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Thermodynamic characteristics of a novel wind-solar-liquid air energy storage system

机译:新型风力 - 太阳能 - 液体空气储能系统的热力学特性

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Due to the nature of fluctuation and intermittency, the utilization of wind and solar power will bring a huge impact to the power grid management. Therefore a novel hybrid wind-solar-liquid air energy storage (WS-LAES) system was proposed. In this system, wind and solar power are stored in the form of liquid air by cryogenic liquefaction technology and thermal energy by solar thermal collector, respectively. Owing to the high density of liquid air, the system has a large storage capacity and no geographic constraints. The WS-LAES system can store unstable wind and solar power for a stable output of electric energy and hot water. Moreover, a thermodynamic analysis was carried out to investigate the best system performance. The result shows that the increases of compressor adiabatic efficiency, turbine inlet pressure and inlet temperature all have a beneficial effect.
机译:由于波动和间歇性的性质,风和太阳能的利用将对电网管理带来巨大影响。 因此,提出了一种新型的混合式风力 - 太阳能 - 液体空气储存(WS-LAES)系统。 在该系统中,通过太阳能热收集器分别通过低温液化技术和热能以液体空气的形式存储风和太阳能。 由于液体空气的高密度,该系统具有大的存储容量和没有地理约束。 WS-Laes系统可以存储不稳定的风和太阳能,以实现电能和热水的稳定输出。 此外,进行了热力学分析以研究最佳的系统性能。 结果表明,压缩机绝热效率的增加,涡轮机入口压力和入口温度都具有有益的效果。

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