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Determination of the Utilization and Effort Level of Mackerel Scad (Decapterus spp) in the Bitung Waters North Sulawesi

机译:确定在北苏拉威西省比通水域的鲭鱼鳞屑(Decapterus spp)的利用和努力水平

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Determination of utilization level and effort level of scad mackerel (Decapterus spp) are very important to know the status of fisheries management. This fish needs to be managed well because even as a renewable natural resources, but can undergo depletion or extinction. One of the approach in the management of fish resources is by mathematics modeling. In this research using Surplus Production Model (SPM) with 5 estimator methods, that are: Schaefer, Fox, Schnute, Walter-Hilborn, and Clarke Yoshimoto Pooley. The analysis was performed aiming to get the best estimate for the surplus production model to determine the maximum sustainable yields (MSY), utilization level, and effort level of scad mackerel. The criteria of the best model (estimator) are: sign suitability of regression equation, value of coefficient determination, validation values (residual), and significance of regression coefficients. From the best model by using the formula can be determined the maximum sustainable yields (MSY) of catching, utilization level, and effort level. The data of catch and fishing effort of scad mackerel collected from the Marine and Fisheries the Bitung City and North Sulawesi Province from 1998 - 2016. The best SPM, which is used to assess the potential of scad mackerel is Schaefer Model. Optimal effort (EMSY) of 4,449 trips per year, with catch of optimal CMSY19,793.601 tons per year. The effort level for 2014 is 86.58%, which shows the quite efficient effort, the utilization level of 73.10% showing the production still can be increased.
机译:确定鲭鱼(Decapterus spp)的利用水平和努力水平对于了解渔业管理状况非常重要。这种鱼需要妥善管理,因为即使作为可再生的自然资源,它也可能会耗竭或灭绝。在鱼类资源管理中的一种方法是通过数学建模。在这项研究中,我们使用剩余生产模型(SPM)和5种估算方法,分别是:谢弗(Schaefer),福克斯(Fox),史努特(Schnute),沃尔特·希尔伯恩(Walter-Hilborn)和克拉克·吉本·普尔(Clarke Yoshimoto Pooley)。进行分析的目的是为了获得对剩余生产模型的最佳估计,以确定最大可持续产量(MSY),利用率水平和鲭鱼的努力水平。最佳模型的标准(估计量)为:回归方程的符号适用性,系数确定的值,验证值(残差)和回归系数的显着性。通过使用公式,可以从最佳模型确定捕捞,利用水平和努力水平的最大可持续产量(MSY)。 1998年至2016年从比通市和北苏拉威西省海洋与渔业处收集的鲭鱼的捕捞和捕捞努力数据。用于评估鲈鱼鲭鱼潜力的最佳SPM是Schaefer模型。每年的最佳旅程(EMSY)为4,449次,而每年的最佳CMSY捕获量为19,793.601吨。 2014年的努力水平为86.58%,显示出相当有效的努力,利用率为73.10%,表明仍可以提高产量。

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