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Energy and exergy investigation of two modified single mixed refrigerant processes for natural gas liquefaction

机译:两种改性单一混合制冷剂工艺的能量和暴露性研究天然气液化

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摘要

Liquefaction processes consume a high amount of energy, and any attempt to achieve lower energy consumption and higher exergy efficiency would lead to a remarkable enhancement in the process efficiency. In the present study, two mini-scale modified single mixed refrigerant processes for natural gas liquefaction are simulated. The specific power consumption and total exergy destruction rate are optimized using the genetic algorithm tool. As a result of the energy optimization of the base case process, the specific energy consumption and the total exergy destruction rate are reduced by 19.4% and 25.4%, respectively. On the other hand, the maximum total exergy efficiency of 47.51 % is obtained through the exergy optimization of the process. The results related to the process configuration with a pump shows a higher exergy efficiency. Moreover, the minimum specific power consumption of 0.221 kWh/kg LNG is obtained through the optimization of the exergy destruction rate function.
机译:液化过程消耗了大量的能量,并且任何实现较低能耗和更高的高度效率的尝试都会导致过程效率显着提高。在本研究中,模拟了用于天然气液化的两个迷你改性的单一混合制冷剂方法。使用遗传算法工具优化特定功耗和总漏洞破坏率。由于基础壳体过程的能量优化,具体的能量消耗和总漏洞破坏率分别减少了19.4%和25.4%。另一方面,通过流程优化来获得47.51%的最大漏极效率。与泵的过程配置相关的结果显示出更高的效率。此外,通过优化Deergy破坏率函数来获得0.221 kWh / kg LNG的最小特定功耗。

著录项

  • 来源
    《Computers & Chemical Engineering》 |2020年第2期|106854.1-106854.13|共13页
  • 作者单位

    School of Chemical Engineering College of Engineering University of Tehran Tehran Iran;

    Institute of Petroleum Engineering School of Chemical Engineering College of Engineering University of Tehran Tehran Iran;

    School of Chemical Engineering College of Engineering University of Tehran Tehran Iran;

    School of Chemical Engineering College of Engineering University of Tehran Tehran Iran;

    Institute of Liquefied Natural Gas (I-LNC) School of Chemical Engineering College of Engineering University of Tehran Tehran Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single mixed refrigerant process; Exergy; Energy; Optimization; Liquefied natural gas;

    机译:单一混合制冷剂工艺;obergy;活力;优化;液化天然气;

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