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首页> 外文期刊>The Proceedings of the International Offshore and Polar Engineering Conference >An Experimental Study on the Extreme Motion Responses of a SPAR Platform in the Heave Resonant Waves
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An Experimental Study on the Extreme Motion Responses of a SPAR Platform in the Heave Resonant Waves

机译:共振波作用下SPAR平台极限运动响应的实验研究

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The prediction of motions in resonant waves is essential to design offshore structures. The extreme motions of a spar platform in heave resonant waves are investigated by an experimental approach. The prototype spar platform is a 'classic' spar which is a vertical steel cylinder with 14 equally spread catenary mooring lines. Model tests were conducted under various regular wave conditions in the Samsung Ship Model Basin. In the model tests, the spread mooring lines are simulated by using four spring-wire lines with the same equivalent horizontal system stiffness. 6-DOF motions of the spar model, relative wave heights and mooring tensions at the fairleader points were measured and analyzed. The objective of the tests is to assess global responses of offshore floaters and mooring lines of a typical spar. Four spar models with different characteristics are tested; spar1 is prototype model, spar2 is the model of which natural period of pitch motion is about twice compared to the heave resonant period, two heave damping plates are attached at the bottom of spar3 and three strakes are removed in spar4 model. It was observed that unstable roll and pitch motions were occurred when the periods of encounter wave are close to the heave resonant period and twice of the roll/pitch natural periods. The effect of time-varying GM value in view of 'Mathieu-type instability' is investigated for the prediction of the extreme heave-induced pitch and roll motions. The results of model tests showed superior agreements with damped Mathieu stability diagram, and the positive effects of strake and heave damping plates were confirmed.
机译:共振波运动的预测对于设计海上结构至关重要。通过实验方法研究了梁平台在升沉共振波中的极端运动。原型翼梁平台是“经典”翼梁,它是具有14条均布的悬链式系泊缆线的垂直钢制圆柱体。在三星船舶模型盆地内的各种规则波浪条件下进行了模型测试。在模型测试中,通过使用具有相同等效水平系统刚度的四根弹簧钢丝绳来模拟扩展系泊绳。测量并分析了翼梁模型的6自由度运动,相对波高和导缆点处的系泊张力。测试的目的是评估典型浮石的离岸漂浮物和系泊缆的整体响应。测试了四个具有不同特性的翼梁模型。 spar1是原型模型,spar2是其俯仰运动的自然周期是升沉共振周期的两倍,在spar3模型的底部连接了两个升沉阻尼板,并去除了三个闸板。观察到,当相遇波的周期接近升沉共振周期并且是横摇/俯仰自然周期的两倍时,会发生不稳定的横摇和俯仰运动。 GM值随“ Mathieu型不稳定性”而变化的影响被研究用于预测极端起伏引起的俯仰和侧倾运动。模型试验结果表明,该模型与阻尼Mathieu稳定性图具有良好的一致性,并证实了减振板和减振板的积极作用。

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