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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Wind energy: UK experiences and offshore operational challenges
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Wind energy: UK experiences and offshore operational challenges

机译:风能:英国的经验和海上作业的挑战

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This paper presents a discussion of the development of wind energy generation in the United Kingdom and the challenges faced by the wind industry including reliability, performance and condition monitoring, particularly in the offshore environment. The worldwide installed capacity of offshore wind has now risen to over 7GW, with an ever increasing deployment rate of new assets. About 90% of the global currently installed capacity is in Northern Europe, with the United Kingdom having the world's largest share at 4GW. Capacity factor data from UK offshore wind farms is presented, providing an insight into the current performance of large Round 2 offshore wind farms compared to the earlier Round 1 farms and to onshore farms. The data reveal that the United Kingdom's Round 2 offshore farms are achieving an average monthly capacity factor of 38.3% with a peak value of 75.8%. The older Round 1 farms have a lower average capacity factor of 33.6% while large onshore farms with capacities above 100 MW have achieved 25.6%. Offshore wind turbine performance has improved over time, and the industry is applying the learning from early experiences to achieve better performances at the more recently installed farms. Despite these improvements in turbine availability, the cost of energy from wind, particularly offshore, remains too high for it to be a commercially viable form of generation without subsidies. Reducing the cost of energy from wind to economically sustainable levels is the most important challenge facing the industry today. Operation and maintenance costs constitute up to 30 % of the total cost of energy from wind in large farms. The industry must overcome the challenges associated with improving component reliability and the development and adoption by operators of appropriate condition monitoring systems and maintenance strategies, in order to reduce costs to sustainable levels. Research and development work carried out with these goals in mind is also reviewed in the paper.
机译:本文讨论了英国风能发电的发展以及风电行业所面临的挑战,包括可靠性,性能和状态监测,特别是在海上环境中。随着新资产的部署率不断提高,全球海上风电的装机容量现已上升至7GW以上。目前,全球约90%的装机容量位于北欧,而英国则是全球最大的4GW装机容量。呈现了来自英国海上风电场的容量因子数据,从而提供了与早期的第一轮风电场和陆上风电场相比,大型第二轮海上风电场的当前性能的见解。数据显示,英国的第2轮近海养殖场的平均月产能系数为38.3%,峰值为75.8%。较老的第一轮农场的平均容量因子较低,为33.6%,而容量超过100 MW的大型陆上农场的平均因子却达到25.6%。随着时间的推移,海上风力涡轮机的性能已得到改善,并且该行业正在借鉴早期经验,以在最近安装的农场中获得更好的性能。尽管涡轮机的可用性得到了这些改善,但风能(尤其是海上风能)的能源成本仍然过高,以至于无法在没有补贴的情况下成为商业上可行的发电方式。将风能的成本降低到经济上可持续的水平是当今行业面临的最重要挑战。在大型农场中,运行和维护成本占风能总成本的30%。为了将成本降低到可持续水平,行业必须克服与提高组件可靠性以及操作员开发和采用适当的状态监视系统和维护策略相关的挑战。本文还回顾了出于这些目标而进行的研发工作。

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