Optimal control for fast boiler start-up based on a nonlinear model and considering the thermal stress on thick-walled components

K. Kruger, M. Rode, R. Franke
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引用次数: 21

Abstract

The basis for control optimization is a nonlinear model for a high-pressure bypass and a drum-type boiler consisting of furnace, economizer, evaporator, superheaters, attemperator, and thick-walled components such as boiler drum and superheater header. After the mathematical formulation of the boiler start-up optimization problem and the cost function, including the related hard constraints (e.g. control bounds and thermal stress limits), the optimal reference and input control is calculated using successive quadratic programming techniques. Results of the optimization process are optimal reference values for the boiler firing rate, steam pressure and steam temperature, and the positioning of the control valves for attemperator and high-pressure bypass during the start-up phase. The control structure applied minimizes both the fuel consumption and start-up time of the boiler and is similar to a model-following control application.
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基于非线性模型并考虑厚壁构件热应力的锅炉快速启动优化控制
控制优化的基础是由炉膛、省煤器、蒸发器、过热器、减温器以及锅炉汽包、过热器集箱等厚壁部件组成的高压旁通汽包式锅炉的非线性模型。在得到锅炉启动优化问题的数学表达式和成本函数,包括相关的硬约束(如控制界和热应力极限)之后,利用连续二次规划技术计算最优参考和输入控制。优化过程的结果为锅炉燃烧速率、蒸汽压力和蒸汽温度以及启动阶段温控器和高压旁通控制阀的位置提供了最优参考值。所采用的控制结构使锅炉的燃料消耗和启动时间最小化,类似于模型跟踪控制应用。
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