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Dynamic modeling and control for pulverized-coal-fired oxy-combustion boiler island

机译:煤粉制氧燃烧锅炉岛的动态建模与控制

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Oxy-fuel combustion is one of competitive and promising carbon capture technologies for restraining CO2 emissions from power plants. Dynamic simulation of oxy-combustion system, which is essential for gaining its dynamic characteristics, can help to evaluate and improve process design, and to develop control system and operational strategies. This paper focuses on dynamic simulation and control design for a conceptual 600 MWe oxy-combustion pulverized-coal-fired boiler. The steady-state model using a pseudo coal to substitute real coal is established, validated, and then transformed into the dynamic model which uses pressure-driven solution. The control system, which aims to automatically regulating flue gas O-2 concentration within reasonable range (2-7 mol.% in this study), is designed and applied to the dynamic boiler model. Three planned disturbances of load change, oxygen purity (from cryogenic air separation unit) ramp change and air in-leakage (from boiler) step change are conducted. Detailed dynamic behavior from water side and flue gas side is obtained and analyzed to help engineering operation in real plant. Mode switching process and alternative control strategy are simulated and discussed. Comprehensive dynamic model with specified control system provides possibility to study the dynamic characteristics of full-train oxy-combustion power plants. (C) 2014 Elsevier Ltd. All rights reserved
机译:含氧燃料燃烧是抑制发电厂CO2排放的竞争性和有前途的碳捕集技术之一。氧燃烧系统的动态仿真对于获得其动态特性至关重要,它可以帮助评估和改进过程设计,并开发控制系统和操作策略。本文重点研究了概念性的600 MWe氧燃烧煤粉锅炉的动态仿真和控制设计。建立,验证并使用伪煤替代真实煤的稳态模型,然后将其转换为使用压力驱动解决方案的动态模型。设计了旨在将烟气中O-2浓度自动调节在合理范围内(本研究中为2-7 mol。%)的控制系统,并将其应用于动态锅炉模型。对负载变化,氧气纯度(来自低温空气分离装置),斜坡变化和漏气(来自锅炉)阶跃变化的三个计划扰动进行了分析。获得并分析了水和烟气侧的详细动态行为,以帮助实际工厂中的工程运营。仿真和讨论了模式切换过程和替代控制策略。具有指定控制系统的综合动力学模型为研究全列车制氧燃烧电厂的动力学特性提供了可能性。 (C)2014 Elsevier Ltd.保留所有权利

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