引入蓄电和光伏技术,实现大型建筑群的充分自给自足

E. Karapidakis, Marini Markaki, Ariadni Kikaki, Sofia Yfanti, Marios Nikologiannis
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引用次数: 0

摘要

大型场所的能源使用呈现出一种独特的模式,既包括热能,也包括电能。由于最近的能源危机,与这些需求相关的运营支出明显增加。根据欧盟能源政策,未来的目标之一是向由可再生能源(RES)驱动的自给自足的节能型建筑过渡。如今,现代能源管理系统、电力储存和可再生能源的结合已被提出,以实现建筑物中近乎零排放的能源消耗。本文研究了位于地中海的一家酒店的能源消耗模式,以探讨可再生能源的独立潜力,并预测未来的扩张前景。本文引入了一种算法,用于优化和提高酒店的自给自足能力。所提出的算法成功提高了酒店的能源自给率,通过光伏发电量和相应的电池容量,在所考察的所有年份中都达到了显著的 99%,并得出了相应的财务和环境结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Introduction of Electricity Storage and Photovoltaics for an Adequate Self-Sufficiency in Large Building Complexes
Energy usage in large-scale premises exhibits a distinctive pattern, encompassing both thermal energy and electricity. As a result of the recent energy crisis, the operational expenditures associated with these demands have markedly risen. In line with EU Energy Policies, one of the future goals is the transition towards energy-wise self-sufficient buildings powered by renewable energy sources (RES). Nowadays, a combination of contemporary energy management systems, electricity storage and RES are proposed to achieve nearly zero emission-producing energy consumption in buildings. This paper examines the energy consumption patterns of a hotel situated on the Mediterranean, in order to investigate the potential of RES-induced independence and forecast future expansion prospects. An algorithm has been introduced to both optimize and enhance the self-sufficiency of the hotel under consideration. The proposed algorithm successfully enhances the hotel's energy self-sufficiency, achieving a remarkable 99% rate through the dimensions of PV power and corresponding battery capacity for all years under examination, yielding the corresponding financial and environmental conclusions.
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