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Investigating the potential for energy flexibility in an office building with a vertical BIPV and a PV roof system

机译:研究具有垂直BIPV和PV屋顶系统的办公楼中能源灵活性的潜力

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Building Integrated Photovoltaics (BIPV) are becoming an attractive solution in the context of high penetration of photovoltaics (PV) in buildings caused by the strive to achieve net or nearly zero energy status. Besides retrieving solar radiation to produce electricity, BIPV also offers aesthetical advantages because of its architectural feature. This paper reports on the electrical energy performance of a passive solar office building, Solar XXI, located in Lisbon, Portugal, which has installed on the South facade a BIPV (12 kWp) and an additional photovoltaic roof system in a nearby car park facility (12 kWp) for electricity generation. The main objective is to investigate the potential to increase load matching between energy generation and consumption and improve grid interaction for two scenarios using the energy flexibility enabled by the integration of Battery Energy Storage Systems (BESS) with capacities ranging from 13.5 kWh to 54 kWh. To collect the required results, real consumption and generation data are used, together with numerical simulations related to the integration of the BESS. The results show that load matching and grid interaction related metrics can be significantly improved by using the energy flexibility provided by a BESS and that the implementation of such system can be economically viable for a 10-year period. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于努力实现净或近乎零能耗的状态,建筑物集成光伏(BIPV)正在成为建筑物中光伏(PV)的高渗透率的有吸引力的解决方案。除了检索太阳辐射以产生电能,BIPV还具有建筑特色,在美学上也具有优势。本文报告了位于葡萄牙里斯本的被动式太阳能办公楼Solar XXI的电能性能,该办公楼在南立面上安装了BIPV(12 kWp),并在附近的停车场设施中安装了附加的光伏屋顶系统( 12 kWp)用于发电。主要目标是研究通过利用电池储能系统(BESS)的集成所带来的能源灵活性来提高两种能源之间的负载匹配和改善电网交互的潜力,该电池储能系统的容量范围为13.5 kWh至54 kWh。为了收集所需的结果,使用了实际消耗量和发电量数据,以及与BESS集成相关的数值模拟。结果表明,通过使用BESS提供的能源灵活性,可以显着改善负载匹配和与电网交互相关的指标,并且该系统的实施在10年内经济可行。 (C)2018 Elsevier Ltd.保留所有权利。

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