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Offshore transmission for wind: comparing the economic benefits of different offshore network configurations

机译:海上风电传输:比较不同海上风电网络配置的经济效益

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摘要

It has been argued that increasing transmission network capacity is vital to ensuring the full utilisation of renewables in Europe. The significant wind generation capacity proposed for the North Sea combined with high penetrations of other intermittent renewables across Europe has raised interest in different approaches to connecting offshore wind that might increase also interconnectivity between regions in a cost effective way. These analyses to assess a number of putative North Sea networks confirm that greater interconnection capacity between regions increases the utilisation of offshore wind energy, reducing curtailed wind energy by up to 9TWh in 2030 based on 61GW of installed capacity, and facilitating a reduction in annual generation costs of more than €0.5bn. However, at 2013 fuel and carbon prices, such additional network capacity allows cheaper high carbon generation to displace more expensive lower carbon plant, increasing coal generation by as much as 24TWh and thereby increasing CO2 emissions. The results are sensitive to the generation "merit order" and a sufficiently high price would yield up to 28% decrease emissions depending on the network case. It is inferred that carbon pricing may impact not only generation investment but also the benefits associated with network development.
机译:有人认为,增加传输网络容量对于确保欧洲可再生能源的充分利用至关重要。提议的北海巨大的风力发电能力以及欧洲其他间歇性可再生能源的高渗透率,引起了人们对连接海上风能的不同方法的兴趣,这可能会以经济有效的方式增加区域之间的互联互通。这些分析评估了许多假定的北海网络,证实了区域之间更大的互连能力提高了海上风能的利用,基于61GW的装机容量,到2030年将削减的风能减少多达9TWh,并促进了年发电量的减少成本超过5亿欧元。但是,按2013年的燃料和碳价格,这样的额外网络容量允许更便宜的高碳发电量取代更昂贵的低碳电厂,从而使煤炭发电量增加多达24TWh,从而增加了CO2排放量。结果对发电“优劣顺序”很敏感,根据网络情况,足够高的价格可使排放量减少多达28%。可以推断,碳定价不仅会影响发电投资,还会影响与网络开发相关的收益。

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