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SENSITIVITY ANALYSIS AND CONTROL OF GASIFIER USING RECYCLED CARBON DIOXIDE GAS IN INTEGRATED GASIFICATION COMBINED CYCLE

机译:综合气化联合循环中使用再生二氧化碳气体的气化器敏感性分析与控制

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Integrated Gasification Combined Cycle (IGCC) is rapidly emerging as one of the most promising technologies in power generation and is able to meet the most stringent emissions requirements. The IGCC systems are extremely clean and much more efficient than traditional coal fired power systems. The gasifier is the heart and most complicated unit operation with high temperatures and pressure variations in the Integrated Gasification Combined Cycle (IGCC). The dynamics inside a gasifier is very rapid and it is extremely complicated to control the high temperatures inside the gasifier and the synthesis gas (H_2 + CO) composition coming out of the gasifier. This paper describes a novel technique that has been developed for varying and controlling the synthesis gas compositions coming out of the gasifier and temperature inside the gasifier by carbon dioxide gas recycle to the gasifier. In order to vary the synthesis gas composition, the gasifier temperature and other key parameters, the carbon dioxide recycle gas to the gasifier is manipulated instead of varying the coal, water and oxygen mass flow rates. A sensitivity analysis on the gasifier has been completed by varying the mass flow rate of carbon dioxide recycle gas and the oxygen gas without varying the coal slurry (coal +water) mass flow rate to analyze the synthesis gas composition, temperature, char conversion and other important parameters. Using the sensitivity analysis it has been showing that enhanced controllability of the gasifier in the IGCC is possible to meet the varying demands by recycling CO_2 without the need of varying the coal, water and oxygen flow rates. The method is based on the idea that different output compositions can be achieved by making the carbon in coal slurry react with as an oxidizer instead of O_2 with the help of Boudouard reaction (CO_2 + C → 2CO). The two-stage oxygen blown entrained flow gasifier has been modeled using Computational Fluid Dynamics (CFD) and the coal gasification process was modeled using the Discrete Phase Method implemented in the Finite Volume FLUENT? CFD software. The physical and chemical processing of the coal slurry gasification is implemented by using FLUENT? User Defined Function's (UDF'S). These UDF's define the mechanism through which thecoal partiticles undergo moisture release, vaporization devolatilization, char oxidation and gasification processes.One important property of the gasifier in the Integrated Gasification Combined Cycle (IGCC) is that it can simultaneously produce synthesis gas for chemical processes as well as electricity, how much is generated of each can be balanced according to market demand.
机译:综合气化联合循环(IGCC)迅速涌现为发电中最有前途的技术之一,能够满足最严格的排放要求。 IGCC系统非常干净,比传统的燃煤电力系统更有效。气化器是心脏和最复杂的单位操作,具有综合气化联合循环(IGCC)的高温和压力变化。气化器内的动态非常快,控制气化器内的高温和气化器中的合成气(H_2 + CO)组合物非常复杂。本文介绍了一种新颖的技术,该技术已经开发用于改变和控制通过二氧化碳气体回收到气化器的气化器和气化器内的温度的合成气体组合物。为了改变合成气组成,气化器温度和其他关键参数,操纵二氧化碳循环气化器,而不是改变煤,水和氧气量流速。通过改变二氧化碳循环气体和氧气的质量流量来完成对气化器的灵敏度分析,而无需改变煤浆(煤+水)质量流量,以分析合成气体组合物,温度,Char转换等重要参数。使用灵敏度分析,已经表明,通过再循环CO_2,可以通过改变煤,水和氧气流速来满足IGCC中气化器的增强的可控性。该方法基于不同的输出组合物可以通过使煤浆料中的碳与氧化剂代替O_2在Boudouard反应(CO_2 + C→2CO)的帮助下实现不同的输出组合物。两级氧气吹夹带的流动气化器已经使用计算流体动力学(CFD)进行了建模,并且使用在有限体积流畅的离散相方法进行建模煤气化过程? CFD软件。通过使用流利的煤浆料气化的物理和化学加工?用户定义的函数(UDF)。这些UDF的定义了Thecoal部分部经历水分释放,汽化脱挥发,炭氧化和气化过程的机制。气化器在综合气化结合循环(IGCC)中的重要性质是它也可以同时为化学过程产生合成气体作为电力,根据市场需求,每个都会产生多少。

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