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A comparative study of the energy exergetic and thermo-economic performance of a novelty combined Brayton S-CO2-ORC configurations as bottoming cycles

机译:一种对比较研究新颖的Brayton S-CO2-ORC配置作为底层循环

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摘要

This paper presents a comparative study on the energy, exergetic and thermo-economic performance of a novelty thermal power system integrated by a supercritical CO2 Brayton cycle, and a recuperative organic Rankine cycle (RORC) or a simple organic Rankine cycle (SORC). A thermodynamic model was developed applying the mass, energy and exergy balances to all the equipment, allowing to calculate the exergy destruction in the components. In addition, a sensitivity analysis allowed studying the effect of the primary turbine inlet temperature (TIT, PHIGH, rP and TC) on the net power generated, the thermal and exergy efficiency, and some thermo-economic indicators such as the payback period (PBP), the specific investment cost (SIC), and the levelized cost of energy (LCOE), when cyclohexane, acetone and toluene are used as working fluids in the bottoming organic Rankine cycle. The parametric study results show that cyclohexane is the organic fluid that presents the best thermo-economic performance, and the optimization with the PSO method conclude a 2308.91 USD/kWh in the SIC, 0.22 USD/kWh in the LCOE, and 9.89 year in the PBP for the RORC system. Therefore, to obtain technical and economic viability, and increase the industrial applications of these thermal systems, thermo-economic optimizations must be proposed to obtain lower values of the evaluated performance indicators.
机译:本文介绍了由超临界CO2 Brayton循环集成的新型热电系统的能量,前进和热经济性能的比较研究,以及恢复有机朗肯循环(RORC)或简单的有机朗肯循环(SORC)。开发了一种热力学模型,将质量,能量和高级余额应用于所有设备,允许计算组件中的漏洞破坏。此外,允许敏感性分析研究初级涡轮机入口温度(山雀,Phigh,RP和TC)对净功率产生的影响,热和高效率,以及一些热经济指标,如回收期(PBP) ),特定的投资成本(SIC)和能量(LCoE)的调整成本(LCOE),当环己烷,丙酮和甲苯时用作底部有机朗朗循环中的工作流体。参数化研究结果表明,环己烷是呈现最佳热经济性能的有机液,与PSO方法的优化在SIC中得出2308.91美元/千瓦时,LCOE中的0.22美元/千瓦时,9.89年用于rorc系统的PBP。因此,为了获得技术和经济可行性,并增加这些热系统的工业应用,必须提出热经济优化,以获得评估的绩效指标的较低值。

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