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Thermodynamic analysis of KCS/ORC integrated power generation system with LNG cold energy exploitation and CO2 capture

机译:LNG冷能开发和CO2捕获的KCS / ORC集成发电系统的热力学分析

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In this paper, an integrated power generation system of Kalina cycle system (KCS) and organic Rankine cycle (ORC) with LNG cold energy exploitation and CO2 capture is introduced. The composite circulation system can fully recover and use the medium and low temperature waste heat to reduce the greenhouse gas emissions. To evaluate the system performances, the thermodynamics model was established and the system was simulated by using Aspen HYSYS software. Thermodynamic analysis has been performed to study the effects of turbine inlet temperature, NH3 mass fraction, evaporation pressure and CO2 capture pressure on the KCS/ORC integrated system. The optimal conditions were also investigated and identified. Exergy analysis of the components operated on KCS or ORC has also been demonstrated. The results showed that the optimal values of the network output, thermal efficiency and CO2 captured quantity of the system were respectively 394.685 kW, 53.25% and 0.3 t/t(CO2) (0.6 t/t(LNG)), while the evaluation indexes of the power recovery efficiency and exergy efficiency were respectively 36% and 41.42%. The exergy loss efficiency of each component was examined. It was indicated that the whole system has significant advantages in waste heat recovery. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了Kalina循环系统(KCS)的集成发电系统和具有LNG冷能剥削和CO2捕获的有机朗肯循环(ORC)。复合循环系统可以完全恢复和使用培养基和低温余热以减少温室气体排放。为了评估系统性能,建立了热力学模型,通过使用Aspen Hysys软件模拟系统。已经进行了热力学分析以研究涡轮机入口温度,NH3质量分数,蒸发压力和CO2捕获压力对KCS / ORC集成系统的影响。还研究了最佳条件并确定。还证明了对KCS或ORC运营的组件的漏洞分析。结果表明,网络输出,热效率和二氧化碳捕获量的最佳值分别为394.685千瓦,53.25%和0.3吨/吨(CO2)(0.6 T / T(LNG)),同时评估指标电力回收效率和高级效率分别为36%和41.42%。检查了每个组分的漏洞损失效率。结果表明,整个系统在废热回收方面具有显着的优势。 (c)2017 Elsevier B.v.保留所有权利。

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