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Increasing renewable energy penetration and energy independence of island communities: A novel dynamic simulation approach for energy, economic, and environmental analysis, and optimization

机译:岛屿社区的可再生能源渗透与能源独立性:能源,经济和环境分析的新型动态模拟方法,以及优化

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Nowadays, due to the raising research interest in net and nearly zero-energy concepts at community level, great efforts are spent to investigate self-sustaining and energy-independent communities. Small and off-grid islands represent one of the best places to focus the attention on, and to suit pilot projects of self-sufficient energy communities. In this context, the dynamic simulation represents a useful tool for designing, analysing, and optimizing islands' energy system layouts, especially in case of renewable energy system adoption (due to the performance unpredictability of renewable energy sources). Therefore, powerful yet flexible dynamic simulation tools are increasingly in demand. In this framework, this paper presents a novel dynamic simulation model, developed in TRNSYS environment, purposely conceived to investigate innovative technologies, novel system layouts, and advanced control logics, in the case of small and off-grid islands, aiming at reaching the nearly/netzero energy goal at a community level. To prove the potential of the novel dynamic simulation tool, a suitable case study referring to the existing island community of El Hierro (Canary Island) was considered and investigated. Specifically, to enhance the island energy independence, diverse scenarios and system layouts, including different renewable energy based technologies (e.g. wind turbines, hydroelectric power plants, solar thermal collectors, etc.) have been investigated by the novel developed simulation tool. Results demonstrate the potentiality of the adopted method as well as the feasibility of the proposed system layouts. Specifically, the investigated scenarios provide up to 85% of the annual electricity demand and about 79% of the annual thermal energy needs by renewable energy sources with substantial economic savings.
机译:如今,由于对社区一级的净和几乎零能源概念提高了研究兴趣,努力调查自我维持和独立的社区。小型和离网群岛代表了重点关注注意的最佳场所之一,并遵守自给自足能源社区的试点项目。在这种情况下,动态仿真代表了用于设计,分析和优化岛屿能量系统布局的有用工具,特别是在可再生能源系统采用的情况下(由于可再生能源的性能不可预测性)。因此,强大而灵活的动态仿真工具越来越多。本文介绍了一种新型动态仿真模型,在Trnsys环境中开发,故意调整创新技术,新颖的系统布局和先进控制逻辑,在小型和离网岛的情况下,旨在达到几乎/ Netzero能源目标在社区一级。为了证明新型动态仿真工具的潜力,考虑并调查了指的是指El Hierro(加那利岛)的现有岛屿社区的合适案例研究。具体地,提高岛屿能源独立性,不同的情景和系统布局,包括不同的可再生能源技术(例如风力涡轮机,水力电力电厂,太阳能热量收集器等)。结果表明采用方法的潜力以及所提出的系统布局的可行性。具体而言,调查的情景提供高达85%的年电费,可再生能源具有大量经济储蓄的可再生能源的每年热能需求约为79%。

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