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Intersection of national renewable energy policies in countries with a common power market

机译:具有共同电力市场的国家中国家可再生能源政策的交叉点

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The EU energy policy aims to establish an EU-wide common power market through market couplings and cross-border grid expansions. The outcome of such international power markets may intersect with national renewable energy policies. To analyze this case, we introduce a market-based multi-region energy systems model to investigate the mutual impacts of energy transitions in a group of interconnected countries. The proposed model is a combination (hard-linking) of a multi-region power market model and hourly energy systems modeling of each constituent region. The case of Nordic power market with highly coupled areas, a high share of hydropower, and interlinked heating and power sectors (e.g., by combined heat and power plants (CHP) and district heating) is examined. According to the results, predicted targets for integration of variable renewable energy (VRE) in one country (Finland) can be counterbalanced by changes in the energy policy of interlinked countries (e.g. by nuclear power phase-out in Sweden). Comparing cross-border transmission lines versus local electricity storage suggests that domestic flexibility is 5 times more efficient in reducing wind curtailment in this case. The cost of such energy storage is, however, 90% higher than electricity sales from respective VRE integration. This calls for international, coordinated joint efforts in energy planning to guarantee an optimal utilization of energy resources and maintaining required flexibility for integration of renewable energy in such coupled regions at minimum cost.
机译:欧盟能源政策旨在通过市场耦合和跨境电网扩展来建立整个欧盟范围内的通用电力市场。这种国际电力市场的结果可能与国家可再生能源政策相交。为了分析这种情况,我们引入了基于市场的多区域能源系统模型,以研究一组相互关联的国家中能源转换的相互影响。所提出的模型是多区域电力市场模型与每个组成区域的每小时能源系统模型的组合(硬链接)。考察了北欧地区电力市场高度耦合,水电份额高以及相互联系的供热和电力部门(例如,由热电联产(CHP)和区域供热系统组成)的情况。根据结果​​,可以通过相互关联国家的能源政策变化(例如,瑞典淘汰核电)来抵消在一个国家(芬兰)中整合可变可再生能源(VRE)的预期目标。将跨境输电线路与本地电力存储进行比较表明,在这种情况下,家庭灵活性在减少风电限制方面的效率提高了5倍。但是,这种能量存储的成本比相应的VRE集成的电力销售高90%。这就要求在能源规划方面进行国际协调一致的共同努力,以确保能源资源的最佳利用,并以最小的成本保持可再生能源整合在此类耦合区域中所需的灵活性。

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