评估斯里兰卡建筑物的并网光伏(pv)技术的碳减排

LH Ganegodage, K. Waidyasekara, H. Mallawaarachchi
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摘要

与能源相关的建筑碳排放是全球变暖的主要原因。为了减少与能源相关的碳排放,建筑物倾向于采用可再生能源技术。在可再生能源技术中,并网光伏技术作为一种替代能源已经引起了建筑能源消费者的兴趣。然而,在斯里兰卡,并网光伏技术的实施相当低,特别是作为碳减排战略。光伏并网系统缺乏实施的一个关键原因是大多数建筑物仍然依赖传统能源来满足其总能源需求。因此,有必要强调并网光伏系统的重要性,以渗透现有的传统能源市场。因此,本研究的目的是评估斯里兰卡建筑物并网光伏系统可能的能源相关碳减排。因此,我们总共选择了4座建筑作为案例研究,其中2座采用并网光伏技术的建筑和另外2座完全依赖传统能源的建筑。随后,对四栋建筑进行了碳足迹评估,其中包括与能源相关的碳排放活动。研究结果表明,所选两栋采用并网光伏技术的建筑与传统能源建筑相比,平均每月分别减少碳排放3379.77kg和3013.06kg。因此,这项工作已经成功地确定,与传统能源建筑相比,采用并网光伏技术的建筑实现了与能源相关的碳排放的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSING THE CARBON EMISSION REDUCTION BY GRID-TIED PHOTOVOLTAIC (PV) TECHNOLOGY FOR BUILDINGS IN SRI LANKA
Energy related carbon emission of buildings is a major cause of global warming. In order to mitigate energy related carbon emission, buildings tend to adopt renewable energy technologies. Amongst renewable energy technologies, grid-tied PV technology has gained the interest of building energy consumers as an alternative energy source. Nevertheless, there is considerably low implementation of grid-tied PV technology in Sri Lanka, especially as a carbon reduction strategy. A key reason for lack of implementation of grid-tied PV system is that majority of buildings still depend on traditional energy sources for their total energy needs. Hence, there is a need of highlighting the importance of grid-tied PV system to penetrate the existing traditional energy market. The aim of this study is therefore to assess the possible energy related carbon reduction of grid-tied PV system for buildings in Sri Lanka. Accordingly, total of four (4) buildings were selected as case studies, including two buildings with grid-tied PV technology and two other buildings that are totally dependent on traditional energy sources. Subsequently, carbon footprint assessment was conducted to four (4) buildings specifying to energy related carbon emitting activities. And research findings revealed that selected two buildings with grid-Tied PV technology achieve an average reduction of carbon by 3379.77kg and 3013.06kg respectively per month compared to traditional-energy buildings. Consequently, this work has successfully identified that buildings with grid-tied PV technology achieve a reduction in energy related carbon emission compared to buildings with traditional energy sources.
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