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Experimental validation of a dynamic mooring lines code with tension and motion measurements of a submerged chain

机译:带有沉没链的张力和运动测量的动态系泊缆代码的实验验证

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This paper shows a complete study of the dynamics of a mooring line: first, a simulation code based on a lumped mass formulation was developed and tested under different setups and second, an equivalent experimental campaign was performed to compare against the numerical predictions. The tests consisted of a suspended chain submerged into a water basin, where the suspension point of the chain was excited with horizontal harmonic motions of different periods in the plane of the catenary. The code is able to predict the tension at the suspension point and the motions of the line with accuracy. For those cases where the line loses and subsequently recovers tension, the resulting snap load and motions are well captured with a slight over prediction of the maximum tension. The added mass and drag coefficients for chains used in the computations have been taken from guidelines and, in general, predict correctly the hydrodynamic loads. In addition, sensitivity studies and verification against another code show that highly dynamic cases are sensitive to the seabed-cable contact and friction models. The results show the importance of capturing the evolution of the mooring dynamics for the prediction of the line tension, especially for the high frequency motions.
机译:本文展示了对系泊缆动力学的完整研究:首先,开发了基于集总质量公式的仿真代码,并在不同的设置下对其进行了测试,其次,进行了等效的实验活动以与数值预测进行比较。这些测试由一条浸入水盆中的悬链组成,悬链的悬点由悬链平面中不同周期的水平谐波运动激发。该代码能够准确地预测悬挂点的张力和线的运动。对于那些线丢失并随后恢复张力的情况,可以很好地捕获所产生的捕捉载荷和运动,但略微超过最大张力的预测值。计算中使用的链条的附加质量系数和阻力系数已从准则中获取,并且通常可以正确预测流体动力载荷。此外,敏感性研究和针对另一个规范的验证表明,高度动态的情况对海底电缆接触和摩擦模型很敏感。结果表明,捕捉系泊动力学的演变对于预测线张力,尤其是高频运动的重要性。

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