Simulation and Optimization of LNG Production Unit for Energy Conservations

Ali Tarjoman Nejad, A. Farzi
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引用次数: 2

Abstract

The prospect of LNG could become a major global energy source is one of the most debated issues. The Liquefied Natural Gas (LNG) supply chain and the properties that make this fuel environmental friendly is in high demand for energy supply. In this paper, at first, the process of converting the natural gas to LNG was simulated; then, the process is optimized to archive minimum energy consumption per ton of LNG produced. Using a three stage exchanger is the best way for minimization of energy consumption in LNG production unit. Outlet pressure from the compressor and also type of refrigerant in cooling system is very effective on rate of energy conservations. The best mass fraction for refrigerants in liquefaction cycle are 0.88 for methane and 0.12 for ethane. For subcooling cycle that fraction is defined as 0.6 for methane and 0.4 for nitrogen. The optimized pressure in outlet of compressors in liquefaction cycle is 650 kPa; also, for the subcooling cycle is 1800 kPa. The amount of consumed energy was 14.91 kW per ton of produced LNG.
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LNG生产装置节能模拟与优化
液化天然气可能成为全球主要能源的前景是最具争议的问题之一。液化天然气(LNG)供应链和使这种燃料环保的特性对能源供应有很高的需求。本文首先对天然气转化为LNG的过程进行了模拟;然后,对该过程进行优化,以实现生产每吨液化天然气的最低能耗。采用三级换热器是实现LNG生产装置能耗最小化的最佳途径。压缩机的出口压力和冷却系统中制冷剂的类型对节能率非常有效。液化循环中制冷剂的最佳质量分数为:甲烷为0.88,乙烷为0.12。对于过冷循环,该分数定义为甲烷为0.6,氮为0.4。液化循环中压缩机出口压力优化为650 kPa;过冷循环为1800kpa。每生产一吨液化天然气消耗的能源为14.91千瓦。
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