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首页> 外文期刊>Energy Conversion & Management >Thermodynamic analysis of a compressed carbon dioxide energy storage system using two saline aquifers at different depths as storage reservoirs
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Thermodynamic analysis of a compressed carbon dioxide energy storage system using two saline aquifers at different depths as storage reservoirs

机译:使用两个不同深度的盐水层作为储集层的压缩二氧化碳储能系统的热力学分析

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Compressed air energy storage (CAES) is one of the leading large-scale energy storage technologies. However, low thermal efficiency and low energy storage density restrict its application. To improve the energy storage density, we propose a two-reservoir compressed CO2 energy storage system. We present here thermodynamic and parametric analyses of the performance of an idealized two-reservoir CO2 energy storage system under supercritical and transcritical conditions using a steady-state mathematical model. Results show that the transcritical compressed CO2 energy storage system has higher round-trip efficiency and exergy efficiency, and larger energy storage density than the supercritical compressed CO2 energy storage. However, the configuration of supercritical compressed CO2 energy storage is simpler, and the energy storage densities of the two systems are both higher than that of CAES, which is advantageous in terms of storage volume for a given power rating. Published by Elsevier Ltd.
机译:压缩空气储能(CAES)是领先的大规模储能技术之一。然而,低热效率和低能量存储密度限制了其应用。为了提高能量存储密度,我们提出了一种两储层压缩的CO2能量存储系统。我们在这里使用稳态数学模型,对超临界和跨临界条件下理想化的两储层二氧化碳储能系统的性能进行热力学和参数分析。结果表明,与超临界压缩CO2储能相比,跨临界压缩CO2储能系统具有更高的往返效率和火用效率,并且具有更高的储能密度。但是,超临界压缩CO2能量存储的配置更简单,并且两个系统的能量存储密度均高于CAES,这对于给定的额定功率而言在存储量方面是有利的。由Elsevier Ltd.发布

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