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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermodynamic and exergy analysis and optimization of a transcritical CO2 power cycle driven by geothermal energy with liquefied natural gas as its heat sink
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Thermodynamic and exergy analysis and optimization of a transcritical CO2 power cycle driven by geothermal energy with liquefied natural gas as its heat sink

机译:液化天然气为地热的地热能驱动的跨临界CO2功率循环的热力学和火用分析及优化

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The main objective of this research is to study a transcritical CO2 cycle via geothermal resources to produce electrical energy. Heat sink of this cycle is Liquefied natural gas (LNG) to drop back pressure of the CO2 turbine greatly. It is presumed that the system works under steady state situations to establish the mathematical model of the transcritical CO2 geothermal power generation system. To evaluate the impacts of different main thermodynamic parameters in the performance of the system a parametric investigation is employed. Furthermore, to determine an optimum system performance from an economical and thermodynamic point of view, a multi-objective optimization jointed to NSGA-II algorithm is employed. To calculate the final solution three decision makers comprising TOPSIS, LINAMP and FUZZY were use. Moreover, sensitivity analysis and error examination were performed on the solutions gained from the decision makers. In conclusion, outputs achieved from this investigation were compared to the other related studies and this comparison reveals that the solutions gained in this study are satisfactory compared to the previous works. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是研究通过地热资源产生电能的跨临界CO2循环。该循环的散热器为液化天然气(LNG),大大降低了CO2涡轮机的背压。假定该系统在稳定状态下工作,可以建立跨临界CO2地热发电系统的数学模型。为了评估不同主要热力学参数对系统性能的影响,采用了参数研究。此外,为了从经济和热力学的角度确定最佳的系统性能,采用了结合NSGA-II算法的多目标优化。为了计算最终解决方案,使用了三个决策者,包括TOPSIS,LINAMP和FUZZY。此外,还对决策者提供的解决方案进行了敏感性分析和错误检查。总之,将本研究获得的产出与其他相关研究进行了比较,该比较表明与以前的工作相比,本研究获得的解决方案令人满意。 (C)2016 Elsevier Ltd.保留所有权利。

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