面向近零能耗智能小区的综合多能源系统建模

C. Pero, F. Leonforte, F. Lombardi, N. Stevanato, J. Barbieri, N. Aste, H. Huerto, E. Colombo
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引用次数: 5

摘要

分布式发电正在推动传统电力系统的范式转变,允许在主要能源消耗节点(例如建筑物)附近生产可再生电力和热能。从这个意义上说,智能地区/城市的热网和电网具有关键作用,允许分布式能源(可再生能源,热电联产发电机等存储系统)和负载(电力和热力)的互连,本地调度供需。在本工作中,为意大利米兰附近的一个新的近零能耗和低碳地区提出了一个多能源系统并进行了分析。在对该区域的热能和电能需求进行评估后,设计了一个创新的热能和电能多能系统,具体目标是整合多种可再生能源(如光伏和地表能)和储能技术(如显热储存),以获得与热电负荷的最佳匹配。最后的结果证明了所提出的解决方案的可实现的好处,该解决方案可以成功地应用于多种环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling Of An Integrated Multi-Energy System For A Nearly Zero Energy Smart District
Distributed Generation is driving a paradigm shift in traditional power systems, allowing the production of renewable electricity and thermal energy close to the main energy consumption nodes (e.g., buildings). In this sense, thermal networks and electrical grids for Smart districts /cities have a key role, allowing the interconnections of distributed energy resources (renewables, combined heat and power generators, etc storage systems, and loads (electrical and thermal), locally dispatching supply and demand. In the present work, a multi-energy system for a new nearly zero energy and low carbon district near Milan (Italy) is proposed and analysed. After the evaluation of thermal and electrical energy needs of the district, an innovative thermal and electrical multi-energy system is designed with the specific aim to integrate multiple renewable energy sources (i.e., photovoltaics and groundwater energy) and energy storage technologies (i.e., sensible thermal storages), obtaining the best matching with thermal and electrical loads. Final results demonstrate the achievable benefits of the proposed solution, which can be successfully applied in several contexts.
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