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COMPARISON OF SEABED FRICTION FORMULATIONS IN A LUMPED-MASS MOORING MODEL

机译:集总式系泊模型中海摩擦力公式的比较

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This paper explores the impact of friction models on mooring line simulations. Seabed friction can play an important role in the determination of mooring loads of slack-moored floating offshore wind turbines. Most mooring models include a relatively simple seabed friction formulation, if any, and little examination of their accuracy is available in literature. Current implementations typically represent seabed contact as coulombic friction with ramping near zero velocity to mitigate instability in the numerical time integration. To assess the impact of this friction model's use, we compare it against a more sophisticated friction model. This model differentiates between static and kinetic friction, where the former is dependent upon the forces acting on the line and the latter is a function of seabed's normal response. Both friction models have been implemented into the MoorDyn mooring dynamics simulator and tested under a set of prescribed scenarios including snap loads and oscillatory motion, where the fairlead of a mooring line was driven along both linear and circular paths. Additionally, coupled floating wind turbine simulations using the OC4-DeepCwind semisubmersible show how the friction models affect the platform global response and the extreme and fatigue mooring loads. The results highlight practical differences between the models in terms of both loads prediction and simulation stability/consistency.
机译:本文探讨了摩擦模型对系泊绳模拟的影响。海底摩擦力在确定松弛系泊的浮动海上风力涡轮机的系泊载荷中起着重要作用。大多数系泊模型都包括相对简单的海床摩擦公式(如果有),文献中很少对其准确性进行检查。当前的实现方式通常将海床接触表示为库仑摩擦,并以接近零的速度倾斜以减轻数值时间积分中的不稳定性。为了评估此摩擦模型的使用影响,我们将其与更复杂的摩擦模型进行了比较。该模型区分静摩擦和动摩擦,前者取决于作用在管线上的力,而后者则是海床法向响应的函数。两种摩擦模型均已在MoorDyn系泊动力学模拟器中实现,并在一组规定的场景下进行了测试,包括快速载荷和振荡运动,其中系泊缆的导缆线沿线性和圆形路径被驱动。另外,使用OC4-DeepCwind半潜水器进行的浮动式风力涡轮机耦合仿真显示了摩擦模型如何影响平台的整体响应以及极限和疲劳系泊载荷。结果突出了模型之间在负载预测和仿真稳定性/一致性方面的实际差异。

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