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Experimental and analytical evaluation of a hydro-pneumatic compressed- air Ground-Level Integrated Diverse Energy Storage (GLIDES) system

机译:液压气动压缩空气地面综合多元储能(GLIDES)系统的实验和分析评估

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摘要

In recent times, there has been a significant increase in intermittent renewable electricity capacity additions to the generation mix. This, coupled with an aging electrical grid that is poorly equipped to handle the ensuing mismatch between generation and use, has created a strong need for flexible, advanced bulk energy storage technologies. In this paper, one such technology recently invented and demonstrated at Oak Ridge National Laboratory is introduced and characterized. Similar to compressed-air energy storage, the Ground-Level Integrated Diverse Energy Storage (GLIDES) technology is based on gas compression/expansion, however, liquid-piston compression and expansion are utilized. In common with pumped-storage hydroelectricity, hydraulic turbomachines (pump/turbine) are utilized for energy storage and recovery, however, pressure vessels are utilized to create artificial elevation (head) difference, allowing pressure head of several thousands of feet to be reached. This paper reports on the experimental performance of the first GLIDES proof-of-concept prototype, and presents formulation and results from a validated physics-based simulation model.
机译:近来,发电组合中间歇性可再生电力容量的增加显着增加。这种情况,加上老化的电网不足以处理随之而来的发电和使用之间的不匹配,已经强烈需要灵活,先进的大容量储能技术。在本文中,介绍并表征了橡树岭国家实验室最近发明和展示的一种此类技术。与压缩空气储能类似,地面综合多元储能(GLIDES)技术基于气体压缩/膨胀,但是利用了液-活塞压缩和膨胀。与抽水蓄能水力发电一样,液压涡轮机(水泵/涡轮机)用于能量存储和回收,但是,压力容器用于产生人为的高程(扬程)差,允许达到数千英尺的压力扬程。本文报告了第一个GLIDES概念验证原型的实验性能,并提出了经过验证的基于物理的仿真模型的公式和结果。

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