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Balancing Europe: Can district heating affect the flexibility potential of Norwegian hydropower resources?

机译:欧洲平衡:区域供暖会影响挪威水电资源的灵活性潜力吗?

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As Europe moves towards renewable energy, hydropower stands out as a renewable technology that can provide supply side flexibility through dispatchable electricity production. Several studies have investigated the flexibility hydropower can provide with a particular focus on the Nordic hydropower resources. Of all European countries, Norway has the largest hydropower resources and storage capacity. However, Norway also has a highly electrified heating sector, which means high electricity demand during winter when reservoirs are low. This paper uses EnergyPLAN to analyse how a shift from individual electric heating to district heating affects the flexibility the Norwegian energy system can provide to Europe. The analysis develops a 2015 reference scenario and two scenarios that introduce district heating based on biomass and heat pumps, respectively. Results show that district heating can decrease the maximum load on dammed hydropower facilities, thus freeing up capacity for potential export. Furthermore, the dammed hydropower facilities are able to balance the electricity demands in all hours of the year. However, the shift to district heating also increases forced export to drain reservoirs as domestic electricity demand is reduced. Also, the amount of import the system is able to handle is decreased under the modelled conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:随着欧洲向可再生能源发展,水电作为一种可再生技术脱颖而出,可以通过可调度的电力生产为供应方提供灵活性。几项研究调查了水电的灵活性,可以特别关注北欧水电资源。在所有欧洲国家中,挪威拥有最大的水电资源和储水能力。但是,挪威的供热部门也高度电气化,这意味着在水库不足的冬季,电力需求很高。本文使用EnergyPLAN分析从个人电供热向区域供热的转变如何影响挪威能源系统可以为欧洲提供的灵活性。该分析制定了2015年参考情景和两种情景,分别介绍了基于生物质和热泵的区域供热。结果表明,区域供热可以减少大坝水电设施的最大负荷,从而释放潜在出口的能力。此外,建坝的水力发电设施能够在一年中的所有小时内平衡电力需求。但是,随着国内电力需求的减少,向区域供暖的转变也增加了向排水水库的出口。同样,在建模条件下,系统能够处理的导入量也减少了。 (C)2019 Elsevier Ltd.保留所有权利。

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