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Energy and economic analysis of building retrofit and energy offset scenarios for Net Zero Energy Buildings

机译:净零能耗建筑的建筑改造和能量抵消方案的能源和经济分析

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摘要

The concept of Net Zero Energy Buildings is gaining momentum. However, the underlying idea of offsetting the energy drawn from the grids with local production is yet to be proven as economically efficient, namely when compared with alternatives such as district/ neighbourhood-level facilities or adding more large-scale facilities to the national grid(s). This paper presents a study on strategies for making an existing neighbourhood becoming net zero energy, focusing on the level of retrofit to apply to the buildings, on the proximity of the offset and on the selected offset equipment. The following discretization was considered: three levels of energy efficiency (low, medium and high), four offset generation alternatives (building integrated photovoltaic (PV), off-site large-scale PV, off-site large-scale wind turbines and not offsetting) and two energy tariff types (subsidized and non-subsidized). The results have shown that, under the reference economic conditions considered, it is best to upgrade the energy efficiency up to the medium level, and then offset the demand with off-site large-scale wind turbine equipment. These suggest that reaching net zero balance through on-site generation is less efficient than doing it through large-scale facilities.
机译:零能耗建筑网的概念正在蓬勃发展。但是,用本地生产来抵消从电网中获取的能源的基本思想尚未被证明具有经济效益,即与区域/邻里级设施等替代方案相比,或在国家电网中增加了更大规模的设施( s)。本文介绍了有关使现有邻域变为零净能量的策略的研究,重点是应用于建筑物的改造水平,偏移量的接近程度以及所选偏移量设备的选择。考虑了以下离散化:三个级别的能源效率(低,中和高),四个抵消发电的替代方案(建筑物集成光伏(PV),异地大型PV,异地大型风力涡轮机和不抵消) )和两种能源费率类型(有补贴和无补贴)。结果表明,在考虑参考经济条件的情况下,最好将能效提升到中等水平,然后用异地大型风力涡轮机设备抵消需求。这些表明,通过现场发电达到净零平衡的效率要低于通过大型设施实现的净零平衡。

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