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The sinking performance of the tuna purse seine gear with large-meshed panels using numerical method

机译:大网眼金枪鱼围网渔船下沉性能的数值计算

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This paper reports an improved version of the numerical method used in a previous study on the dynamic simulation of purse seine gear in three dimensions. The improvement is achieved by refining the mass–spring model to take into account both the drag coefficient as a function of the attack angle and Reynolds number as applied to the setting operation of the purse seine gear. The validity of the numerical simulation is assessed by comparing the measured and calculated values for the sinking depth of the net. The numerical simulation is used to examine the sinking performance of the different designs in which large meshed-panels and netting materials are used together in the main body section of the netting. The results indicate that, compared to the prototype net, nets bearing larger mesh panels require more sinking depth with much more pronounced operational depth at corresponding times of the fishing operation when heavier netting material is used. Moreover, in the new net designs, lower tensile forces are exerted on both ends of the pure wire during pursing. The new net constructions with regard to the operational depth represent alternatives that may reduce the potential problem of frequent failed setting of the tuna purse seine gear.
机译:本文报告了先前在三维围网齿轮动态仿真研究中使用的数值方法的改进版本。通过改进质量弹簧模型,同时考虑到作为迎角的函数的阻力系数和应用于围网渔具设置操作的雷诺数,可以实现改进。通过比较网的沉没深度的测量值和计算值来评估数值模拟的有效性。数值模拟被用来检验不同设计的下沉性能,其中在网的主体部分中一起使用大的网格板和网材料。结果表明,与原型网相比,带有较大网孔板的网在使用较重的网状材料时,在捕捞作业的相应时间需要更大的下陷深度和更明显的作业深度。而且,在新的网设计中,在拉制过程中,较低的张力施加在纯线的两端。关于操作深度的新的网状结构是替代方案,可以减少金枪鱼围网渔具频繁固定失败的潜在问题。

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