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Introducing a novel integrated cogeneration system of power and cooling using stored liquefied natural gas as a cryogenic energy storage system

机译:使用储存液化天然气作为低温储能系统介绍一种新型电力和冷却的电力和冷却

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摘要

Nowadays, it is inevitable to use energy storage systems for peak shaving and load leveling purposes. In the present study, a new integrated structure of power generation and refrigeration is developed for the use and recovery of the stored liquid natural gas energy as a cryogenic energy storage system. Kalina power cycle, molten carbonate fuel cell, carbon dioxide power cycle, and absorption-compression refrigeration system using solar energy are employed to achieve this goal. This new integrated structure generates 161,287 kW power, 1964 kW refrigeration at 266 K through LNG recovery with 4.066 kg/s mass flow rate and 8464 kW refrigeration at 218.5 K. Electrical, thermal and exergy efficiencies of the whole system are 57.92%, 61.66%, and 68.21%, respectively. In the present study, considering the efficiency of the LNG production and storage sector at the off-peak time as well as its cryogenic energy recovery sector at the on-peak time, round-trip efficiency of the proposed cryogenic storage system is calculated as 66.29%. Via the parametric study on major system parameters such as Tu101 and Tu102 turbines inlet pressures, Tu201 turbine outlet temperature, etc., the performance of the system in various conditions is evaluated. Important results of the parametric study include an increase in the system total thermal efficiency up to 70.03% by reducing the outlet temperature of the Tu201 turbine to 880 K.
机译:如今,使用峰值剃须和负载调平目的来利用能量存储系统是不可避免的。在本研究中,开发了一种新的发电和制冷结构,用于使用和恢复储存的液体天然气能作为低温储能系统。使用太阳能的Kalina电源循环,熔融碳酸盐燃料电池,二氧化碳动力循环和吸收压缩制冷系统来实现这一目标。这种新的集成结构在266 k的情况下,通过LNG回收,1964千瓦的电力,1964 kW制冷,通过4.066千克/升质量流量和8464千瓦的制冷,整个系统的电气,热和漏洞效率为57.92%,61.66%分别为68.21%。在本研究中,考虑到液化天然气生产和储存扇区的效率,在峰值时间下,所提出的低温储存系统的往返效率的循环能量回收扇区计算为66.29 %。通过参数研究,如Tu101和Tu102涡轮机入口压力,Tu201涡轮机出口温度等,评估系统在各种条件下的性能。参数研究的重要结果包括通过将TU201涡轮机的出口温度降低到880k,增加了系统总热效率的总热效率高达70.03%。

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