首页> 外文期刊>Journal of Applied Ichthyology >Spatio-temporal dynamics in the location of the fishing grounds and catch per unit effort (CPUE) for Chilean jack mackerel (Trachurus murphyi Nichols, 1920) from Chinese trawl fleets on the high seas of the Southeast Pacific Ocean, 2001-2010
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Spatio-temporal dynamics in the location of the fishing grounds and catch per unit effort (CPUE) for Chilean jack mackerel (Trachurus murphyi Nichols, 1920) from Chinese trawl fleets on the high seas of the Southeast Pacific Ocean, 2001-2010

机译:2001-2010年来自中国拖网船队在东南太平洋公海的智利杰克鲭鱼(Trachurus murphyi Nichols,1920)的渔场所在地时空动态和单位捕捞量(CPUE)

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The decadal spatio-temporal distribution of the fishing effort and catch per unit effort (CPUE) for Chilean jack mackerel, Trachurus murphyi, stock are poorly understood. Data from the Chinese jack mackerel fleet was used to describe the location of the fishing effort and the relationship between standardized CPUE and sea surface temperatures (SST) during the period 2001-2010. A significant change in the spatio-temporal distribution of fishing effort and standardized CPUE was observed for jack mackerel during the study period. From January to March, the average CPUE was generally 15 tonnes (t) per net, except for 2007-2009. CPUE increased significantly during the autumn-winter (April to August), then gradually decreased in the spring and early summer (September to December). Average standardized CPUE in 2001-2005 was 23.3t per net, but decreased to 19.7t per net in 2006-2010. The change in the gravity center location of CPUE between months was similar during the primary fishing period (autumn to winter) in 2001-2006. After 2006, the pattern began to differ in July-October, which resulted in fishers spending more time to search for aggregations. A seasonal change was observed in the range of SSTs associated with high CPUE. Generally, the optimal SST range was from 13.0-15.0 degrees C in autumn, 12.0-14.0 degrees C in winter, 13-16 degrees C in spring, and 15-19 degrees C before 2006. However, a 1-2 degrees C decrease in the optimal range in recent years was associated with a shift in the fishing grounds location to the southern area. In 2009, the optimal SST range was lower than in all other years. Taken together, the results suggest that a more thorough understanding of the seasonal or decadal relationship between SST and location of the fishing grounds is critical to improving the efficiency of the fishery and its management.
机译:智利杰克鲭鱼(Trachurus murphyi)种群的捕捞努力量和单位努力量(CPUE)的年代际时空分布了解甚少。来自中国鲭鱼船队的数据用于描述捕捞活动的地点以及2001-2010年期间标准化CPUE与海面温度(SST)之间的关系。在研究期间,观察到鲭鱼的捕捞努力和标准CPUE的时空分布发生了显着变化。从1月到3月,除2007-2009年外,平均CPUE一般低于每吨15吨。在秋季冬季(4月至8月),CPUE显着增加,然后在春季和初夏(9月至12月)逐渐下降。 2001-2005年的平均标准CPUE为每网23.3吨,但在2006-2010年下降至每网19.7吨。在2001-2006年的主要捕捞期(秋季至冬季),CPUE重心位置在几个月之间的变化相似。 2006年之后,这种模式在7月至10月开始有所不同,这导致渔民花费更多的时间来寻找聚集体。在与CPUE高相关的SST范围内观察到季节变化。通常,最佳SST范围是秋天的13.0-15.0摄氏度,冬天的12.0-14.0摄氏度,春天的13-16摄氏度以及2006年前的15-19摄氏度。但是降低1-2摄氏度近年来,在最佳范围内的捕捞量与渔场地点向南部地区的转移有关。 2009年,最佳SST范围低于所有其他年份。综上所述,结果表明,对SST与渔场位置之间的季节性或年代关系的更透彻了解对于提高渔业效率及其管理至关重要。

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