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Prediction of the whole mooring chain reaction to cyclic motion of a fairlead

机译:整个系泊链对导缆器循环运动的反应的预测

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摘要

Floating offshore wind turbines (FOWTs) are generally positioned by mooring systems including embedded anchoring foundations and mooring lines. The mooring line consists of three portions: the embedded portion, the lying portion and the suspended portion. Previous studies ignore the embedded and lying portion, and assume the lower end of the suspended chain is fixed at the touchdown point on the seabed. However, the effect of the chain-seabed interaction plays a more important role, especially in the dynamic response of the mooring chain. This article proposes a numerical model for the dynamic response of the mooring chain, considering the dynamic interaction between the mooring chain and the clay and sand sediment. Firstly, the configuration and tension of the mooring chain under monotonic motion of the fairlead are verified against the static model and then the response of the chain under cyclic horizontal drift and vertical heave of the floating facility is investigated. It was found that the chain gradually digs into the deeper soil and become straightened within a few cycles. The dig-in effect leads to the cyclic degradation of the mooring chain tensions and uplift angle at the padeye. The development in the configuration, tension, and angle of the mooring chain under horizontal and vertical motion in clay and sand sediments are compared in this study in order to give practical advice. The effects of embedment depth and soil shear strength are also evaluated.
机译:浮式海上风力涡轮机(FOWT)通常由包括嵌入式锚固基础和系泊绳的系泊系统进行定位。系泊缆线由三部分组成:嵌入式部分,躺下部分和悬挂部分。先前的研究忽略了嵌入和说谎的部分,并假设悬浮链的下端固定在海床的着陆点上。但是,链-海底相互作用的影响起着更重要的作用,尤其是在系泊链的动态响应中。考虑到系泊链与黏土和沙子沉积物之间的动力相互作用,本文提出了系泊链动力响应的数值模型。首先,通过静态模型验证了导缆绳单调运动下系泊链的构型和张紧力,然后研究了锚链在浮动装置的周期性水平漂移和垂直升沉下的响应。结果发现,链条逐渐钻入更深的土壤,并在几个周期内变直。挖掘效应导致锚链上的锚链张力和仰角的周期性下降。本研究比较了在粘土和沙子沉积物中水平和垂直运动下系泊链的构型,张力和角度的变化,以便提供实用建议。还评估了埋深和土壤抗剪强度的影响。

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