发电站
计算机科学
功率(物理)
控制器(灌溉)
控制理论(社会学)
运动仿真
发电
过程(计算)
火力发电站
模拟
工程类
控制(管理)
物理
电气工程
操作系统
人工智能
生物
量子力学
废物管理
农学
作者
Selorme Agbleze,Lawrence J. Shadle,Fernando V. Lima
标识
DOI:10.1021/acs.iecr.4c00494
摘要
Dynamic models for power plants that capture realistic general process trends and effects of manipulated variables are needed to improve load-following, while minimizing carbon footprint. In this work, a dynamic modeling approach and simulation results for subcritical coal-fired power plant components are presented. These encompass simulation of the dynamics in the fireside, including the effects of fuel, air combustion, and the dynamics of the entire waterside and power generation sections. This model development enables the simulation and analysis of the important short and long time scale dynamics of components such as heaters, evaporative loop, and power generation units. Furthermore, additional variables in the power generation section are introduced to improve model accuracy, extending the prediction capability of subcritical power plant models and opening new opportunities for research in operator training, optimization, and advanced model-based controller design that are based on these models. The change in process gain for different ramp rates associated with disturbance signals that affect process variables is also explored and a correlation developed. This provides opportunities to study disturbance rejection control implementation and adaptation for scenarios with such variations in ramp rates. The prediction capabilities of selected components are compared to data available in literature, with the obtained root mean squared error ranges that reflect the model performance and quality of predictions.
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