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Liquid air energy storage flexibly coupled with LNG regasification for improving air liquefaction

机译:液体空气储存灵活地与LNG重新置化,以改善空气液化

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摘要

Liquid Air Energy Storage (LAES) stands out among other large-scale energy storage technologies in terms of high energy density, no geographical constraints, low maintenance costs, etc. However, the LAES has a relatively lower round trip efficiency, 50-60%, which is a big disadvantage. One of the main reasons is the lower liquid air yield, similar to 70%, which is far from 100% due to the lack of cold energy during air liquefaction. Thus, in this paper, cold energy released during liquified natural gas (LNG) regasification is recovered and stored with pressurized propane, which is used to help air liquefaction in the LAES (denoted as LAES-LNG-CS). The LNG regasification process works independently of the LAES thanks to cold storage. Effects of various working conditions on the LAES-LNG-CS system are studied and three operation periods (off-peak, peak and full hours) of the LNG re gasification process are considered. Comparisons are made between the LAES-LNG-CS and standalone LAES systems. The results show that the LAES-LNG-CS system could achieve a liquid air yield up to similar to 89% and the power consumption per unit mass of liquid air is reduced by similar to 32%, compared with the standalone LAES system. What's more, the system exergy efficiency of the standalone LAES is improved by similar to 28% as the air charging pressure is at 8 MPa under studied conditions. Year-round performance study indicates that the round trip efficiency of the LAES-LNG-CS is in the range of 78-89%. Therefore, the proposed LAES-LNG-CS offers a good option for the future development of the LAES system.
机译:液体空气储能(Laes)在高能量密度方面脱颖而出,没有地理约束,低维护成本等。然而,Laes具有相对较低的往返效率,50-60% ,这是一个很大的缺点。主要原因之一是较低的液体空气产量,类似于70%,由于在空气液化期间缺乏冷能量,这远未100%。因此,在本文中,回收液化天然气(LNG)再溶液期间释放的冷能量并储存加压丙烷,其用于帮助在Laes中的空气液化(表示为Laes-LNG-CS)。由于冷藏,LNG再扫描过程独立于Laes工作。研究了各种工作条件对Laes-LNG-CS系统的影响,并考虑了LNG RE气化过程的三个操作周期(截止峰,峰和全小时)。在Laes-LNG-CS和独立的Laes系统之间进行比较。结果表明,与独立的Laes系统相比,Laes-LNG-CS系统可以实现高达89%的液体空气,其单位质量的液体空气的功耗降低了32%。更重要的是,由于空气充电压力为8MPa,所以在学习条件下的8MPa时,立式刀口的系统高效率得到改善。全年的绩效研究表明,Laes-LNG-CS的往返效率在78-89%的范围内。因此,拟议的Laes-LNG-CS为Laes系统的未来发展提供了良好的选择。

著录项

  • 来源
    《Applied Energy》 |2019年第1期|1190-1201|共12页
  • 作者单位

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England|Global Energy Interconnect Res Inst State Key Lab Adv Power Transmiss Technol Beijing Peoples R China;

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England;

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England;

    Peking Univ Shenzhen Inst Shenzhen Peoples R China;

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England;

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England;

    Univ Birmingham Sch Chem Engn Birmingham Ctr Energy Storage Birmingham W Midlands England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy storage; Liquid air; Liquefied natural gas; Renewable energy;

    机译:储能;液体空气;液化天然气;可再生能源;

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