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The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), September 20–23, 2019, Okinawa, Japan Dynamic simulation and control system for chemical looping combustion

机译:第六次国际电力和能源系统会议工程(CPESE 2019),2019年9月20日至23日,日本冲绳,日本化学环燃烧动态仿真和控制系统

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Chemical looping combustion (CLC) is a technique for separating carbon dioxide from flue gas. It consists of two main processes: a fuel reactor and an air reactor. In the fuel reactor, fuel reacts with solid metal oxide particles to produce heat, COsub2/sub and H 2 O vapor which later can be easily separated by the condensation. The reacted solid metal is then sent to the air reactor for regenerating via an oxidation reaction with air before being returned to the fuel reactor. In this study, these reactors in the CLC system are integrated as a circulating fluidized bed system and a dynamic model has been developed for the system. The fuel reactor (or downer) operates in bubbling fluidization regime where the air reactor (or riser) operates in fast fluidization regime. Using the developed dynamic model, the transient responses of various control variables such as the temperature of two fluidized bed reactors, pressure and the liquid level of a condenser have been controlled by manipulating variables such as heat transfer rates of the reactors, gas outlet flow rate and liquid outlet flow rate of the condenser. A proportional–integral–derivative (PID) controller was tuned for controlling purpose. The integral of the absolute value of error (IAE) is used to evaluate the control system performance.
机译:化学环燃烧(CLC)是一种从烟道气中分离二氧化碳的技术。它包括两个主要过程:燃料反应器和空气反应器。在燃料反应器中,燃料与固体金属氧化物颗粒反应以产生热,CO 2 和H 2 O蒸汽,其后来可以通过冷凝容易地分离。然后将反应的固体金属送到空气反应器中,通过氧化反应通过与空气再生,然后返回到燃料反应器之前。在该研究中,CLC系统中的这些反应器被整合为循环流化床系统,并且已经为该系统开发了动态模型。燃料反应器(或凹下)在鼓泡流化状态下操作,其中空气反应器(或立管)在快速流化状态下操作。使用所开发的动态模型,通过操纵反应器的传热速率,气体出口流速来控制各种控制变量的各种控制变量的瞬态响应,例如两个流化床反应器的温度,压力和冷凝器的液位和冷凝器的液体出口流速。调整比例积分衍生物(PID)控制器以控制目的。错误(IAE)绝对值的积分用于评估控制系统性能。

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