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CO_2 mixtures as innovative working fluid in power cycles applied to solar plants. Techno-economic assessment

机译:CO_2混合物作为电力循环中创新的工作流体,应用于太阳能电站。技术经济评估

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This paper discusses the adoption of CO2 mixtures for improving the thermal-to-power efficiency conversion in solar tower plants and reducing the Levelized Cost of Electricity. Two different fluids are considered for blending the CO2: N2O4 and TiCl4. The main advantage of the innovative mixtures relies in a higher critical temperature with respect to pure CO2, which allows condensing cycles even at relatively high ambient temperatures typical of solar plants locations. Thermodynamic results show that the innovative cycles can achieve conversion efficiencies as high as 43% and 50% at 550 degrees C and 700 degrees C maximum temperature respectively, outperforming the reference CO2 cycle by 2 points percent. In addition, the simpler lay-out and the liquid compression reduce the power block capital costs below 700 $/kW. Detailed solar plant annual simulation is performed to assess the overall solar to electricity efficiency which can be around 21% for the innovative fluid, corresponding to 10% increase with respect to state-of-the-art solar plant.The higher performance and lower costs lead to a Levelized Cost of Electricity reduction of 10% with respect to conventional steam cycle power block.
机译:本文讨论了采用二氧化碳混合物来改善太阳能塔电厂的热电效率转换并降低平均电费的问题。考虑使用两种不同的流体来混合CO2:N2O4和TiCl4。创新混合物的主要优点在于,相对于纯净的CO2而言,其临界温度更高,即使在典型的太阳能电站较高的环境温度下,也可以进行冷凝循环。热力学结果表明,创新的循环在最高温度550摄氏度和700摄氏度下可分别实现高达43%和50%的转化效率,比参考CO2循环高出2个百分点。此外,更简单的布局和液体压缩将功率模块的资本成本降低到700 $ / kW以下。进行详细的太阳能发电厂年度模拟以评估整体太阳能发电效率,创新液可达到21%左右,与最先进的太阳能发电厂相比增加了10%。更高的性能和更低的成本与传统的蒸汽循环动力块相比,可将平均电力成本降低10%。

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