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Economic and environmental potential for solar assisted central heating plants in the EU residential sector: Contribution to the 2030 climate and energy EU agenda

机译:欧盟住宅部门中太阳能辅助集中供热厂的经济和环境潜力:对2030年气候和能源欧盟议程的贡献

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Aligning with the ambitious EU 2030 climate and energy package for cutting the greenhouse emissions and replacing conventional heat sources through the presence of renewable energy share inside efficient district heating fields, central solar heating plants coupled with seasonal storage (CSHPSS) can have a viable contribution to this goal. However, the technical performance variation combined with inadequate financial assessment and insufficient environmental impact data associated with the deployment of those innovative district heating systems represents a big challenge for the broad implementation of CSHPSS in Europe. In this context, our paper presents a comprehensive evaluation for the possibility of integrating CSHPSS in the residential sector in various EU member states through the formulation of a multi-objective optimization framework. This framework comprises the life cycle cost analysis for the economic evaluation and the life cycle assessment for the environmental impact estimation simultaneously. The technical performance is also considered by satisfying both the space heating demand and the domestic hot water services. The methodological framework is applied to a residential neighborhood community of 1120 apartments in various EU climate zones with Madrid, Athens, Berlin, and Helsinki acting as a proxy for the Mediterranean continental, Mediterranean, central European, and Nordic climates, respectively. The optimization results regarding the energy performance show that the CSHPSS can achieve a renewable energy fraction above 90% for the investigated climate zones. At the same time, the environmental assessment shows significant improvement when using the CSHPSS in comparison to a natural gas heating system, in those cases the environmental impact is reduced up to 82.1-86.5%. On the other hand, substantial economic improvement is limited, especially in the Mediterranean climate zone (Athens) due to low heating demands and the prices of the non-renewable resources. There the total economic cost of the CSHPSS plants can increase up to 50.8% compared to a natural gas heating system. However, considering the incremental tendency in natural gas prices all over EU nowadays, the study of future plant costs confirms its favorable long-term economic feasibility.
机译:与雄心勃勃的欧盟2030年气候和能源计划相结合,以减少温室气体排放并通过在高效的区域供热区内共享可再生能源来替代传统的热源,中央太阳能供暖厂与季节性储能(CSHPSS)可以为这个目标。但是,技术性能的变化,财务评估不足以及与这些创新的区域供热系统的部署相关的环境影响数据不足,对CSHPSS在欧洲的广泛实施提出了巨大挑战。在此背景下,我们的论文针对通过制定多目标优化框架将CSHPSS纳入欧盟各个成员国的住宅部门的可能性进行了全面评估。该框架包括用于经济评估的生命周期成本分析和用于环境影响评估的生命周期评估。通过同时满足空间供暖需求和生活热水服务来考虑技术性能。该方法框架适用于在各个欧盟气候区的1120套公寓的居民社区,马德里,雅典,柏林和赫尔辛基分别代表了地中海大陆,地中海,中欧和北欧的气候。关于能源性能的优化结果表明,对于所研究的气候区,CSHPSS可以实现90%以上的可再生能源比例。同时,与天然气加热系统相比,使用CSHPSS时的环境评估显示出显着改善,在这些情况下,对环境的影响降低到82.1-86.5%。另一方面,由于供暖需求低和不可再生资源的价格高昂,特别是在地中海气候区(雅典),经济的发展受到了限制。与天然气供热系统相比,CSHPSS工厂的总经济成本可增加高达50.8%。但是,考虑到当今整个欧盟天然气价格的上涨趋势,对未来工厂成本的研究证实了其良好的长期经济可行性。

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