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Theoretical settings of photovoltaic-hydro energy system for sustainable energy production

机译:光伏-水能系统可持续能源生产的理论设置

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摘要

Since the main problem of continuous energy supply from photovoltaic (PV) power plant is intermittence and inability to provide continuous energy supply, this paper proposes its hybridization with hydro energy, or with pump storage hydroelectric (PSH) as a pos-sible solution. This creates a new type of sustainable hybrid power plant which can work continuously, using solar energy as primary energy source and water for energy storage. The characteristics of the solution as an open thermodynamic system are presented, as well as the basic theoretical settings for its application, i.e. key relationships between power and collector field area of PV power plant and working volume of upper storage. The paper introduces hydrological and hydro-energetic indicators for the hybrid plant description, "artificial rainfall", as the relationship between the water pumped into the upper water storage of the PSH (artificial water inflow) and collector field area of the PV power plant, as well as hydroenergy potential. The proposed hybrid electric power plant does not emit greenhouse gases, produce waste or significantly exploit water resources while the risks to humans and the environment are far smaller than when using conventional technology. This solution is flexible for implementation and can be applied in various climates, hydrolog-ical and physical conditions. It is especially productive in cases of joint use of solar and hydro energy where they naturally complement each other as natural energy sources in the annual working cycle.
机译:由于光伏(PV)电厂提供连续能源的主要问题是间歇性和无法提供连续能源,因此,本文提出了将其与水力发电或与泵储水力发电(PSH)混合的解决方案。这就创造了一种新型的可持续混合动力发电厂,它可以连续工作,利用太阳能作为主要能源,而水则用于储能。介绍了作为开放式热力系统的解决方案的特点,以及其应用的基本理论设置,即光伏电站的功率和集热器场面积与上层存储的工作量之间的关键关系。本文介绍了用于混合电站的水文和水能指标,即“人工降雨”,它是泵入PSH(人工进水)上层水库的水与光伏电站集热场面积之间的关系,以及水能的潜力。拟议中的混合式发电厂不会排放温室气体,不会产生废物或大量开采水资源,而对人类和环境的风险远小于使用传统技术时的风险。该解决方案实施灵活,可应用于各种气候,水文和自然条件。在联合使用太阳能和水能的情况下,该功能特别有用,因为它们在每年的工作周期中可以自然地相互补充为自然能源。

著录项

  • 来源
    《Solar Energy》 |2012年第3期|p.972-982|共11页
  • 作者单位

    University of Split, Faculty of Civil and Architectural Engineering, 21000 Split, Malice Hrvatske 15, Croatia;

    University of Zagreb, Faculty of Chemical Engineering and Technology, Department of Measurement and Process Control, 10000 Zagreb Savska cesta 16, Croatia;

  • 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

    solar energy; hydro energy; renewable energy sources; hybrid power plant; sustainable energy supply;

    机译:太阳能;水能可再生能源;混合动力装置可持续能源供应;
  • 入库时间 2022-08-18 00:25:51

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