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首页> 外文期刊>Ocean Engineering >Rogue wave impact on a tension leg platform: The effect of wave incidence angle and mooring line tension
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Rogue wave impact on a tension leg platform: The effect of wave incidence angle and mooring line tension

机译:浪潮对腿部平台的冲击:波浪入射角和系泊索张力的影响

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摘要

An understanding of the interaction between extreme ocean conditions and floating offshore platforms is required for their design and safe operation. Rogue wave impacts cannot easily be handled by traditional analytic or computational techniques. Here we use Smoothed Particle Hydrodynamics (SPH) to simulate the fully non-linear dynamics of a large breaking wave on a semi-submersible tension leg platform. We consider the effect of wave impact angle and mooring line pre-tension on the subsequent motion of the platform, and predict the maximum tension in each mooring line. The primary effect of wave impact angle is to determine the peak mooring line tension and line "slackness" during wave impact. A 45° impact results in the maximum tension on the leading line. The maximum heave, surge and pitch vary only slightly with wave angle. As mooring line pre-tension is increased, the duration of heave and pitch excursions is reduced. Peak mooring tension increases only slightly, but the incidence of mooring line "slack" decreases significantly for higher pre-tension. Properly applied, SPH has a wide application in predicting non-linear wave-structure interactions. Genuine opportunity exists for using SPH in the design of structures and mooring systems exposed to extreme ocean events such as rogue wave impact.
机译:设计和安全操作需要了解极端海洋条件和浮动海上平台之间的相互作用。传统的分析或计算技术无法轻松处理流浪冲击。在这里,我们使用平滑粒子流体动力学(SPH)来模拟半潜式张力腿平台上大破波的完全非线性动力学。我们考虑波浪冲击角和系泊索预应力对平台后续运动的影响,并预测每条系泊索的最大张力。波浪冲击角的主要作用是确定波浪冲击过程中的最大系泊缆线张力和缆线“松弛度”。 45°撞击会导致导线上的最大张力。最大升沉,喘振和俯仰仅随波角变化很小。随着系泊绳预张力的增加,起伏和俯仰偏移的持续时间减少。峰值系泊张力仅略有增加,但是对于较高的预张力,系泊绳“松弛”的发生率显着降低。正确应用后,SPH在预测非线性波结构相互作用中具有广泛的应用。使用SPH在暴露于极端海洋事件(例如流浪冲击)的结构和系泊系统的设计中存在真正的机会。

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