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Systems design and analysis of liquid air energy storage from liquefied natural gas cold energy

机译:液化天然气冷能液体空气储存的系统设计与分析

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摘要

The cold recovery of liquefied natural gas (LNG) is an important issue and power generation is widely recognized as a potential option. However, the amount of generated power from LNG regasification is relatively small for use as a primary energy source to the energy grid. Therefore, using recovered LNG cold energy as an auxiliary energy source for the energy grid can be more appropriate than directly supplying power to the energy grid. By applying an energy storage system to the LNG regasification process, the recovered energy can be flexibly released to the energy grid when required. Among various energy storage technologies, liquid air energy storage (LAES) is one of the most promising large-scale energy storage systems. This study proposes a combined LAES and LNG regasification process. In this system, the air is cooled via heat exchange with LNG and compressed by using the generated power from LNG. This power is produced by both direct and indirect methods: LNG direct expansion and organic Rankine cycle with a mixed working fluid, respectively. This is a novel work in which both direct and indirect power generation methods to the LNG regasification process are combined with the energy storage system. According to the performance comparisons amongst various energy storage systems combined with the LNG regasification process, this proposed system is the most efficient proposed in the literature. Moreover, economic evaluation is performed using a net present value to investigate the feasibility of the proposed system.
机译:液化天然气(LNG)的冷回收是一个重要的问题,发电被广泛被认为是潜在的选择。然而,来自LNG重新升放的产生功率的量相对较少,用作能量网格的主要能量源。因此,使用作为能量栅格的辅助能源的回收的LNG冷能可以比直接向能量栅极供电更合适。通过将储能系统应用于LNG再扫描过程,在需要时可以灵活地释放回收的能量。在各种能量存储技术中,液体空气能量存储(Laes)是最有前途的大型能量存储系统之一。本研究提出了一种组合的Laes和LNG再扫描过程。在该系统中,通过使用LNG的热交换通过热交换冷却空气,并通过使用LNG产生的功率来冷却。这种功率由直接和间接方法产生:LNG直接扩展和具有混合工作流体的有机朗肯循环。这是一种新的工作,其中直接和间接发电方法与LNG再置化过程都与能量存储系统相结合。根据各种储能系统之间的性能比较结合LNG再扫描过程,该提出的系统是文献中最有效的。此外,使用净目前的价值进行经济评估,以研究所提出的系统的可行性。

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