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Investigation of a combined gas-steam system with flue gas recirculation

机译:具有烟气再循环的燃气-蒸汽联合系统的研究

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This article presents changes in the operating parameters of a combined gas-steam cycle with a CO2 capture installation and flue gas recirculation. Parametric equations are solved in a purpose-built mathematical model of the system using the Ebsilon Professional code. Recirculated flue gases from the heat recovery boiler outlet, after being cooled and dried, are fed together with primary air into the mixer and then into the gas turbine compressor. This leads to an increase in carbon dioxide concentration in the flue gases fed into the CO2 capture installation from 7.12 to 15.7%. As a consequence, there is a reduction in the demand for heat in the form of steam extracted from the turbine for the amine solution regeneration in the CO2 capture reactor. In addition, the flue gas recirculation involves a rise in the flue gas temperature (by 18 K) at the heat recovery boiler inlet and makes it possible to produce more steam. These changes contribute to an increase in net electricity generation efficiency by 1%. The proposed model and the obtained results of numerical simulations are useful in the analysis of combined gas-steam cycles integrated with carbon dioxide separation from flue gases.
机译:本文介绍了带有CO2捕集装置和烟气再循环的燃气-蒸汽联合循环的运行参数的变化。使用Ebsilon Professional代码在系统的专用数学模型中求解参数方程式。来自热回收锅炉出口的再循环烟气经过冷却和干燥后,与一次空气一起进入混合器,然后进入燃气轮机压缩机。这导致送入二氧化碳捕集装置的烟道气中的二氧化碳浓度从7.12增加到15.7%。结果,减少了从涡轮机抽出的蒸汽形式的热量的需求,以用于CO 2捕集反应器中胺溶液的再生。此外,烟气再循环会导致热量回收锅炉入口处的烟气温度升高(18 K),并有可能产生更多的蒸汽。这些变化使净发电效率提高了1%。所提出的模型和所得的数值模拟结果可用于分析结合了烟气中二氧化碳的燃气-蒸汽联合循环。

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