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首页> 外文期刊>Fisheries Oceanography >Oceanographic investigation of the American Samoa albacore (Thunnus alalunga) habitat and longline fishing grounds
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Oceanographic investigation of the American Samoa albacore (Thunnus alalunga) habitat and longline fishing grounds

机译:美属萨摩亚长鳍金枪鱼(Thunnus alalunga)栖息地和延绳钓场的海洋学调查

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The American Samoa fishing ground is a dynamic region with strong mesoscale eddy activity and temporal variability on scales of <1 week. Seasonal and inter-annual variability in eddy activity, induced by baro-clinic instability that is fueled by horizontal shear between the eastward-flowing South Equatorial Counter Current (SECC) and the westward-flowing South Equatorial Current (SEC), seems to play an important role in the performance of the longline fishery for albacore. Mesoscale eddy variabilityin the American Samoa Exclusive Economic Zone (EEZ) peaks from March to April, when the kinetic energy of the SECC is at its strongest. Longline albacore catch tends to be highest at the eddy edges, while albacore catch per effort (CPUE) shows intra-annual variability with high CPUE that lags the periods of peak eddy activity by about 2 months. When CPUE is highest, the values are distributed toward the northern half of the EEZ, the region affected most by the SECC. Further indication of the possible importance of the SECC for longline performance is the significant drop in eddy variability in 2004 when compared with that observed in 2003 - resulting from a weak SECC -which was accompanied by a substantial drop in albacore CPUE rates and a lack of northward intensification of CPUE. From an ecosystem perspective, evidence to support higher micronekton biomass in the upper 200 m at eddy boundaries is inconclusive. Al-bacore's vertical distribution seems to be governed bythe presence of prey. Albacore spend most of their time between 150 and 250 m, away from the deep daytime and shallow nighttime sonic scattering layers, at depths coinciding with those of small local maxima in micronekton biomass whose backscattering properties are consistent with those of albacore's preferred prey. Settling depths of longline sets during periods of decreased eddy activity correspond to those most occupied by albacore, possibly contributing to the lower CPUE by reducing catchability through rendering bait less attractive to albacore in the presence of prey.
机译:美属萨摩亚渔场是一个动态区域,涡旋活动很强,尺度变化小于1周。涡流活动的季节性和年际变化,是由东斜南赤道逆流(SECC)和西斜南赤道逆流(SEC)之间的水平剪切推动的大气压气候不稳定引起的。在长鳍金枪鱼延绳钓渔业表现中的重要作用。美属萨摩亚专属经济区(EEZ)的中尺度涡流变异在3月至4月达到峰值,当时SECC的动能最强。延绳钓长尾ba捕获量往往在涡流边缘最高,而长尾effort捕获力(CPUE)显示年内变化,而高CPUE则使峰值涡流活动时间滞后了约2个月。当CPUE最高时,这些值将分布在EEZ的北半部,即受SECC影响最大的区域。 SECC对于延绳钓性能的可能重要性的进一步说明是,与2003年相比,2004年涡流变异性显着下降(这是由于SECC较弱所致),伴随而来的是长鳍CPUE率大幅下降和缺乏CPUE向北集约化。从生态系统的角度来看,没有证据支持涡旋边界上方200 m内较高的微核生物量。 Al-bacore的垂直分布似乎受到猎物的影响。长鳍金枪鱼的大部分时间都在150至250 m之间,远离白天的深层和浅夜的声波散射层,其深度与微核生物质中局部极小值的深度相吻合,后者的反向散射特性与长鳍金枪鱼的首选猎物一致。在涡旋活动减少期间,延绳钓集合的沉降深度对应于长鳍金枪鱼占据最多的深度,这可能通过降低饵料在饵料存在下对长鳍金枪鱼的吸引力而降低可捕获性,从而导致较低的CPUE。

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