Which wind turbine types are needed in a cost‐optimal renewable energy system?

Wind Energy Pub Date : 2024-02-07 DOI:10.1002/we.2900
Henrik Hodel, L. Göransson, Peiyuan Chen, Ola Carlson
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Abstract

Previous research has indicated that wind power plants can be designed to have less‐variable power generation, thereby mitigating the drop in economic value that typically occurs at high wind power penetration rates. This study investigates the competitiveness of adapted turbine design and the interplay with other flexibility measures, such as batteries and hydrogen storage, for managing variations. The analysis covers seven turbine designs for onshore and offshore wind generation, with different specific power ratings and hub heights. Various flexibility measures (batteries, hydrogen storage and transmission expansion) are included in the optimization of investment and dispatch of the electricity system of northern Europe. Three driving forces for turbine design selection are identified: (1) lowest cost of electricity generation; (2) annual wind production per land area and (3) improved generation profile of wind power. The results show that in regions with good wind resources and limited availability of variation management, it is cost‐efficient to reduce the variability of wind power production by adapting the turbine design. This remains the case when variation management is available in the form of batteries, hydrogen storage and transmission system expansion. Moreover, it is more cost‐effective to improve variability by changing the specific power rating rather than the turbine hub height.
成本最优的可再生能源系统需要哪些类型的风力涡轮机?
以往的研究表明,风力发电厂可以设计成发电量变化较小的发电厂,从而缓解风力发电渗透率高时通常出现的经济价值下降问题。本研究调查了经过调整的涡轮机设计的竞争力,以及与其他灵活性措施(如电池和储氢)在管理变化方面的相互作用。分析涵盖了七种用于陆上和海上风力发电的涡轮机设计,具有不同的额定功率和轮毂高度。在北欧电力系统的投资和调度优化中,包括了各种灵活性措施(电池、储氢和输电扩展)。确定了涡轮机设计选择的三个驱动力:(1) 最低的发电成本;(2) 每块土地的年风力发电量;(3) 改善风力发电的发电曲线。研究结果表明,在风力资源丰富而变化管理能力有限的地区,通过调整风机设计来降低风力发电量的变化是符合成本效益的。当可以通过电池、储氢和输电系统扩容等形式进行变化管理时,情况依然如此。此外,通过改变额定功率而不是涡轮机轮毂高度来提高可变性更具成本效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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