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Solar-hydro hybrid power station as a way to smooth power output and increase water retention

机译:太阳能-水电混合发电站,可实现平稳的输出功率并增加保水能力

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摘要

There is environmental, societal and also economic pressure to increase the share of renewable energy sources in covering energy demand. However, the stochastic and non-dispatchable nature of the two main such sources (photovoltaics and wind generation) complicates their integration into the power system. The operation mode of the run-of-river power plant with pondage that is considered here has potential to smooth electricity generation from photovoltaics, whilst also maintaining the hydropower capacity factor and increasing water retention - an important aspect when a decision-maker has to make a trade-off between power generation and, for example, irrigation. This paper presents the theoretical background to our research, introduces a discrete mathematical simulation and optimization model and provides a detailed analysis of the obtained results and the operation of the entire system. We also highlight the impact on the capacity factor of hydropower as well as addressing the potential need to install more than one water turbine to ensure greater flexibility of hydropower and efficient utilization of water resources. The optimization results of the analyzed case study show that for an observed average flow rate of 1.3 m(3)/s and annual irradiation of 1050 kWh/m(2) a 176-kW water turbine and pondage capacity of 1.36 MWh is sufficient to smooth the power generation of a 687-kW PV installation while also satisfying constraints imposed on reliability and performance.
机译:在满足能源需求方面,存在着环境,社会和经济压力,以增加可再生能源的份额。但是,两个主要的此类来源(光伏和风力发电)的随机性和不可调度性使它们集成到电力系统中变得复杂。此处考虑的带溢流的串流式发电厂的运行模式具有使光伏发电平稳的潜力,同时还可以保持水电容量系数和增加保水能力-这是决策者必须做出的重要考虑在发电和灌溉之间进行权衡。本文介绍了我们的研究的理论背景,介绍了离散数学模拟和优化模型,并对获得的结果和整个系统的运行进行了详细的分析。我们还将重点介绍对水电容量因子的影响,以及解决安装多台水轮机以确保更大的水电灵活性和有效利用水资源的潜在需求。分析案例研究的优化结果表明,对于观测到的平均流量1.3 m(3)/ s和年辐射1050 kWh / m(2),一台176 kW水轮机和1.36 MWh的蓄水量足以满足使687 kW光伏装置的发电变得顺畅,同时还满足了对可靠性和性能的要求。

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