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Thermal analysis and optimization of combined cold and power system with integrated phosphoric acid fuel cell and two-stage compression-absorption refrigerator at low evaporation temperature

机译:磷酸燃料电池和两阶段压缩吸收冰箱中含有磷酸燃料电池组合冷和电力系统的热分析与优化

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摘要

The thermal analysis and optimization of a proposed combined cold and power system with integrated phosphoric acid fuel cell and two-stage compression- absorption refrigerator at low evaporation temperature (CPAR) are conducted. The mathematical model of the CPAR system is established on the basis of the electrochemical model of the phosphoric acid fuel cell (PAFC) and the conservation models of the two-stage compression-absorption refrigerator (TSCR). The validation of the proposed model is conducted through partial verifications of the PAFC and the TSCR subsystems. The energy conservation is verified considering the basic design condition, and the total conductance of each component is calculated and discussed. The effects of PAFC and evaporation temperatures and compression ratio on 13 operating parameters are simulated and analyzed. Four key operating parameters are optimized on the basis of the exergy perspective. The exergy conservation is also calculated and verified considering the basic design condition. The largest exergy destruction for the PAFC subsystem is caused by the electrochemical reaction. Meanwhile, heat transfer and phase change are the main reasons for exergy destructions for the TSCR subsystem.
机译:进行了在低蒸发温度(CPAR)中具有集成磷酸燃料电池和两级压缩吸收冰箱的提出的冷和动力系统的热分析和优化。 CPAR系统的数学模型是基于磷酸燃料电池(PAFC)的电化学模型和两级压缩吸收冰箱(TSCR)的保护模型的基础建立。通过PAFC和TSCR子系统的部分验证进行所提出的模型的验证。考虑到基本设计条件,验证节能,计算并讨论了每个组分的总电导。模拟和分析了PAFC和蒸发温度和压缩比对13个操作参数的影响。在Deerveny的角度的基础上优化了四个关键操作参数。考虑到基本设计条件,还计算并验证了漏洞保护。 PAFC子系统最大的漏洞破坏是由电化学反应引起的。同时,传热和相位变化是TSCR子系统销毁破坏的主要原因。

著录项

  • 来源
    《Energy》 |2021年第1期|119164.1-119164.17|共17页
  • 作者单位

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China;

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China;

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China Songling Road 99 Qingdao China;

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China;

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China;

    College of Electromechanical Engineering Qingdao University of Science & Technology Qingdao 266061 China;

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

    Phosphoric acid fuel cell; Two-stage compression-absorption; refrigerator; Energy and exergy analyses; Parameter optimization; bmimZn_2Cl_5/NH_3;

    机译:磷酸燃料电池;两阶段压缩吸收;冰箱;能量和漏洞分析;参数优化;[bmim [zn_2cl_5 / nh_3;
  • 入库时间 2022-08-18 23:01:15

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