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Estimation of damping induced by taut mooring lines

机译:绷紧系泊线引起的阻尼估算

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A moored floating structure may exhibit resonant motion responses to low-frequency excitations. Similar to the resonant responses of many vibration systems, the motion amplitude of a moored floating structure is significantly affected by the damping of the entire system. In such cases, the damping contributed by the mooring lines sometimes accounts for as much as 80% of the total damping. While the damping induced by catenary mooring lines is well-investigated, few studies have been conducted on the damping induced by taut mooring lines, especially one partly embedded in soil. The present study develops a simple but accurate model for estimating the damping contributed by mooring lines. A typical type of taut mooring line was used as the reference and the hydrodynamic drag force and soil resistance were taken into consideration. The proposed model was validated by comparing its predictions with those of a previously developed model and experimental measurements obtained by a physical model. Case studies and sensitivity studies were also conducted using the validated model. The damping induced by the soil resistance was found to be considerably smaller than the hydrodynamic damping. The superposition of the wave frequency motion on the low-frequency motion was also observed to significantly amplify the damping induced by the mooring lines.
机译:停泊的浮动结构可以表现出对低频激励的共振运动响应。类似于许多振动系统的谐振反应,受到系泊浮动结构的运动幅度受到整个系统的阻尼的显着影响。在这种情况下,由系泊线贡献的阻尼有时占总阻尼的80%。虽然被脉链系泊线引起的阻尼是良好的,但是在绷紧系泊线诱导的阻尼上进行了很少的研究,尤其是嵌入土壤中的一个部分。本研究开发了一种简单但准确的模型,用于估计由系泊线的贡献贡献的阻尼。使用典型的仓台系泊线作为参考,考虑了流体动力阻力和土壤抗性。通过将其预测与先前开发的模型和实验测量的实验测量进行比较来验证所提出的模型。还使用验证的模型进行案例研究和敏感性研究。发现土壤抗性引起的阻尼比流体动力阻尼相当小。还观察到对低频运动的波频运动的叠加,以显着放大由系泊线引起的阻尼。

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