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A thermodynamic model of solar thermal energy assisted natural gas fired combined cycle (NGCC) power plant

机译:太阳能热能辅助天然气燃烧组合循环(NGCC)发电厂的热力学模型

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A solar thermal energy assisted NGCC power plant was modeled to investigate the impact on plant efficiency, output and CO2 emission with solar thermal energy addition. In this particular model, with 23.7 MWth solar thermal energy input to the HRSG, the duct firing could be shut off, 2337.5 kg/h natural gas would be saved, and 6.2 t/hr CO2 emission would be eliminated. However, there would also be a 4.07 MW_e loss in power from the combined cycle. Another solar input approach shows 14.35 MWe additional electricity would be generated with 35 MWth solar thermal energy addition. The thermodynamic analyses in this paper demonstrated the possibilities to utilize the solar thermal energy to reduce fuel consumption and CO2 emission, or to increase the NGCC power plant efficiency and output, while taking advantage of the already existing power plant infrastructure.
机译:建模太阳能热能辅助NGCC发电厂,以研究利用太阳能热能的植物效率,输出和二氧化碳排放的影响。在这种特殊模型中,对于HRSG的23.7 MWTH太阳能热能输入,可以关闭管道烧制,将保存2337.5kg / h天然气,并将消除6.2吨/小时的二氧化碳排放。但是,从组合循环中的电力也会有4.07 mw_e损失。另一种太阳能输入方法显示14.35 MWE将产生35 MWTH太阳能热能的额外电力。本文的热力学分析证明了利用太阳能热能降低燃料消耗和二氧化碳排放的可能性,或提高NGCC电厂效率和输出,同时利用现有的电厂基础设施。

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