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Predicting potential fishing zones for Pacific saury (Cololabis saira) with maximum entropy models and remotely sensed data

机译:利用最大熵模型和遥感数据预测太平洋秋刀鱼的潜在捕捞区

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摘要

Fishing locations for Pacific saury (Cololabis saira) obtained from images of the Operational Linescan System (OLS) of the U.S. Defense Meteorological Satellite Program, together with maximum entropy models and satellite-based oceanographic data of chlorophylla alpha concentration (chl-alpha), sea-surface temperature (SST), eddy kinetic energy (EKE), and sea-surface height anomaly (SSHA), were used to evaluate the effects of oceanographic conditions on the formation of potential fishing zones (PFZ) for Pacific saury and to explore the spatial variability of these features in the western North Pacific. Actual fishing regions were identified as the bright areas created by a 2-level slicing method for OLS images collected August-December during 2005-2013. The results from a Maxent model revealed its potential for predicting the spatial distribution of Pacific saury and highlight the use of multispectral satellite images for describing PFZs. In all monthly models, the spatial PFZ patterns were explained predominantly by SST (14-16 degrees C) and indicated that SST is the most influential factor in the geographic distribution of Pacific saury. Also related to PFZ formation were EKE and SSHA, possibly through their effects on the feeding grounds conditions. Concentration of chl-a had the least effect among other environmental factors in defining PFZs, especially during the end of the fishing season.
机译:从美国国防气象卫星计划的操作线扫描系统(OLS)的图像获得的太平洋秋刀鱼(Cololabis saira)的捕鱼地点,以及最大熵模型和基于叶绿素α浓度(chl-alpha)的卫星海洋数据,海面温度(SST),涡动能(EKE)和海面高度异常(SSHA)用于评估海洋条件对太平洋秋刀鱼的潜在捕捞区(PFZ)形成的影响并探索北太平洋西部这些特征的空间变异性。对于2005-2013年8月至12月收集的OLS图像,使用2级切片方法将实际捕鱼区域确定为亮区。 Maxent模型的结果显示了其预测太平洋刀鱼的空间分布的潜力,并强调了使用多光谱卫星图像来描述PFZ。在所有月度模型中,空间PFZ模式主要由SST(14-16摄氏度)解释,并表明SST是太平洋秋刀鱼的地理分布中影响最大的因素。 EKE和SSHA也可能与PFZ的形成有关,可能是由于它们对饲养场条件的影响。在确定PFZ时,尤其是在捕鱼季节结束时,在其他环境因素中,chl-a的浓度影响最小。

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