An innovative approach to implementing advanced energy projects in urban areas: From comprehensive simulation to actual implementation

IF 5.4 3区 工程技术 Q2 ENERGY & FUELS Thermal Science and Engineering Progress Pub Date : 2025-04-17 DOI:10.1016/j.tsep.2025.103594
Boris Sučić , Edvard Košnjek , Marko Đorić , Fouad Al-Mansour , Marko Matkovič , Tomaž Damjan
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Abstract

The recent energy crisis has once again confirmed that energy and resource efficiency, combined with the use of renewable-energy sources, must be the backbone of future sustainable development across all sectors. It is also clear that achieving climate neutrality by 2050, or sooner, will require new approaches. At the implementation level, the social, technical and financial realities of local energy projects demand solutions that appeal to a variety of stakeholders, including utilities, energy service companies, banks, and end users, who must collaborate to bring projects from the idea to a practical implementation. Presented here is a methodical approach to establishing advanced energy communities in complex urban environments and implementing advanced projects with a common energy infrastructure. The outcomes of the first use case clearly indicate that investing in an energy community is beneficial from multiple perspectives. Detailed simulations enabled an accurate assessment of additional renewable-energy potential, revealing that the company in question has the capacity to install another 11,000 kWp of PV in Ljubljana and other locations across Slovenia. This would increase the share of renewable energy in its total electricity consumption to 31 %, which is in line with the national target for 2030. In the second use case, a significant potential for utilizing excess heat from a data room was identified. An economic analysis showed that the excess-heat utilization project has a payback period of 2.5 years, a net present value of over EUR 47,000 and an internal rate of return of 40 %.
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城市先进能源项目实施的创新途径:从综合模拟到实际实施
最近的能源危机再次证实,能源和资源效率,加上可再生能源的使用,必须成为未来所有部门可持续发展的支柱。同样清楚的是,到2050年或更早实现气候中和需要新的方法。在实施层面,当地能源项目的社会、技术和财务现实需要吸引各种利益相关者的解决方案,包括公用事业、能源服务公司、银行和最终用户,他们必须合作将项目从想法变为实际实施。本文提出了一种在复杂的城市环境中建立先进能源社区并利用共同的能源基础设施实施先进项目的方法。第一个用例的结果清楚地表明,从多个角度来看,投资能源社区是有益的。详细的模拟能够准确评估额外的可再生能源潜力,显示该公司有能力在卢布尔雅那和斯洛文尼亚其他地区安装另外11000千瓦时的光伏发电。这将使可再生能源在其总电力消耗中的份额增加到31%,这与2030年的国家目标一致。在第二个用例中,发现了利用数据室多余热量的巨大潜力。经济分析表明,余热利用项目的投资回收期为2.5年,净现值超过47,000欧元,内部回报率为40%。
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来源期刊
Thermal Science and Engineering Progress
Thermal Science and Engineering Progress Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
7.20
自引率
10.40%
发文量
327
审稿时长
41 days
期刊介绍: Thermal Science and Engineering Progress (TSEP) publishes original, high-quality research articles that span activities ranging from fundamental scientific research and discussion of the more controversial thermodynamic theories, to developments in thermal engineering that are in many instances examples of the way scientists and engineers are addressing the challenges facing a growing population – smart cities and global warming – maximising thermodynamic efficiencies and minimising all heat losses. It is intended that these will be of current relevance and interest to industry, academia and other practitioners. It is evident that many specialised journals in thermal and, to some extent, in fluid disciplines tend to focus on topics that can be classified as fundamental in nature, or are ‘applied’ and near-market. Thermal Science and Engineering Progress will bridge the gap between these two areas, allowing authors to make an easy choice, should they or a journal editor feel that their papers are ‘out of scope’ when considering other journals. The range of topics covered by Thermal Science and Engineering Progress addresses the rapid rate of development being made in thermal transfer processes as they affect traditional fields, and important growth in the topical research areas of aerospace, thermal biological and medical systems, electronics and nano-technologies, renewable energy systems, food production (including agriculture), and the need to minimise man-made thermal impacts on climate change. Review articles on appropriate topics for TSEP are encouraged, although until TSEP is fully established, these will be limited in number. Before submitting such articles, please contact one of the Editors, or a member of the Editorial Advisory Board with an outline of your proposal and your expertise in the area of your review.
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