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基于Argo数据的热带大西洋大眼金枪鱼时空分布

杨胜龙1,2,靳少非3,化成君1,戴阳1**   

  1. (1农业部东海与远洋渔业资源开发利用重点实验室, 上海 200090; 2中国水产科学研究院渔业资源与遥感信息技术重点开放实验室, 上海 200090; 3中国科学院大气物理研究所东亚区域气候环境重点实验室, 北京 100029)
  • 出版日期:2015-02-18 发布日期:2015-02-18

Spatial-temporal distribution of bigeye tuna Thunnus obesus in the tropical Atlantic Ocean based on Argo data.

YANG Sheng-long1,2, JIN Shao-fei3, HUA Cheng-jun1, DAI Yang1   

  1. (1Ministry of Agriculture  Key Laboratory of East China Sea & Oceanic Fishery Resources Exploitation and Utilization,  Shanghai 200090, China; 2Key and Open Laboratory of Remote Sensing Information Technology in Fishing Resource, East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Shanghai 200090, China; 3Key Laboratory of Regional ClimateEnvironment for Temperate East Asia, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China)
  • Online:2015-02-18 Published:2015-02-18

摘要:

为了解热带大西洋延绳钓大眼金枪鱼适宜渔获水温的等温线时空分布,分析大眼金枪鱼适宜的垂直和水平空间分布范围,采用Argo浮标剖面温度数据,运用Kriging方法重构热带大西洋9、12、13和15 ℃月平均等温线场,网格化计算了12、13 ℃等温线深度值和温跃层下界深度差,并结合大西洋金枪鱼国际养护委员会(ICCAT)大眼金枪鱼延绳钓渔业数据,绘制了12、13 ℃等温线深度与月平均单位捕捞努力渔获量(CPUE)的空间叠加图,用于分析大眼金枪鱼中心渔场CPUE时空分布和高渔获率的水温等值线时空分布的关系.结果表明: 热带大西洋大眼金枪鱼中心渔场延绳钓高渔获率的水层垂直分布在温跃层下界以下区域,在表层以下150~450 m深度.在水平空间上,12 ℃等温线高值CPUE出现的深度值大多小于300 m,集中分布在190~260 m,深度值超过400 m几乎没有CPUE值.大眼金枪鱼水平空间分布受12 ℃等温线影响.13 ℃等温线高值CPUE出现的深度值大多小于250 m,集中分布在150~230 m,深度值超过300 m几乎没有渔获.采用频次分析和经验累积分布函数计算其适宜次表层环境因子分布:12 ℃等温线190~260 m;13 ℃等温线160~240 m;12 ℃深度差 -10~100 m;13 ℃深度差 -40~60 m.文章初步得出热带大西洋大眼金枪鱼中心渔场适宜的水平、垂直深度值分布区间,结果可以辅助寻找中心渔场位置,同时指导投钩深度,为大西洋大眼金枪鱼实际生产作业和资源管理提供理论支持.

 

Abstract: In order to analyze the correlation between spatial-temporal distribution of the bigeye tuna (Thunnus obesus) and subsurface factors, the study explored the isothermal distribution of subsurface temperatures in the bigeye tuna fishing grounds in the tropical Atlantic Ocean, and built up the spatial overlay chart of the isothermal lines of 9, 12, 13 and 15 ℃ and monthly CPUE (catch per unit effort) from bigeye tuna longlines. The results showed that the bigeye tuna mainly distributed in the water layer (150-450 m) below the lower boundary depth of thermocline. At the isothermal line of 12 ℃, the bigeye tuna mainly lived in the water layer of 190-260 m, while few individuals were found at water depth more than 400 m. As to the 13 ℃ isothermal line, high CPUE often appeared at water depth less than 250 m, mainly between 150-230 m, while no CPUE appeared at water depth more than 300 m. The optimum range of subsurface factors calculated by frequency analysis and empirical cumulative distribution function (ECDF) exhibited that the optimum depth range of 12 ℃ isothermal depth was 190-260 m and the 13 ℃ isothermal depth was 160-240 m, while the optimum depth difference range of 12 ℃ isothermal depth was -10 to 100 m and the 13 ℃ isothermal depth was -40 to 60 m. The study explored the optimum range of subsurface factors (water temperature and depth) that drive horizontal and vertical distribution of bigeye tuna. The preliminary result would help to discover the central fishing ground, instruct fishing depth, and provide theoretical and practical references for the longline production and resource management of bigeye tuna in the Atlantic Ocean.