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Improving the load flexibility of coal-fired power plants by the integration of a thermal energy storage

机译:通过集成热能存储来提高燃煤电厂的负荷灵活性

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Improving the flexibility of conventional power plants is one key challenge for the transformation of the energy system towards a high share of renewable energies in electricity generation. Flexible and dispatchable power plants will contribute to this ongoing transformation process as they compensate the fluctuating electricity generation from renewable energy sources such as wind and photovoltaics. In this context, dynamic simulation models offer an efficient tool to evaluate flexibility measures and the resulting highly transient power plant operation. In this paper, the buildup of a dynamic power plant model using the modeling language Modelica in the simulation environment Dymola is presented. The detailed dynamic power plant model is validated successfully against measurement data from the underlying coal-fired reference power plant. The paper then focuses on the integration of a steam accumulator - also known as a Ruths storage - into the power plant process in order to increase its flexibility. The results of the dynamic simulations show that charging the steam accumulator leads to a reduction of the net power up to 7.0%. By discharging the Ruths storage an additional net power of 4.3% can be activated very quickly. Thus, the storage integration leads to an improved load flexibility with regard to a temporary reduction of the minimum load as well as to the possibility of performing a load change at a constant firing rate (e.g. to participate on the quarter-hourly intraday markets). Furthermore, the integrated energy storage enhances the provision of primary control reserve significantly by +/- 2.8%.
机译:改善常规发电厂的灵活性是将能源系统转变为发电中可再生能源比例很高的主要挑战。灵活且可调度的发电厂将为这一正在进行的转型过程做出贡献,因为它们可以补偿来自可再生能源(例如风能和光伏发电)的波动发电。在这种情况下,动态仿真模型提供了一种有效的工具,可以评估灵活性措施以及由此产生的高瞬态电厂运行情况。本文介绍了在仿真环境Dymola中使用建模语言Modelica建立动态电厂模型的过程。详细的动态发电厂模型已针对来自基础燃煤参考发电厂的测量数据成功进行了验证。然后,本文着重于将蒸汽蓄能器(也称为Ruths存储)集成到发电厂过程中,以提高其灵活性。动态模拟的结果表明,给蒸汽蓄能器充气会导致净功率降低多达7.0%。通过释放Ruths存储,可以非常快速地激活4.3%的附加净功率。因此,在最小负载的暂时减小方面以及在以恒定的点火速率执行负载变化的可能性(例如,参加每季度一小时的盘中市场)方面,存储集成导致改进的负载灵活性。此外,集成的能量存储显着提高了主要控制储备的+/- 2.8%。

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