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Investigating the utilization of polyethylene pipe for automated hauling system in set net fishery

机译:研究净渔业自动牵引系统聚乙烯管的利用

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The use of an automated net-hauling system using four polyethylene (PE) pipes is proposed in this study to increase the efficiency of set net fishery. In this system, the pipes are installed on the seabed beneath a box chamber net. Compressed air is injected into the first pipe at the slope net and then into the other pipes in succession. In this system, the fish are cornered between the fourth pipe and the end of the box chamber net. The performance of the system from the second to the fourth pipe is evaluated using numerical analysis, water tank tests, and field experiments. In addition, a static numerical model for the deformation of the PE pipes is developed using the theory of finite deformation and is validated by the results of the water tank and coastal sea experiments. The results show that the maximal bending stress of the full-scale pipe is about 10 MPa, which is within the allowable range of 23 MPa, indicating that the risk of pipe breakage in the automated net-hauling system is considerably low. Therefore, the automated net-hauling system developed in this study has high application value and development potential in set net fishery.
机译:在本研究中提出了使用使用四种聚乙烯(PE)管的自动净牵引系统,以提高净渔业的效率。在该系统中,管道安装在箱室网的海底上。压缩空气在斜面网的第一管中注入第一管,然后连续进入其他管道。在该系统中,鱼在第四管道和箱室网的末端之间进行开槽。使用数值分析,水箱试验和现场实验评估系统从第二管的性能。另外,使用有限变形理论开发了PE管变形的静态数值模型,并通过水箱和沿海海拔的结果验证。结果表明,全尺寸管道的最大弯曲应力为约10MPa,其在23MPa的允许范围内,表明自动净空牵引系统中的管道破损风险相当低。因此,本研究中开发的自动净化系统具有套装净渔业的应用价值和发展潜力。

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