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首页> 外文期刊>Solar Energy >Simulation and analysis of a solar assisted heat pump system with two different storage types for high levels of PV electricity self-consumption
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Simulation and analysis of a solar assisted heat pump system with two different storage types for high levels of PV electricity self-consumption

机译:具有两种不同存储类型的太阳能辅助热泵系统的仿真和分析,可实现高水平的PV电力自耗

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摘要

The incentives for PV-systems in Europe is being gradually lowered or ended. This makes a higher level of self-consumption interesting for owners of PV-systems. Sweden has an incentive of 35% of the investment cost for PV-systems. Unfortunately not all consumers can get this incentive. Therefore a high level of self-consumption will be necessary if the PV-systems are to be profitable in Sweden. A reference system with two different energy storage technologies is investigated in this paper. One system with 48 kW h of batteries and one system with a hot water storage tank where the electricity is stored as heat. The research questions in this paper are: Which storage system gives the highest level of PV electricity self-consumption? Are the storage systems profitable with the assumptions made in this paper? What are the levelized costs of electricity (LCOE) for the reference system with different storage system? The system with batteries has a self-consumption of 89% of the annual PV-electricity output and the system with a hot water storage tank has 88%. The system with batteries has a levelized cost of electricity two times higher than the system with a hot water storage tank.
机译:欧洲光伏系统的激励措施正在逐步降低或结束。对于光伏系统的所有者来说,这使更高水平的自耗变得有趣。瑞典的激励措施是光伏系统投资成本的35%。不幸的是,并非所有消费者都能获得这种激励。因此,要使光伏系统在瑞典盈利,就必须有很高的自耗水平。本文研究了具有两种不同能量存储技术的参考系统。一种系统带有48 kWh的电池,另一种系统带有热水储罐,电能以热量的形式存储。本文的研究问题是:哪个存储系统提供最高水平的光伏电力自耗?根据本文中的假设,存储系统是否有利可图?具有不同存储系统的参考系统的平均电费(LCOE)是多少?带电池的系统的自用电量为年光伏发电量的89%,带热水储罐的系统的用电量为88%。带电池的系统的平均用电成本是带热水储罐的系统的两倍。

著录项

  • 来源
    《Solar Energy》 |2014年第5期|19-27|共9页
  • 作者单位

    Maelardalen University, School of Business, Society & Engineering, Box 883, 721 23 Vaesterds, Sweden;

    Maelardalen University, School of Business, Society & Engineering, Box 883, 721 23 Vaesterds, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic; Energy storage systems; Energy system simulation; Self-consumption;

    机译:光伏储能系统;能源系统仿真;自我消费;

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