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Energy, Exergy and Economic Evaluation Comparison of Small-Scale Single and Dual Pressure Organic Rankine Cycles Integrated with Low-Grade Heat Sources

机译:集成低等级热源的小规模单,双压力有机朗肯循环的能量,火用和经济评估比较

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Low-grade heat sources such as solar thermal, geothermal, exhaust gases and industrial waste heat are suitable alternatives for power generation which can be exploited by means of small-scale Organic Rankine Cycle (ORC). This paper combines thermodynamic optimization and economic analysis to assess the performance of single and dual pressure ORC operating with different organic fluids and targeting small-scale applications. Maximum power output is lower than 45 KW while the temperature of the heat source varies in the range 100–200 °C. The studied working fluids, namely R1234yf, R1234ze(E) and R1234ze(Z), are selected based on environmental, safety and thermal performance criteria. Levelized Cost of Electricity (LCOE) and Specific Investment Cost (SIC) for two operation conditions are presented: maximum power output and maximum thermal efficiency. Results showed that R1234ze(Z) achieves the highest net power output (up to 44 kW) when net power output is optimized. Regenerative ORC achieves the highest performance when thermal efficiency is optimized (up to 18%). Simple ORC is the most cost-effective among the studied cycle configurations, requiring a selling price of energy of 0.3 USD/kWh to obtain a payback period of 8 years. According to SIC results, the working fluid R1234ze(Z) exhibits great potential for simple ORC when compared to conventional R245fa.
机译:低级热源,例如太阳能,地热,废气和工业废热,是适合发电的替代方法,可以通过小规模有机朗肯循环(ORC)加以利用。本文将热力学优化和经济分析相结合,以评估使用不同有机流体并针对小规模应用的单压力和双压力ORC的性能。当热源温度在100–200°C范围内变化时,最大功率输出低于45 KW。根据环境,安全性和热性能标准选择研究的工作流体,即R1234yf,R1234ze(E)和R1234ze(Z)。给出了两种运行条件下的平均电费(LCOE)和特定投资成本(SIC):最大功率输出和最大热效率。结果表明,当优化了净功率输出时,R1234ze(Z)可获得最高的净功率输出(高达44 kW)。优化热效率时,再生ORC可获得最高性能(高达18%)。在研究的循环配置中,简单ORC最具成本效益,需要0.3美元/ kWh的能源售价才能获得8年的投资回收期。根据SIC结果,与常规R245fa相比,工作流体R1234ze(Z)展示出简单ORC的巨大潜力。

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