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Integrating a wind- and solar-powered hybrid to the power system by coupling it with a hydroelectric power station with pumping installation

机译:通过将风能和太阳能混合动力系统与带有抽水装置的水力发电站耦合,将其与电力系统集成

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摘要

The high variability of solar and wind energy sources makes their integration into power systems complicated and in some cases unnecessarily delays their transition from centralised to dispersed energy sources. In this paper, a mixed-integer non-linear mathematical model has been developed for simulating the integrated operation of a novel hybrid involving wind- and solar power and a hydroelectric power station with pumping installation. This hydropower plant is a special case of pumped storage hydroelectricity which to some extent utilises the available flow of the river on which it is located. It is thereby able to compensate for the varying energy output from the wind turbines (WT) and photovoltaics (PV) by discharging water previously pumped to the upper reservoir (or held back from the available flow) when a surplus from WTs and/or PVs occurs. The impact on the national power system (NPS) has been investigated based on the energy exchange values (unexpectedly occurring deficits and surpluses) between the considered hybrid energy source and the grid. The obtained results indicate that such a hybrid energy source not only significantly reduces the total volume of the energy exchange with the grid but also minimizes the ramp rate of those values. Accumulating water from available flow rate minimizes the need for oversizing the capacity installed in PVs and WTs. However, the inherent variability and typically low heads of existing run-off-river power plants with pondage lead to the size of the upper reservoir being prohibitive. The conclusions show that such a type of pumped storage hydroelectricity should mainly be used on a small scale. (C) 2017 Elsevier Ltd. All rights reserved.
机译:太阳能和风能资源的高度可变性使它们集成到电力系统中变得复杂,并且在某些情况下不必要地延迟了它们从集中式能源向分散式能源的过渡。在本文中,已经建立了混合整数非线性数学模型,以模拟新型混合动力系统的集成运行,该混合动力系统包括风能和太阳能以及带有抽水装置的水力发电站。该水力发电厂是抽水蓄能水力发电的特例,在一定程度上利用了它所在的河流的可用流量。因此,当来自WT和/或PV的盈余时,通过排放先前泵送到上部水库(或从可用水流退回)的水,它能够补偿风力涡轮机(WT)和光伏发电(PV)输出的变化能量。发生。已根据考虑的混合能源与电网之间的能量交换值(意外发生的赤字和盈余)调查了对国家电力系统(NPS)的影响。获得的结果表明,这种混合能源不仅大大减少了与电网的能量交换的总量,而且还使这些值的斜率最小化。从可用的流量中积累水可以最大程度地减少对PV和WT中安装的容量进行超大型化的需求。但是,现有的径流式发电厂的固有可变性和通常较低的水头会带来麻烦,从而导致上水库的大小令人望而却步。结论表明,这种类型的抽水蓄能水电应主要在小范围内使用。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2018年第1期|549-563|共15页
  • 作者单位

    AGH Univ Sci & Technol, Fac Management, Dept Engn Management, 30 Mickiewicza Ave, PL-30059 Krakow, Poland;

    AGH Univ Sci & Technol, Fac Management, Dept Engn Management, 30 Mickiewicza Ave, PL-30059 Krakow, Poland;

    AGH Univ Sci & Technol, Fac Management, Dept Engn Management, 30 Mickiewicza Ave, PL-30059 Krakow, Poland;

    AGH Univ Sci & Technol, Fac Geol Geophys & Environm Protect, 30 Mickiewicza Ave, PL-30059 Krakow, Poland;

    AGH Univ Sci & Technol, Fac Geol Geophys & Environm Protect, 30 Mickiewicza Ave, PL-30059 Krakow, Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mathematical modelling; Hybrid energy source; Variable renewable energy sources;

    机译:数学建模混合能源可变可再生能源;

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