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Experimental and numerical studies of the pontoon effect on vortex-induced motions of deep-draft semi-submersibles

机译:浮筒对深水半潜式涡流诱导运动的影响的实验和数值研究

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摘要

The vortex-induced motion (VIM) is a critical issue in mooring and riser system design for column-type deepwater platforms. As regards to deep-draft semi-submersibles (DDS), even though VIM is mainly excited by vortex shedding around columns, the large-volume pontoons beneath the columns are also responsible for the wake interference, implying a non-negligible influence on VIM behavior. An experimental study and three-dimensional numerical simulations were performed to analyze the pontoon effect on the VIM of two semi-submersibles and a four-column structure without pontoons. The numerical results using Detached Eddy Simulation (DES) are in good agreement with the experimental measurements obtained from the towing model tests. The present investigations indicate that the resonant phenomenon is observed for all configurations. However, the four-column structure without pontoons shows the most significant transverse responses and yaw motions at both 0°- and 45°-incidences owing to the largest fluctuating lift forces induced by the well-established wake. Additionally, the negative values of work done by the pontoons at all reduced velocities confirm their damping effect on the VIM response.
机译:涡流诱导运动(VIM)是圆柱型深水平台的系泊和立管系统设计中的关键问题。关于深水半潜式潜水器(DDS),即使VIM主要是由圆柱周围的涡流激发而激发的,但圆柱下方的大体积浮桥也是造成尾流干扰的原因,这意味着对VIM行为的影响不可忽略。进行了实验研究和三维数值模拟,以分析浮桥对两个半潜式潜水艇和无浮桥的四柱结构的VIM的影响。使用分离涡流模拟(DES)的数值结果与从拖曳模型测试获得的实验测量结果非常吻合。目前的研究表明,在所有配置下都可以观察到共振现象。然而,由于成熟的尾流引起的最大波动力的升高,在没有浮桥的四柱结构中,在0°和45°入射角下都表现出最显着的横向响应和偏航运动。此外,浮筒在所有降低的速度下所做的功的负值证实了它们对VIM响应的阻尼作用。

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