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首页> 外文期刊>Applied Energy >Optimal operation, configuration and sizing of generation and storage technologies for residential heat pump systems in the spotlight of self-consumption of photovoltaic electricity
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Optimal operation, configuration and sizing of generation and storage technologies for residential heat pump systems in the spotlight of self-consumption of photovoltaic electricity

机译:光伏电力自耗的焦点在于住宅热泵系统的发电和存储技术的最佳运行,配置和规模

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摘要

A rapid growth in interest in self-consumption of electricity generated by rooftop photovoltaic (PV) systems has been observed in recent years. This is fueled by decreasing levelized cost of electricity and feed-in tariffs for PV-systems as well as by increasing electricity prices, especially in the residential sector. Besides PV-battery systems, electrical heat pumps are a promising measure to increase self-consumption of electricity generated by distributed generation technologies in residential dwellings. However, little scientific research on the ability of heat pump systems to increase self-consumption of PV-electricity has been carried out so far. Therefore in this paper a mixed integer linear programing model for the optimal operation, system configuration and sizing for heat pump based house energy systems is developed and applied under different scenario conditions. The results show that the dimensioning of the heat pump is hardly influenced by the scenario assumptions, whereas the optimal sizing of PV is strongly dependent on the scenarios and in particular on the electrical load profiles. Over all scenario variations, the sizing of electrical and thermal storages is demand-driven and hardly any interdependencies with respect to optimal sizing can be observed between the different storage technologies. The availability of feed-in-tariffs generally yields large PV systems with high levels of self-sufficiency but low levels of self-consumption. Stricter feed-in-limitations lead to a reduction of the optimal PV systems size, but not to an increase in the optimal size of storage technologies. Over a wide range of base scenarios and scenario variations PV systems as well as additional flexibility options are part of the optimal system configuration, rendering it a promising and robust measure to decrease the operating cost of heat pump systems in the future. The results obtained in this study can provide valuable guidelines for manufacturers, installers and end-customers for the design of cost-effective self-consumption driven heat pump systems in the future. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,人们对屋顶光伏(PV)系统产生的自耗电的兴趣迅速增长。光伏系统的平均电力成本和上网电价降低,以及电价上涨(尤其是在住宅领域),都加剧了这种情况。除了光伏电池系统之外,电热泵还是一种有希望的措施,可以提高居民住宅中分布式发电技术产生的电力自耗。然而,迄今为止,关于热泵系统增加光伏自耗的能力的科学研究很少。因此,本文提出了一种混合整数线性规划模型,用于基于热泵的房屋能源系统的最佳运行,系统配置和规模确定,并在不同的场景条件下应用。结果表明,热泵的尺寸几乎不受方案假设的影响,而PV的最佳尺寸很大程度上取决于方案,尤其是电气负载曲线。在所有方案变化中,电存储和热存储的大小都是由需求驱动的,并且在不同的存储技术之间几乎没有任何关于最佳大小的相互依赖关系。电价补贴的可获得性通常会产生具有高水平的自给自足但水平低的自给自足的大型光伏系统。严格的馈入限制会导致最佳光伏系统尺寸的减小,但不会导致最佳存储技术尺寸的增加。在各种基本方案和方案变化中,PV系统以及其他灵活性选项是最佳系统配置的一部分,这使其成为降低热泵系统未来运行成本的有前途且可靠的措施。这项研究中获得的结果可以为制造商,安装商和最终客户提供有价值的指导,以便将来设计出具有成本效益的自消耗驱动的热泵系统。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Energy》 |2017年第15期|604-619|共16页
  • 作者单位

    Robert Bosch GmbH, Corp Sect Res & Adv Engn, Robert Bosch Campus 1, D-71272 Renningen, Germany;

    Fraunhofer Ctr Int Management & Knowledge Econ IM, Div Sustainabil Management & Infrastruct Econ, Neumarkt 9-19, D-04109 Leipzig, Germany;

    Robert Bosch GmbH, Corp Sect Res & Adv Engn, Robert Bosch Campus 1, D-71272 Renningen, Germany;

    Fraunhofer Ctr Int Management & Knowledge Econ IM, Div Sustainabil Management & Infrastruct Econ, Neumarkt 9-19, D-04109 Leipzig, Germany|Univ Leipzig, Inst Infrastruct & Resources Management, Grimmaische Str 12, D-04109 Leipzig, Germany;

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

    Heat pump; Photovoltaics (PV); Battery storage; Thermal storage; Self-consumption;

    机译:热泵;光伏(PV);蓄电池;蓄热;自耗;

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