Assessment of Batteries’ Contribution for Optimal Self-Sufficiency in Large Building Complexes

IF 3.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Emmanuel Karapidakis, Marios Nikologiannis, Marini Markaki, Ariadni Kikaki, Sofia Yfanti
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Abstract

The EU has set ambitious targets to combat climate change. Incorporating renewable energy technologies to reduce greenhouse gas emissions is a critical aspect of achieving the European Union’s (EU) 2030 climate goals. Similarly to all member countries of the EU, Greece shares the same climate goals. In order to achieve these goals, ensuring a consistent supply and the effective use of clean energy is pursued, as it has a significant impact on the sustainable development and growth of the country. As the Greek tourism sector is one of the most energy-consuming of the national economy and a major contributor to the country’s GDP, opportunities are presented for innovation and investment in sustainable practices. Such investments must focus on buildings and facilities, where the energy consumption is concentrated. One of the most popular holiday destinations in Greece is the island of Crete. Visitation patterns are seasonal, which means during the summer months, Crete is exceptionally popular and more demanding energy-wise. One of the highest energy-demanding types of tourism-based businesses is the hospitality industry. Energy demands in hotels are driven by factors such as heating, cooling, lighting, and hot water. Thus, such activities require thermal and electrical energy to function. Electrical energy is one of the most essential forms of energy for hotels, as it powers a wide range of critical systems and services throughout the establishment. Therefore, the hotels are highly susceptible to fluctuations in energy prices which can significantly impact the operational costs of hotels. This paper presents an analysis of the annual consumption for the year of 2022 of five hotels located in Crete. An algorithm is also implemented which strives to minimize the capital expenditure (CAPEX), while ensuring a sufficient percentage of self-sufficiency.
评估电池对大型建筑群中最佳自给自足的贡献
欧盟为应对气候变化制定了雄心勃勃的目标。采用可再生能源技术来减少温室气体排放是实现欧盟2030年气候目标的一个关键方面。与欧盟所有成员国一样,希腊也有同样的气候目标。为了实现这些目标,必须确保清洁能源的持续供应和有效利用,因为这对国家的可持续发展和增长具有重大影响。由于希腊旅游业是国民经济中能源消耗最大的行业之一,也是该国GDP的主要贡献者,因此在可持续实践中提供了创新和投资的机会。这种投资必须集中在能源消耗集中的建筑物和设施上。克里特岛是希腊最受欢迎的度假胜地之一。游客的模式是季节性的,这意味着在夏季,克里特岛特别受欢迎,对能源的要求也更高。以旅游为基础的行业中,能源需求最高的行业之一是酒店业。酒店的能源需求是由供暖、制冷、照明和热水等因素驱动的。因此,这些活动需要热能和电能才能发挥作用。电能是酒店最重要的能源形式之一,因为它为整个酒店的各种关键系统和服务提供动力。因此,酒店非常容易受到能源价格波动的影响,能源价格波动会对酒店的运营成本产生重大影响。本文分析了位于克里特岛的五家酒店在2022年的年消费情况。还实施了一种算法,力求最大限度地减少资本支出(CAPEX),同时确保自给自足的足够百分比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied System Innovation
Applied System Innovation Mathematics-Applied Mathematics
CiteScore
7.90
自引率
5.30%
发文量
102
审稿时长
11 weeks
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