence of ship traffic on SPL measurements.
机译:金钟湾已被选为潜在的潮汐能站点。它位于航道附近,声音环境变化很大,濒临灭绝的南方常驻虎鲸(SRKW)经常出没。解决环境影响是获得批准在金钟湾部署潮汐涡轮机的第一步。特别令人担忧的是,SRKW和潮汐涡轮之间可能会发生叶片撞击或其他负面相互作用。包括无源和有源监控系统在内的多种技术被认为是确定SRKW在涡轮机附近是否存在的潜在工具。宽带噪声水平测量对于确定海洋能捕获技术的设计和操作规范至关重要。使用带有四个校准水听器的电缆垂直线阵列(VLA),在不同的深度获取了建议位置的声学环境数据。使用快速傅里叶变换估算声压级(SPL)的功率谱密度。这项研究描述了该站点在不同深度,频率从10 kHz到480 kHz范围内的首次宽带SPL测量,并结合了其他信息。为了了解由床载运输引起的声压级,在VLA上还组装了三个具有温度和电导率的不同压力传感器,以测量水听器展开深度的状况。估算了在3 kHz至7 kHz频率范围内的宽带SPL电平与深度的关系。只有平均深度为40 m的水听器才显示SPL与底部的距离具有很强的依赖性,这可能是由于卵石在海床上移动引起的。还研究了自动识别系统数据,以了解船舶交通对SPL测量的影响。

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