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Numerical analysis of docking operation between service vessels and offshore wind turbines

机译:服务船与海上风机对接运行的数值分析

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Offshore renewable wind energy market is expected to expand dramatically in the next 5-10 years. Reduction of downtime is crucial to the competitiveness of this new sector. One important part of the research efforts is the evaluation of operational limits (weather limits) of different vessel/access concepts for transportation of maintenance personnel, equipment, and spare parts to the offshore wind turbines. This paper gives a brief description of possible types of service vessel and access system. It presents methodologies for numerical analysis of docking operation by an active motion compensated access device and a simple fender. The proposed frequency-domain approach to the analysis of docking operation with fender is new and highly efficient compared to time-domain simulation. The methods have been applied to two vessel/access concepts in this paper and they can be used in docking operability assessments for a variety of vessels that employ an active motion compensated device or a fender as access system to offshore wind turbines.
机译:海上可再生风能市场预计将在未来5-10年内急剧扩大。减少停机时间对于这个新部门的竞争力至关重要。研究工作的重要组成部分之一是评估将不同维修人员,设备和备件运输到海上风力涡轮机的不同船舶/出入概念的运行极限(天气极限)。本文简要介绍了服务船和出入系统的可能类型。它提出了一种通过主动运动补偿进入装置和简单的挡泥板对接操作进行数值分析的方法。与时域仿真相比,所提出的频域分析方法与挡泥板对接操作是新颖且高效的。该方法已在本文中应用于两个船舶/通道概念,并且可用于采用主动运动补偿装置或护舷板作为海上风力涡轮机通道系统的各种船舶的对接可操作性评估。

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