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首页> 外文期刊>Aquacultural Engineering: An International Journal >Fatigue assessment for the floating collar of a fish cage using the deterministic method in waves
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Fatigue assessment for the floating collar of a fish cage using the deterministic method in waves

机译:确定性方法在波浪中对鱼笼浮领的疲劳评估

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Fish farms have moved into the open sea in recent years and the failure risk of fish cages has increased in the harsher environmental conditions. Fatigue failure is an important limit state for the floating system of the fish cage under the long-term action of waves. A fatigue analysis of the high-density polyethylene (HDPE) floating system in waves is presented in this study based on the deterministic method and finite element analysis combined with a hydrodynamic model. As the basis of the fatigue assessment, a stress analysis of the floating pipes is first performed based on the joint use of the finite element model and the hydrodynamic model. The fatigue lifetime is then calculated using the Palmgren-Miner cumulative damage theory together with the deterministic method in which the stochastic sea state is decomposed into a reasonably high number of individual wave scatter diagrams. The results show that the recommended replacement period of the HDPE floating pipes is 20 years and that the fatigue lifetime of the floating pipes is more sensitive to the wave period than to the wave height. In addition, the effects of mooring line arrangements, wave incident angle and typhoons are also investigated. Comparisons of the fatigue lifetimes of the floating pipes for different mooring line arrangements indicate that the fatigue lifetime increases dramatically with increasing number of mooring lines. For a symmetrically arranged four point mooring fish cage, the most unfavourable wave loading angle is 45. Typhoons lead to a significant decrease in the fatigue lifetime of the floating pipes despite the short durations of the typhoons. (C) 2016 Elsevier B.V. All rights reserved.
机译:近年来,养鱼场已迁入公海,在恶劣的环境条件下,网箱的失败风险也有所增加。在波浪的长期作用下,疲劳失效是鱼笼漂浮系统的重要极限状态。基于确定性方法和有限元分析并结合流体力学模型,对波浪中高密度聚乙烯(HDPE)浮动系统进行了疲劳分析。作为疲劳评估的基础,首先基于有限元模型和流体动力学模型的联合使用对浮管进行应力分析。然后,使用Palmgren-Miner累积损伤理论以及确定性方法来计算疲劳寿命,在确定性方法中,随机海状态被分解为相当多的单个波散布图。结果表明,HDPE浮管的推荐更换期限为20年,并且浮管的疲劳寿命对波浪周期的敏感性比对波浪高度的敏感性更高。此外,还研究了系泊缆线布置,波浪入射角和台风的影响。对不同系泊绳布置的浮管疲劳寿命的比较表明,随着系泊绳数量的增加,疲劳寿命显着增加。对于对称布置的四点系泊鱼笼,最不利的波浪加载角为45。尽管台风持续时间短,但台风导致漂浮管的疲劳寿命显着降低。 (C)2016 Elsevier B.V.保留所有权利。

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