首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >NUMERICAL SIMULATION OF THE DOMINO EFFECT OF MOORING SYSTEM FAILURE FOR AN AQUACULTURE NET CAGE UNDER WAVES AND CURRENTS
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NUMERICAL SIMULATION OF THE DOMINO EFFECT OF MOORING SYSTEM FAILURE FOR AN AQUACULTURE NET CAGE UNDER WAVES AND CURRENTS

机译:波浪和电流水产养殖网笼的系泊系统失效的多米诺骨牌效应的数值模拟

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Up to date, the mooring system failure of aquaculture net cage remains a continuing problem, especially the domino effect, which often leads to huge economic losses. Thus, this study aims to investigate the domino effect of a mooring system of a net cage under waves and currents. In this study, a time-domain numerical model based on the Morison equation and the lumped mass method is applied. A full-scale net cage system widely used in a local sea area is adopted. A 50 years return period waves with a strong following current is considered to be the design condition. It can be expected that the tension on the remaining upstream anchor increases dramatically when an upstream anchor is lost. Then, the domino effect occurs if the maximum tension on the remaining anchor exceeds its design condition. Therefore, in this simulation, the initial failure is considered to be a man-made event at a preset time, but the rest failures are resulted from exceeding the breaking strength of a rope. Both the current-only condition and the wave-current condition have been examined. The results including mooring line tension, volume reduction coefficient and rigid body motion are discussed. In addition, the results show that the failure sequence of anchor is different between the current-only condition and the wave-current condition.
机译:迄今为止,水产养殖网笼的系泊系统失败仍然是一个持续的问题,尤其是多米诺骨牌效应,这通常会导致巨大的经济损失。因此,本研究旨在研究波浪和电流下净笼的系泊系统的多米诺效应。在该研究中,应用了基于Morison方程和集总质量法的时域数值模型。采用广泛应用于当地海域的全规模净笼系统。 50年的返回时期具有强大电流的返回周期波被认为是设计条件。当上游锚丢失时,可以预期剩余上游锚的张力显着增加。然后,如果剩余锚的最大张力超过其设计条件,则发生多米诺骨效应。因此,在该模拟中,初始故障被认为是预设时间的人为事件,但剩余的故障被导致超过绳索的断裂强度。已经检查了仅当前条件和波浪流条件。讨论了包括系泊线张力,体积减速系数和刚体运动的结果。另外,结果表明,锚的故障序列在仅当前条件和波通条件之间的不同。

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