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首页> 外文期刊>Journal of Thermodynamics >Performance Evaluation of Refrigeration Units in Natural Gas Liquid Extraction Plant
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Performance Evaluation of Refrigeration Units in Natural Gas Liquid Extraction Plant

机译:天然气液体萃取厂制冷装置的性能评估

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摘要

This paper has applied thermodynamics principles to evaluate the reliability of 390 m3/hr natural gas processing plant. The thermodynamics equations were utilized in the evaluation, characterization, and numerical simulation of key process parameters in natural gas liquid extraction plant. The results obtained show the comparison of the coefficient of performance, compression ratio, isentropic work, actual work, electrical power requirements, cooling water consumption in intercoolers, compressor power output, compressor capacity, and isentropic, volumetric, and mechanical efficiency of the two-stage refrigeration unit with a flash gas economizer and these were compared with the designed specifications. The second law of thermodynamics was applied in analyzing the refrigeration unit and the result shows that exergetic losses or lost work due to irreversibility falls within operating limit that is less than 1.0%. Similarly, the performance of expansion turbine (expander) parameters was monitored and the results indicate a considerable decrease in turbine efficiencies as the inlet gas pressure increases resulting in an increased power output of the turbine leading to a higher liquefaction rate.
机译:本文应用热力学原理评估了390 m3 / hr天然气加工厂的可靠性。利用热力学方程对天然气液体萃取厂关键工艺参数进行评估,表征和数值模拟。所获得的结果显示了两种制冷剂的性能系数,压缩比,等熵功,实际功,电力需求,中冷器冷却水消耗量,压缩机功率输出,压缩机容量以及等熵,体积和机械效率的比较。带有闪蒸省煤器的一级制冷机组,并将其与设计规格进行了比较。根据热力学第二定律对制冷机组进行分析,结果表明,由于不可逆性而导致的大量损耗或功的损失都在小于1.0%的运行极限之内。类似地,监测膨胀涡轮机(膨胀机)参数的性能,结果表明,随着进气压力的增加,涡轮机效率大大降低,导致涡轮机的功率输出增加,从而导致更高的液化率。

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