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首页> 外文期刊>Trends in Ecology & Evolution >Flexible Operation of Retrofitted Coal-Fired Power Plants to Reduce Wind Curtailment Considering Thermal Energy Storage
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Flexible Operation of Retrofitted Coal-Fired Power Plants to Reduce Wind Curtailment Considering Thermal Energy Storage

机译:电动改装燃煤发电厂的灵活运行,以减少考虑热能储存的风力缩减

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摘要

The rapid expansion of wind power has triggered significant wind curtailment because the power system lacks flexibility to deal with the uncertainty and variability of wind power. The operational flexibility of coal-fired power plants is limited by the minimum stable firing rate in the boiler. Steam extraction and thermal energy storage could enable power output adjustment without changing the firing rate in the boiler. Thus, retrofitting existing coal-fired power plants with steam extraction and thermal energy storage is a promising option to accommodate the high penetration of wind power in the power system, especially in coal-dominated power system. This study investigated the operational flexibility of coal-fired power plants retrofitted with steam extraction and thermal energy storage. First, a linear operation model is proposed for retrofitted coal-fired power plants considering new characteristics and technical constraints. Second, a simulation framework based on stochastic unit commitment and rolling economic dispatch is developed to explore the benefits of steam extraction and thermal energy storage in wind-integrated power systems. The forecasted wind power data is used in stochastic unit commitment to evaluate start-up and shut-down cost, while real wind power data is adopted in rolling economic dispatch to calculate the actual production cost. The simulation results on the modified IEEE 24-bus system demonstrate the effectiveness of retrofitting coal-fired power plants with steam extraction and thermal energy storage for mitigating wind curtailment.
机译:风力发电的快速扩张引发了显着的风力缩减,因为电力系统缺乏处理风力的不确定性和可变性的灵活性。燃煤发电厂的操作灵活性受锅炉中最小稳定烧制率的限制。蒸汽提取和热能存储可以使电力输出调节能够在不改变锅炉中的射击率的情况下进行功率输出调节。因此,用蒸汽提取和热能存储器改造现有的燃煤发电厂是一种有希望的选择,可以适应电力系统中的风力电力的高渗透,尤其是煤主导的电力系统。本研究调查了燃煤电厂用蒸汽提取和热能储存的运行灵活性。首先,提出了用于考虑新特性和技术限制的改装燃煤发电厂的线性操作模型。其次,开发了一种基于随机单位承诺和轧制经济派遣的仿真框架,以探讨蒸汽提取和蒸汽萃取和热能储存在风集成电力系统中的益处。预测的风电数据用于随机单位承诺,以评估启动和关闭成本,而滚动经济调度采用实际风电数据以计算实际生产成本。改进的IEEE 24总线系统上的仿真结果证明了改造燃煤发电厂与蒸汽提取和热能储存的有效性,以减轻风削减。

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