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Impact of solar field design and back-up technology on dynamic performance of a solar hybrid heating network integrated with a seasonal borehole thermal energy storage serving a small-scale residential district including plug-in electric vehicles

机译:太阳能场设计和备用技术对季节性钻孔热能储存的太阳能混合加热网络动态性能的影响,包括用于电动汽车的小规模住宅区,包括插入式电动车辆

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摘要

A solar hybrid district heating network integrated with a seasonal borehole thermal energy storage is dynamically simulated and analyzed over a 5-year period. The system is devoted to satisfying the space heating and domestic hot water requirements of a small-scale district consisting of 6 typical Italian single-family houses, located in Naples, with home charging of 6 plug-in electric vehicles.Eight different plant schemes differing in terms of solar field configuration and/or back-up system used for compensating the intermittency of solar source are investigated. Two different configurations of solar field are analyzed: the first one with solar thermal collectors only and the second one integrating solar thermal collectors and photovoltaic panels coupled with a battery storage; three different alternative auxiliary units are considered: natural gas-fired boiler, natural gas-fueled internal combustion engine-based micro-cogeneration unit and wood pellet boiler. An additional operating scheme is also proposed to better exploit the solar energy for domestic hot water production.The primary energy consumption, the carbon dioxide emissions and the operating costs of the proposed plant configurations are evaluated based on simulation results and then compared with those associated to a conventional decentralized heating system in order to assess the main energy, environmental and economic benefits/drawbacks. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在5年期间动态模拟和分析了整合的太阳能混合区供热网络。该系统致力于满足小型地区的空间加热和国内热水需求,包括6个典型的意大利单人家庭房屋,位于那不勒斯,拥有6个插入电动车的家庭充电。IIGHT不同的植物方案不同在用于补偿太阳源间歇性的太阳能场配置和/或备用系统方面。分析了两种不同的太阳能电场配置:第一个带有太阳能热收集器的第一个,第二个是集成太阳能热收集器和光伏电池板,与电池储存相结合;考虑了三个不同的替代辅助单位:天然气燃气锅炉,天然气燃料内燃机的微创单元和木颗粒锅炉。还提出了一种额外的操作方案来更好地利用国内热水生产的太阳能。基于模拟结果评估初级能耗,二氧化碳排放和所提出的植物配置的运营成本,然后与与之相关的人进行比较传统的分散式加热系统,以评估主要能量,环境和经济效益/缺点。 (c)2020 elestvier有限公司保留所有权利。

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