基于双频识别声纳(DIDSON)的辽东湾近海沙海蜇监测的应用研究
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王彬(1981–),男,研究员,主要从事大型水母自然生态学研究与渔业资源增殖放流效果评估.E-mail:wb81321@sina.com

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S931

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辽宁省自然科学基金项目(2019-ZD-0387; 2019-MS-180); 国家重点研究发展计划项目(2017YFC1404400); 国家环境保护近岸海域生态环境重点实验室基金专项(201804); 辽宁省兴辽英才项目(XLYC2007068); 国家自然科学基金项目(41906138, 31770458)


Application of Dual-Frequency Identification Sonar (DIDSON) to monitor giant jellyfish Nemopilema nomurai in inshore waters of Liaodong Bay
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    摘要:

    为了解双频识别声纳(DIDSON)在近海海域大型水母沙海蜇(Nemopilema nomurai)监测中的效果, 本研究于 2017 年 7 月、8 月通过 DIDSON 的走航观测对辽东湾近海伞径 16~81 cm (7 月份平均伞径 33.01 cm±13.17 cm, 8 月份平均伞径 57.03 cm±13.44 cm)的大型水母沙海蜇开展丰度和垂直分布的监测调查, 并同步结合传统网具调查, 以验证和比对 DIDSON 观测在大型水母沙海蜇监测中的效果。调查结果显示: DIDSON 观测影像可直观显示沙海蜇的数量及其在水层中的位置。7 月份 3 个调查断面声纳观测的沙海蜇丰度分别是 6.13 ind/1000 m3、6.71 ind/1000 m3、 7.93 ind/1000 m3, 平均丰度为(6.92±0.75) ind/1000 m3。8 月份 3 个调查断面声纳观测的沙海蜇丰度分别是 1.41 ind/1000 m3、 1.23 ind/1000 m3、0.55 ind/1000 m3,平均丰度为(1.07±0.37) ind/1000 m3。比对锚流网调查沙海蜇的丰度, 7 月份和 8 月份 DIDSON 监测的沙海蜇平均丰度分别是网具调查的 4.89 倍和 3.95 倍。声纳观测影像显示沙海蜇主要栖息在调查海域中上层水域(1.1~10 m), 底层水域沙海蜇出现的少。比起传统的网具调查, DIDSON 更加精准的监测调查到调查海区沙海蜇的丰度, 并观测到沙海蜇的垂直分布, 证明双频识别声纳可以适用于浅海大型水母沙海蜇的监测调查工作。研究结果表明, DIDSON 观测可以扩展大型水母沙海蜇监测的内容, 在对其行为学的观测上具有较大的优势。通过延长 DIDSON 走航式观测时间, 扩大 DIDSON 探测范围, 并结合传统网具, 可以更加精准的开展沙海蜇数量的监测。

    Abstract:

    Since the end of the 20th century, giant jellyfish blooms have occurred on a nearly annual basis around the globe, with disastrous effects on the ecology of marine systems, fishery resources, coastal industries, and coastal tourism. Researchers, both domestically and abroad, have thoroughly investigated this phenomenon using nets, visual observations, underwater cameras, acoustic technology, aerial imagery, and other means to elucidate the underlying mechanisms of giant jellyfish blooms. In recent years, acoustic technology has been used to investigate the stock and behavior of giant jellyfish globally. These technologies have demonstrated favorable monitoring capabilities and the potential for their application in both resource assessment and the kinematics of the giant jellyfish. To determine the effect of Dual-Frequency Identification Sonar (DIDSON) on giant jellyfish Nemopilema nomurai monitoring in Liaodong Bay, we used DIDSON to determine quantitatively the abundance and distribution of giant jellyfish N. nomurai with individual medusae of 16–81 cm (33.01 cm±13.17 cm in July and 57.03 cm±13.44 cm in August) bell diameter in inshore waters of Liaodong Bay in July and Augus, 2017, and jellyfish anchor flow net samples were conducted simultaneously to verify DIDSON observations in the monitoring of large jellyfish. The survey results showed that DIDSON observation images can directly display the number of jellyfish and their positions in the water layer. The abundance of N. nomurai estimated by the DIDSON was 6.13 ind/(1000 m3 ), 6.71 ind/(1000 m3 ), 7.93 ind/(1000 m3 ) with mean (6.92±0.75) ind/(1000 m3 ) in July, and 1.41 ind/(1000 m3 ), 1.23 ind/(1000 m3 ), 0.55 ind/(1000 m3 ) with mean (1.07±0.37) ind/(1000 m3 ) in August. The overall average abundance of jellyfish estimated by DIDSON in July and August was 4.89 times and 3.95 times higher than that estimated by net, respectively. DIDSON images showed that N. nomurai mainly inhabited the upper and middle waters (1.1–10 m), with fewer in the bottom layer. Compared with the traditional network survey, DIDSON can more accurately observe the abundance of jellyfish in the survey area and their vertical distribution. The results suggest that it is effective to monitor the giant jellyfish using DIDSON in shallow water. The results showed that DIDSON observation can expand the monitoring content of large jellyfish, affording great advantages in the observation of its behavior. By extending the DIDSON navigation observation time and expanding its detection range, and in combination with traditional nets, the abundance of large jellyfish can be monitored more accurately.

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王彬,刘修泽,王小林,吉光,董婧.基于双频识别声纳(DIDSON)的辽东湾近海沙海蜇监测的应用研究[J].中国水产科学,2022,29(8):1223-1235
WANG Bin, LIU Xiuze, WANG Xiaolin, JI Guang, DONG Jing. Application of Dual-Frequency Identification Sonar (DIDSON) to monitor giant jellyfish Nemopilema nomurai in inshore waters of Liaodong Bay[J]. Journal of Fishery Sciences of China,2022,29(8):1223-1235

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  • 在线发布日期: 2022-09-08
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