Feasibility study of Nearly Zero Energy Building in a real Microgrid case study

S. Alfieri, S. Piccini, M. Kermani
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引用次数: 11

Abstract

This paper examines, from the energetic point of view, the design process of a stand-alone house as a microgrid (MG) in Rome, which inhabited by a family of four people. The house is equipped with all the electrical devices necessary to ensure comfort conditions and to achieve a Nearly Zero Energy Building (NZEB). In the island mode, the electric current of the building is supplied by a photovoltaic (PV) system and a battery energy storage system (BESS). All the electrical users present in the house are characterized by a high energy class. In order to make the house working in island mode from an electric and thermal point of view, has been decided to install a heat pump, electrically driven, for the production of domestic hot water (DHW) to feed the radiators and for domestic uses. For this MG case study, a standard load profile and an optimized load profile have been analyzed. The comparison between the two different scenarios has been carried out by the optimization software. The results show an improvement of all the economic and technical parameters in the optimized case compared to the standard case, due to a better exploitation of the energy produced by the PV system. Furthermore, the size of the components with the installation of a Building Automation and Control System (BACS) in the optimized case, is slightly reduced leading to a lower cost of operation and investment.
近零能耗建筑在实际微电网案例中的可行性研究
本文从能量的角度考察了罗马一个四口之家作为微电网(MG)的独立住宅的设计过程。房子配备了所有必要的电气设备,以确保舒适的条件,并实现近零能耗建筑(NZEB)。在岛屿模式下,建筑的电流由光伏(PV)系统和电池储能系统(BESS)提供。房子里所有用电的人都是高能量等级的。为了使房子从电气和热的角度来看在岛式模式下工作,已经决定安装一个电动热泵,用于生产生活热水(DHW),以供散热器和家庭使用。对于这个MG案例研究,分析了标准负载配置文件和优化负载配置文件。利用优化软件对两种不同场景进行了对比。结果表明,由于光伏发电系统产生的能量得到了更好的利用,优化后的情况下,与标准情况相比,所有的经济和技术参数都得到了改善。此外,在优化的情况下,安装了楼宇自动化和控制系统(BACS)的组件尺寸略有减小,从而降低了运营和投资成本。
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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