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Thermoeconomic analysis of a gas turbine and cascaded CO_2 combined cycle using thermal oil as an intermediate heat-transfer fluid

机译:使用导热油作为中间传热流体的燃气轮机和CO_2级联联合循环的热经济分析

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This paper reports an investigation of a gas turbine (GT) and two-stage cascaded supercritical and transcritical CO2 (s-CO2/t-CO2) combined power cycle using liquefied natural gas (LNG) as a low temperature heat sink. This cycle may be well-suited for installation near LNG import terminals. GT exhaust supplies input heat to an intermediate s-CO2 cycle through a thermal oil loop. Waste heat from the s-CO2 cycle and residual heat from the GT cycle drives a lower temperature t-CO2 cycle. The t-CO2 cycle is LNG-cooled. A solution procedure is performed to perform a coupled analysis of the thermodynamic and economic performance of this combined cycle. Results show that the GT-cascade CO2 combined cycle has an optimal operating point determined by the s-CO2 compressor inlet conditions. Genetic algorithm (GA) optimization indicates that a Taurus 60 GT-cascaded CO2 combined cycle could reach 51.44% efficiency. For 20-year lifetime and 5% rate of interest, thermoeconomic optimization (after-tax profit, ATP as objective) results show ATP, levelized cost of electricity (LCOE) and net power are $2.935 x 10(6), $0.0420 kWh(-1) and 8.886 MW, respectively. Findings suggest that the GT-cascaded CO2 combined cycle is an efficient and commercially viable technology for power generation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文报告了对使用液化天然气(LNG)作为低温散热器的燃气轮机(GT)和两级级联超临界和跨临界CO2(s-CO2 / t-CO2)联合动力循环的研究。该循环可能非常适合在LNG进口码头附近安装。 GT排气通过导热油回路将输入热量提供给中间s-CO2循环。 s-CO2循环产生的废热和GT循环产生的余热推动了温度较低的t-CO2循环。 t-CO2循环是液化天然气冷却的。执行求解程序以对该联合循环的热力学和经济性能进行耦合分析。结果表明,GT级联的CO2联合循环具有由s-CO2压缩机进气口条件决定的最佳工作点。遗传算法(GA)优化表明,Taurus 60 GT级联的CO2联合循环可达到51.44%的效率。对于20年寿命和5%的利率,热经济优化(税后利润,以ATP为目标)结果显示ATP,平均电力成本(LCOE)和净电力为$ 2.935 x 10(6),$ 0.0420 kWh(- 1)和8.886 MW。研究结果表明,GT级联的CO2联合循环是一种高效且商业可行的发电技术。 (C)2018 Elsevier Ltd.保留所有权利。

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