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Decarbonization of a district heating system with a combination of solar heat and bioenergy: A techno-economic case study in the Northern European context

机译:具有太阳能和生物能源的组合的地区供热系统的脱碳:北欧背景技术经济案例研究

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We study the role of solar heat in decarbonization of a Nordic district heating (DH) network, where most of the annual heat demand is satisfied with bioenergy. We use actual data from a Finnish municipality to create a dynamic model of the heating system with Apros (R) simulation software. With the help of modelling, we examine various decarbonization scenarios for the existing heating system, using different combinations solar thermal collectors, thermal energy storage (TES) and limitations on how and when solar heat can access the system. According to results, zero emissions during the summer can be achieved with annual solar share of 13.2% and at 44 V/MWh levelized cost of heat (LCoH), if the integration is supported by TES and a careful planning of solar heat integration. Our results show that a simple approach of pursuing for a maximal solar share does not necessarily lead to a reduction in carbon emission or in LCoH. In fact, aiming at higher solar shares of 15-25% in our case system, actually increase greenhouse gas emissions compared to the base case. This highlights the importance of focusing on emissions reductions instead of simple addition of renewable energy when DH utilities plan for solar heat investments.(c) 2021 Published by Elsevier Ltd.
机译:我们研究了太阳能在北欧区供暖(DH)网络脱碳中的作用,大部分每年的热需求都对生物能量感到满意。我们使用芬兰市政府的实际数据,采用APROS(R)仿真软件创建加热系统的动态模型。在建模的帮助下,我们使用不同的组合太阳能热收集器,热能存储(TES)以及太阳能如何以及当太阳能可以访问系统的限制来检查现有加热系统的各种脱碳情景。根据结果​​,夏季零排放可实现每年的太阳能份额为13.2%,44 V / MWH调情的热量(LCOH),如果TES支持,仔细规划太阳能热集成。我们的研究结果表明,追求最大太阳能份额的简单方法并不一定导致碳排放或LCOH中的减少。事实上,在我们的案例系统中瞄准了15-25%的较高的太阳能股,实际上与基本情况相比增加了温室气体排放。这突出了重点关注排放减少的重要性,而不是在DH公用事业计划的太阳能热费计划时简单地添加可再生能源。(c)2021由elestvier有限公司发布

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