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首页> 外文期刊>Solar Energy >DEMONSTRATION OF THE ENVIRONMENTAL AND DEMAND-SIDE MANAGEMENT BENEFITS OF GRID-CONNECTED PHOTOVOLTAIC POWER SYSTEMS
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DEMONSTRATION OF THE ENVIRONMENTAL AND DEMAND-SIDE MANAGEMENT BENEFITS OF GRID-CONNECTED PHOTOVOLTAIC POWER SYSTEMS

机译:并网光伏发电系统的环境和需求侧管理优势的演示

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This study investigated the pollutant emission reduction and demand-side management potential of 16 photovoltaic (PV) systems installed across the US during 1993 and 1994. The US Environmental Protection Agency (EPA) and 11 electric power companies sponsored the project. This article presents results of analyses of each PV system's ability to offset power plant emissions of sulfur dioxide (SO_2), nitrogen oxides (NO_x), carbon dioxide (CO_2) and particulates and to provide power during peak demand hours for the individual host buildings and peak load hours for the utility. The analyses indicate a very broad range in the systems' abilities to offset pollutant emissions, due to variation in the solar resource available and the emission rates of the participating utilities' load following generation plants. Each system's ability to reduce building peak demand was dependent on the correlation of that load to the available solar resource. Most systems operated in excess of 50% of their capacity during building peak load hours in the summer months, but well below that level during winter peak hours. Similarly, many systems operated above 50% of their capacity during utility peak load hours in the summer months, but at a very low level during winter peak hours.
机译:这项研究调查了1993年至1994年在美国安装的16个光伏(PV)系统的污染物排放减少和需求侧管理潜力。美国环境保护局(EPA)和11个电力公司赞助了该项目。本文介绍了每种光伏系统抵消电厂排放的二氧化硫(SO_2),氮氧化物(NO_x),二氧化碳(CO_2)和颗粒物并在需求高峰时段为各个主体建筑物提供电力的能力的分析结果。该实用程序的高峰时段。分析表明,由于可用太阳能资源的变化以及参与发电的电厂的负荷负荷率的变化,系统抵消污染物排放的能力范围非常广泛。每个系统减少建筑物高峰需求的能力取决于该负载与可用太阳能的相关性。在夏季的高峰时段,大多数系统的运行能力超过其容量的50%,但在冬季的高峰时段则远低于该水平。类似地,许多系统在夏季的公用事业高峰时段运行超过其容量的50%,而在冬季高峰时段则处于非常低的水平。

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