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Design and Optimization of an Improved Small-Scale Liquefaction Process for the Natural Gas Pressure-Reducing Station in Pipelines

机译:管道天然气减压站改进小型液化工艺的设计与优化

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A small-scale liquefaction process without any extra energy consumption was proposed to liquefy a part of natural gas in the pressure-reducing station. A heat exchanger network was integrated with two turboexpander-driven compressors to achieve higher performance of the natural gas liquefaction process in a pressure-reducing station. On the basis of the process simulation, the effects of the feed gas pressure (p(1)) and the final and intermediate expansion pressures (p(10) and p(7)) on system performance have been investigated to determine the optimal design conditions for the proposed system. The results showed that the liquefaction rate (LR) and the exergy utilization rate (EUR) can reach their maximal values of 17.8 and 28.2%, respectively, at the optimal condition, where p(1) = 6,241 kPa, p(7) = 5,000 kPa, and p(10) = 1,600 kPa. The optimized LR and EUR have been increased by 41.2 and 43.8% compared with the corresponding values from the literature. (C) 2017 American Society of Civil Engineers.
机译:为了降低减压站中的一部分天然气,提出了一种不消耗额外能量的小规模液化方法。热交换器网络与两个涡轮膨胀机驱动的压缩机集成在一起,以实现减压站中天然气液化过程的更高性能。在过程仿真的基础上,研究了进料气压力(p(1))和最终和中间膨胀压力(p(10)和p(7))对系统性能的影响,以确定最佳设计拟议系统的条件。结果表明,在最佳条件下,p(1)= 6,241 kPa,p(7)=时,液化率(LR)和火用利用率(EUR)可以分别达到其最大值17.8和28.2%。 5,000 kPa,而p(10)= 1,600 kPa。与文献中的相应值相比,优化的LR和EUR增加了41.2和43.8%。 (C)2017年美国土木工程师学会。

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