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Thermo-dynamic and economic analysis of s a novel near- isothermal pumped hydro compressed air energy storage system

机译:S的新型近等温泵浦水电压缩空气储能系统的热动力学和经济分析

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摘要

With the large-scale use of intermittent renewable energy worldwide, energy storage systems are important for dealing with the fluctuation of renewable energies. In this paper, a novel near- isothermal pumped hydro compressed air energy storage system without thermal energy storage is proposed; The exhausted salt cavern of double well is employed as the air storage vessel in this proposed system. To detect the thermodynamic and economic of this system, the detailed thermodynamic and economic model of both the main components and the whole system have been built. The results showed that the electrical efficiency of the system can reach 61.6%, and the exergy efficiency can achieve 72.3%. Moreover, the economic performance of the system shows that the cost of cavern is more than 60% of the total energy storage system. The payback period of the proposed system decreases with the increase of output power of energy storage system. By numerical calculation, when the energy storage scale of the system is 4MW, the payback period of the system is reduced to 6.15 years.
机译:随着全球间歇性可再生能源的大规模使用,能量存储系统对于处理可再生能源的波动很重要。在本文中,提出了一种新颖的近等温泵浦水上压缩空气储能系统,没有热能储存;双倍井的耗尽的盐洞被用作该提出的系统中的空气储存容器。为了检测该系统的热力学和经济,建立了主要部件和整个系统的详细热力学和经济模型。结果表明,该系统的电效率可达到61.6%,高效率达到72.3%。此外,系统的经济性能表明,洞穴的成本超过了总能量存储系统的60%。拟议系统的投资回收期随能量储存系统输出功率的增加而降低。通过数值计算,当系统的能量存储量表为4MW时,系统的投资回收期减少到6.15年。

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