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Energy and exergy analyses of a solar-driven ejector-cascade heat pump cycle

机译:太阳能驱动的喷射级联热泵循环的能量和火用分析

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摘要

To improve the performance of an air-source heat pump cycle under low ambient temperature, a solar-driven ejector-cascade heat pump cycle which consists of an ejector sub-cycle and a vapor compression sub-cycle is discussed. Energy and exergy models are developed to conduct analyses on the cascade cycle, in which the ejector sub-cycle takes R134a, R1234yf or R141b as a working fluid and the vapor compression sub-cycle uses R1234yf as a refrigerant. The results indicate that the proposed cycle can significantly improve the thermodynamic performance of the air-source heat pump under low ambient temperature, especially when the ejector sub-cycle employs an R141b ejector. Energy investigation finds that the variation of the thermal coefficient of performance (COPh) exhibits the opposite trend to that of the mechanical coefficient of performance (COPm) as the generation temperature, the intermediate condensation/evaporation temperature or the condensation temperature varies. Exergy analysis indicates that the exergy destructions in the solar collector-generator, the ejector, the compressor and the expansion valve of vapor compression sub-cycle are much larger than those in other components. We hence conclude that decreasing various losses in these components are the key tasks to improve the performance and exergy efficiency of the cascade system.
机译:为了提高环境温度较低时空气源热泵循环的性能,讨论了由喷射器子循环和蒸汽压缩子循环组成的太阳能驱动的喷射器级联热泵循环。开发能量和火用模型以进行级联循环的分析,其中喷射器子循环以R134a,R1234yf或R141b作为工作流体,而蒸汽压缩子循环以R1234yf作为制冷剂。结果表明,所提出的循环可以显着改善环境温度较低的空气源热泵的热力学性能,特别是当喷射器子循环使用R141b喷射器时。能源研究发现,随着产生温度,中间冷凝/蒸发温度或冷凝温度的变化,性能热系数(COPh)的变化与机械性能系数(COPm)的变化趋势相反。火用分析表明,太阳能集热发电机,喷射器,压缩机和蒸汽压缩子循环的膨胀阀的火用破坏比其他组件大得多。因此,我们得出的结论是,减少这些组件中的各种损耗是提高级联系统性能和火用效率的关键任务。

著录项

  • 来源
    《Energy》 |2018年第b期|419-431|共13页
  • 作者单位

    College of Environmental Science and Engineering Taiyuan University of Technology;

    Taiyuan Institute of Architecture Design & Research;

    Department of Civil and Environmental Engineering University of Illinois at Urbana-Champaign;

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

    Ejector; Solar; Air-source heat pump; Energy; Exergy;

    机译:弹出器太阳能;空气源热泵;能源;火用;

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