1. 毕业设计(论文)的内容和要求
本课题将为燃烧后碳捕集装置设计模型预测控制器实现碳捕集水平的快速跟踪。
(1)通过文献阅读和总结分析,给出如下内容:控制策略对现有燃煤电厂碳捕集机组的意义、燃烧后碳捕集机组灵活控制研究的现状与不足,本课题拟开展的研究内容和预期目标。
相关内容要求能够支撑毕业要求指标点3.1和10.3。
2. 参考文献
[1] Lin Y-J, Wong D S-H, Jang S-S, 等. Control strategies for flexible operation of power plant with CO2 capture plant[J]. AIChE Journal, 2012, 58(9): 26972704.[2] Lawal A, Wang M, Stephenson P, et al. Demonstrating full-scale post-combustion CO2 capture for coal-fired power plants through dynamic modelling and simulation[J]. Fuel, 2012, 101: 115128.[3] Wu X, Shen J, Li Y, et al. Dynamic behavior investigations and disturbance rejection predictive control of solvent-based post-combustion CO2 capture process[J]. Fuel, 2019, 242: 624637.[4] Nittaya T, Douglas P L, Croiset E, et al. Dynamic modelling and control of MEA absorption processes for CO2 capture from power plants[J]. Fuel, 2014, 116: 672691.[5] Luu M T, Manaf N A, Abbas A. Dynamic modelling and control strategies for flexible operation of amine-based post-combustion CO2 capture systems[J]. International Journal of Greenhouse Gas Control, 2015, 39: 377389.[6] Clarke D W, Mohtadi C, Tuffs P S. Generalized predictive controlPart I. The basic algorithm[J]. Automatica, 1987, 23(2): 137148.[7] Clarke D W, Mohtadi C, Tuffs P S. Generalized Predictive ControlPart II Extensions and interpretations[J]. Automatica, 1987, 23(2): 149160.[8] Zhang Q, Turton R, Bhattacharyya D. Nonlinear model predictive control and H∞ robust control for a post-combustion CO2 capture process[J]. International Journal of Greenhouse Gas Control, 2018, 70: 105116.[9] Mechleri E, Lawal A, Ramos A, et al. Process control strategies for flexible operation of post-combustion CO2 capture plants[J]. International Journal of Greenhouse Gas Control, 2017, 57: 1425.[10] Wu X, Wang M, Liao P, et al. Solvent-based post-combustion CO2 capture for power plants: A critical review and perspective on dynamic modelling, system identification, process control and flexible operation[J]. Applied Energy, 2020, 257: 113941.[11] 自查文献...
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