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The Structural Response Investigation of Modular Pontoon Collar Floating Cage due to Current Load to Support Fish Farming Activities

机译:电流负荷引起的模块化浮桥圈浮笼的结构响应调查,以支撑鱼类农业活动

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The size of net cages increases rapidly, reaching volumes above current experience. More exposed locations are used for fish production, introducing higher loads on the net cage and fish farm from strong water currents and large waves. Strength analysis can be a useful tool for development of net-cage designs to avoid escape of fish and ensure sufficient volume for good fish welfare and water quality. The main objectives of this research are to investigate the structural response of modular pontoon collar floating cage due to the current load to support the fish farming activities. Strength analysis was performed using commercial explicit finite element software to calculate the distribution of loads in the net cage due to current, weights and gravity. The net cage was modeled using truss elements that represented several parallel twines. Sub-elements allowed the trusses to buckle in compression, and only negligible compressive forces were seen in the numerical results. Resulting drag loads and cage volume were shown to be dependent on the net cage size and collar shape.
机译:净笼的尺寸迅速增加,达到当前经验的卷。更多暴露的位置用于鱼类生产,从强水流和大波浪中引入净笼和鱼类农场的较高负载。强度分析可以是开发网上笼式设计的有用工具,以避免逃避鱼类,并确保足够的鱼类福利和水质。本研究的主要目标是探讨模块化浮桥圈浮笼的结构响应,因为电流负荷支持鱼类养殖活动。使用商业明确的有限元件软件进行强度分析,以计算由于电流,重量和重力引起的网笼中的负载分布。网卡用桁架元素建模,代表了几个平行缠绕。子元素允许桁架在压缩中扣,并且在数值结果中只看到了可忽略的压缩力。结果拖动载荷和持卡载体依赖于净笼尺寸和套环形状。

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