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聚乙烯网衣破损因素下的水动力特性与流场模拟

唐元龙 谢迎春 袁昊训 李相坤

渔业现代化2024,Vol.51Issue(6):20-30,11.
渔业现代化2024,Vol.51Issue(6):20-30,11.DOI:10.3969/j.issn.1007-9580.2024.06.003

聚乙烯网衣破损因素下的水动力特性与流场模拟

Hydrodynamic characteristics and flow field simulation study under the damage factors of polyethylene netting

唐元龙 1谢迎春 1袁昊训 1李相坤1

作者信息

  • 1. 中国海洋大学工程学院,山东,青岛 266100
  • 折叠

摘要

Abstract

The integrity of the netting in aquaculture cages is crucial for maintaining farming efficiency and ecological balance.Damaged netting reduces performance and may lead to the escape of cultured organisms,resulting in both economic and ecological losses.To assess the impact of netting damage on hydrodynamic characteristics and flow fields,and to explore preliminary methods for damage localization and severity assessment to guide the optimization of cage maintenance strategies,a unidirectional fluid-structure interaction numerical model based on ANSYS Workbench has been established.The model simulates the flow field around the netting in the fluid domain,obtaining data such as pressure on the netting surface,which is then transferred to the solid domain to calculate the deformation and stress distribution of the netting under fluid loads,achieving hydrodynamic responses of netting with varying degrees of damage at flow velocities of 0.1 to 1 m/s.The results show that the drag of the netting increases with the square of the flow velocity,and the increase in damage degree leads to a decrease in drag,especially when the damage is significant.The flow velocity decay rate is relatively stable under different damage degrees,indicating that the impact of netting damage on the overall flow velocity decay rate is limited.Under a flow velocity of 0.5 m/s,the influence of damaged netting on the flow velocity decay zone in front of the netting is limited,but damage makes the phenomenon of accelerated flow between the net lines more apparent,causing significant interference with the flow velocity decay zone behind.The overall maximum deformation and maximum stress of the netting do not change significantly with the increase in damage degree,but the stress near the damaged area increases significantly.This study not only enhances the understanding of the hydrodynamic characteristics of the netting but also provides important technical support for the design,performance evaluation,and risk management of aquaculture cages.

关键词

破损网衣/水动力特性/流固耦合/数值模拟

Key words

damaged netting/hydrodynamic characteristics/fluid-structure interaction/numerical simulation

分类

农业科技

引用本文复制引用

唐元龙,谢迎春,袁昊训,李相坤..聚乙烯网衣破损因素下的水动力特性与流场模拟[J].渔业现代化,2024,51(6):20-30,11.

基金项目

国家自然科学基金项目(52471352) (52471352)

渔业现代化

OA北大核心CSTPCD

1007-9580

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