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A modeling approach to identify optimal habitat and suitable fishing grounds for neon flying squid (Ommastrephes bartramii) in the Northwest Pacific Ocean

机译:确定西北太平洋霓虹飞乌贼(Ommastrephes bartramii)的最佳栖息地和合适渔场的建模方法

摘要

We developed a habitat suitability index (HSI) model toudunderstand and identify the optimal habitat and potential fishing grounds for neon f lying squid (Ommastrephesudbartramii) in the Northwest Pacific Ocean. Remote sensing data, including sea surface temperature, sea surface salinity, sea surface height, and chlorophyll-a concentrations, as well as fishery data from Chineseudmainland squid f leets in the main fishing ground (150–165°E longitude) from August to October, from 1999 to 2004, were used. The HSI model was validated by using fishery data from 2005. The arithmetic mean modeling with three of the environmental variables—sea surface temperature, sea surface height anomaly, and chlorophyll- a concentrations—was defined as the most parsimonious HSI model. In 2005, monthly HSI values >0.6 coincided with productive fishingudgrounds and high fishing effort from August to October. This result implies that the model can reliably predict potential f ishing grounds for O. bartramii. Because spatially explicit fisheries and environmental data are becoming readily available, it is feasible to develop a dynamic, near real-time habitat model for improving the process of identifying potential fishing areas for and optimal habitats of neon flying squid.
机译:我们开发了栖息地适应性指数(HSI)模型,以了解并确定西北太平洋霓虹灯鱿鱼(Ommastrephes udbartramii)的最佳栖息地和潜在渔场。遥感数据,包括海面温度,海面盐度,海面高度和叶绿素a浓度,以及八月以来主要渔场(经度150-165°E)中中国乌贼鱿鱼的渔业数据从1999年到2004年10月。通过使用2005年的渔业数据对HSI模型进行了验证。具有三个环境变量(海面温度,海面高度异常和叶绿素a浓度)的算术平均值建模被定义为最简化的HSI模型。在2005年,每月的HSI值> 0.6,同时在8月至10月期间有高产的渔场地面和较高的捕捞努力。该结果表明该模型可以可靠地预测巴氏产卵线虫的潜在产地。由于空间明晰的渔业和环境数据变得随时可用,因此开发动态的,近实时的栖息地模型以改善识别霓虹飞乌贼的潜在捕鱼区域和最佳栖息地的过程是可行的。

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