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Cost-benefit analysis of district heating systems using heat from nuclear plants in seven European countries

机译:使用七个欧洲国家/地区的核电站产生的热量对区域供热系统进行成本效益分析

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This paper aims to evaluate and compare the potential cost savings and greenhouse gas (GHG) reduction of district heating (DH) systems using heat from nuclear combined heat and power plants (NCHP) in Europe. Fifteen DH + NCHP systems, spread throughout seven countries, are studied. The selection was made in collaboration with 'the Ad-Hoc Expert Group on the Role and Economics of Nuclear Cogeneration in a Low Carbon Energy Future' from the Organisation for Economic Co-operation and Development. Firstly, the linear heat density of the modelled DH networks was determined, including locations with poorly developed DH networks. A large potential for extending DH networks was identified for France and the United Kingdom despite the expected decrease in the heat demand due to building renovation. Secondly, the costs and GHG emissions of DH + NCHP systems were evaluated via a cost benefit analysis. It concluded that 7 of the 15 projects would be cost-effective if 25% of the total urban heat demand was supplied. Implementing NCHP-based systems would reduce GHG emissions by approximately 10 Mt eCO(2)/a. Four additional DH + NCHP systems could become competitive if a larger share of the total demand was supplied. Finally, a sensitivity analysis was performed to evaluate the uncertainty affecting the key parameters. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文旨在评估和比较使用来自欧洲核能联合热电厂(NCHP)的热量的区域供热(DH)系统的潜在成本节省和温室气体(GHG)减少。研究了分布在七个国家的15个DH + NCHP系统。该选择是与经济合作与发展组织的“低碳能源未来中核热电联产的作用和经济学特设专家组”合作进行的。首先,确定建模的DH网络的线性热密度,包括DH网络发展较差的位置。尽管预计由于建筑物翻修而导致的供热需求有望减少,但法国和英国仍具有扩大DH网络的巨大潜力。其次,通过成本效益分析评估了DH + NCHP系统的成本和温室气体排放。它得出的结论是,如果提供城市总供热需求的25%,则15个项目中的7个将具有成本效益。实施基于NCHP的系统将减少约10 Mt eCO(2)/ a的温室气体排放。如果供应了总需求的更大份额,则另外四个DH + NCHP系统将具有竞争力。最后,进行敏感性分析以评估影响关键参数的不确定性。 (C)2018 Elsevier Ltd.保留所有权利。

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