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STUDY ON A CASCADE UTILIZATION OF LIQUID NATURAL GAS (LNG) COLD ENERGY FOR POWER GENERATION

机译:液晶天然气(LNG)冷能为发电的级联利用研究

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Liquefied natural gas (LNG) is known as a clean energy source which is widely used in electricity generation and daily living for its friendly environment performance. The global LNG trade has increased rapidly during recent years. Liquid natural gas delivered by sea-ships contains considerable cryogenic exergy which can be utilized for electricity production before its evaporation and introduction into the system of pipelines. Because the need to vaporize LNG offers a thermal sink at a very much lower temperature than seawater, using this thermal sink both power and gas can be produced. So it is possible to recover power from the vaporization of LNG. Based on the exergy analysis of normal Rankine power cycle and LNG gasification characteristics at a different pressure, this paper proposed a cascading power cycle with LNG cold energy recovery, in which a three-tier Rankine cycle system was established to recovery the liquid heat and latent heat of LNG, and the residual sensible heat of LNG vapor can be used to prepare the cold water of central air-conditioning in plant area. The simulating results showed that the cascade power system can improve the LNG cold energy recovery efficiency.
机译:液化天然气(LNG)被称为清洁能源,广泛用于电力发电和日常生活,以实现其友好的环境性能。近年来,全球液化天然气贸易贸易迅速增加。海船输送的液体天然气含有相当大的低温驱动,可用于在蒸发和引入管道系统之前用于电力生产。由于蒸发LNG的需要在比海水的温度较低的温度下提供热水池,因此使用该热沉水可以产生电源和气体。因此,可以从LNG的蒸发恢复电力。基于对不同压力的正常朗肯电源循环和LNG气化特性的电力分析,提出了一种级联电力循环,利用LNG冷能量回收,其中建立了三层兰峰循环系统来恢复液体热量和潜伏LNG的热量,LNG蒸汽的残余显热可用于制备植物区域中央空调的冷水。模拟结果表明,级联电力系统可以提高液化天然气冷能回收效率。

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