首页> 外文期刊>Jurnal Ilmu Kelautan Spermonde >SPATIO-TEMPORAL THERMAL FRONTS DISTRIBUTION DURING JANUARY-DECEMBER 2018 IN THE MAKASSAR STRAIT: AN IMPORTANT IMPLICATION FOR PELAGIC FISHERIES
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SPATIO-TEMPORAL THERMAL FRONTS DISTRIBUTION DURING JANUARY-DECEMBER 2018 IN THE MAKASSAR STRAIT: AN IMPORTANT IMPLICATION FOR PELAGIC FISHERIES

机译:2018年1月至2018年12月在Makassar海峡中的时空热锋分布:对皮艺渔业的重要意义

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Makassar Strait has been identified as an area of interesting studies for marine science and operational fisheries. It provides the unique ocean structures such as topographic feature, the main path of the Indonesia Throughflow (ITF) and dynamics of thermal fronts.? The aims of this study were to map the dynamic spatial and temporal of the thermal fronts, and to describe their implications to the pelagic fisheries. We used satellite data of sea surface temperature (SST) for the period of January-December 2018 with spatial and temporal resolutions of 4 km and monthly, respectively. For fishery data, we used sampling data of skipjack tuna fishing ground distributions in October and December 2018.? Thermal fronts throughout the year were estimated using a Single Image Edge Detection (SIED) algorithm and the available fishing ground data were overlain on the SST front map.? The results showed that the spatial distributions of thermal fronts along Makassar Strait tended to be different every month. However, the thermal fronts were consistently detected near the upwelling area from June to September. Skipjack tuna fishing grounds associated with fish aggregating devices (FADs) developed in the northern area of upwelling in October. Two month later, the FADs and free swimming skipjack fishing grounds again well formed around the same location. It implies that the formation of the thermal fronts after upwelling contributes the positive effect on development of pelagic fishery especially skipjack in Makassar Strait.
机译:Makassar海峡已被确定为海洋科学和运营渔业的有趣研究领域。它提供了独特的海洋结构,如地形特征,印度尼西亚的主要路径(ITF)和热线的动态。?本研究的目的是映射热线的动态空间和时间,并将其对木质渔业的影响描述。我们在2018年1月至12月期间使用海面温度(SST)的卫星数据,分别具有4公里和每月的空间和时间分辨率。对于渔业数据,我们在10月和12月在2018年12月使用了Skipjack金枪鱼捕鱼地面分布的抽样数据。使用单个图像边缘检测(SIED)算法估计全年全年的热终端,并且可用的渔场数据在SST前地图上覆盖。结果表明,沿麦克塞萨州海峡的热线空间分布往往每月不同。然而,从6月至9月,持续检测到热线。 Skipjack金枪鱼渔场与10月份北方北部地区开发的鱼汇码装置(时尚)相关联。两个月后,上司和自由游泳跳水钓鱼钓鱼地面再次形成在同一位置。它意味着升高后的热终端的形成有助于对毛皮海峡的山羊渔业的发展产生积极影响。

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