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Dynamic modelling and simulation study of Texaco gasifier in an IGCC process

机译:德士古气化炉在IGCC过程中的动态建模和仿真研究

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Integrated gasification combined cycle (IGCC) is considered as a viable option for low emission power generation and carbon-dioxide sequestration. The simulation of the whole IGCC process is important for thermodynamic evaluation, study of carbon capture readiness and economic analysis. A simplified dynamic model for the IGCC process is developed in this paper. In the IGCC process, Texaco gasifier is adopted and modelled based on chemical equilibriums principle which is used to predict the syngas content. The influences of the key input parameters such as oxygen/coal ratio and water/coal ratio to syngas generation are studied. The simulation results of the gasifier are validated comparing with the industry data provided by Lu-nan fertilizer factory. In addition, Water-shift reactor, gas turbine, and heat recovery steam generation modules are modeled to study the dynamic performance with respect to the variation from the input of syngas stream. The simulation results show the dynamic changes of key output variables, including gas temperature, power output and mole percentages of hydrogen, carbon dioxide in the syngas. The process dynamic responses with three types of coal inputs are studied in the paper and the results are presented to show the dynamic variation trend.
机译:集成气化联合循环(IGCC)被认为是低排放发电和二氧化碳封存的可行选择。整个IGCC过程的模拟对于热力学评估,碳捕集准备情况的研究和经济分析具有重要意义。本文为IGCC过程开发了一个简化的动态模型。在IGCC工艺中,采用Texaco气化炉并根据化学平衡原理进行建模,该原理用于预测合成气含量。研究了关键输入参数(如氧气/煤比和水/煤比)对合成气产生的影响。通过与鲁南化肥厂提供的行业数据进行比较,验证了该气化炉的模拟结果。此外,对水变换反应器,燃气轮机和热回收蒸汽发生模块进行了建模,以研究与合成气流输入相关的动态性能。仿真结果显示了关键输出变量的动态变化,包括气体温度,功率输出以及合成气中氢气,二氧化碳的摩尔百分比。研究了三种输入煤的过程动态响应,并给出了结果,以显示动态变化趋势。

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