首页> 外文会议>Techno-Ocean (conference) >Soundscape characteristics of the Eastern Taiwan Strait Indo-Pacific humpback dolphin habitat
【24h】

Soundscape characteristics of the Eastern Taiwan Strait Indo-Pacific humpback dolphin habitat

机译:东部海峡东部的声景特点印度太平洋驼背海豚栖息地

获取原文

摘要

Continuous underwater acoustic recordings were made at two locations of the Eastern Taiwan Strait humpback dolphin habitat: Yunlin (YL, near a cargo shipping lane and with water depth 8-12 m) and Waisanding (WS, relatively pristine with water depth 1.5-4.5 m), off western Taiwan between June and December 2012. One-minute averaged sound pressure levels (SPLs) in both locations were computed for data collected in July 13-30 and September 2-20 in the following four frequency bands: 150-300 Hz, 1.2-2.4 kHz, 3-6 kHz, and >10 kHz. These frequency bands correspond to sounds in frequency bands from cargo vessels, croaker fish chorus, dolphin whistles, and dolphin echolocation clicks, respectively. Comparisons of median SPLs in these frequency bands between WS and YL were made among four discrete periods of a day: morning (04:00-09:59), daytime (10:00-15:59), evening (16:00-21:59), and nighttime (22:00-03:59). The results show notably elevated sound levels in the 1.2-2.4 kHz frequency band in both locations between sunset and sunrise. This indicates that croaker fish chorus are the dominant sources of the soundscape during the evening and nighttime periods. Although the SPLs in low-frequency band of 150-300 Hz were also high at times, there is no temporal pattern on the occurrence of these high levels. Closer examination of the occurrence of high SPLs in the 150-300 Hz frequency band shows that they did not always correspond to cargo vessel passage. It is hypothesized that flow noise and other hydrodynamic actions may contribute to the high SPL in this frequency band. This study highlights complexity of the soundscape in a coastal marine ecosystem. The soundscape characteristics depend on the SPLs of different contributing sources, and are also highly influenced by the local bathymetry and the dynamics of the physical environment. In order to conduct a comprehensive assessment on the potential anthropogenic noise effects on marine life, it is important to have a good understanding of all sound sources and the soundscape characteristics of the marine environment.
机译:在台湾海峡两岸驼背海豚栖息地的两个地点进行了连续的水下声学录音:云林(yl,靠近货运道,水深8-12米)和waisanding(相对初始的水深1.5-4.5米),在2012年6月和12月之间的台湾偏离台湾。在以下四个频段中收集的数据,两分钟的平均声压水平(SPL)都计算在7月13日至30日和9月2日期2-20中所收集的数据:150-300Hz ,1.2-2.4 kHz,3-6 kHz,> 10 kHz。这些频段分别对应于来自货物船只,Croaker Fish Chorus,海豚口哨和海豚回声点击点击频段的声音。在每天四个离散时期进行WS和YL之间的这些频段中位数的比较:上午(04:00-09:59),白天(10:00-15:59),晚上(16:00- 21:59)和夜间(22:00-03:59)。结果在日落和日出之间的两个位置显示了1.2-2.4 kHz频段的声音升高。这表明Croaker Fish Chorus是晚上和夜间时期Soundscape的主导来源。虽然在150-300Hz的低频带中的SPL有时也很高,但这些高水平的发生也没有时间模式。接近150-300 Hz频段中的高性能发生的检查表明它们并不总是对应于货物船舶通道。假设流动噪声和其他流体动力学动作可能有助于该频带中的高拼接。本研究突出了沿海海洋生态系统中Soundscape的复杂性。 Soundscape特性取决于不同贡献来源的SPL,并且也受到局部沐浴术的高度影响和物理环境的动态。为了对海洋生物的潜在人为噪声影响进行全面评估,重要的是对所有声音来源和海洋环境的声景特征都很好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号