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Techno-economic evaluation of a solar assisted combined heat pump -Organic Rankine Cycle system

机译:太阳能辅助联合热泵的技术经济评估-有机朗肯循环系统

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摘要

The economic feasibility of the addition of an ORC to a combined solar system coupled to a ground-source heat pump is discussed. The ORC prevents the stagnation of the solar loop and reverses the heat pump cycle. The working fluid is evaporated in the condenser of the heat pump, expanded in the scroll compressor, which becomes a scroll expander, and condensed in the brine heat exchanger. The only additional investments for the ORC system comprise a pump, valves and upgraded controls and are estimated to be 400 € for a single-family-house unit. Flat-plate collectors are the preferred collector type as the higher collector efficiency of evacuated tube collectors does not outweigh the higher costs. The thermal recharging of the ground during ORC has a negligible impact on the COP of the heat pump. However, the recharging leads to less deep boreholes compared to a conventional system. Because of the low investments for the ORC, even small reductions in borehole depth make a significant contribution to the economic feasibility of the system. The addition of the ORC overall generates a small profit of 155 € at Ankara and 74 € at Denver for a rocky soil and a thermally enhanced grout. On the contrary, the conventional solar combisystem coupled to a ground source heat pump was found to be economically unreasonable at all locations. The working fluid isobutane is interesting for future applications because of the lower global warming potential and the smaller saturation pressures compared to R134a. The latter allow for the installation of a mass-produced rotary vane pump reducing the additional investments for the ORC to 200 €. This way the ORC becomes reasonable at all locations with profits of 505 € at Ankara, 375 € at Denver and 189 € at Bochum.
机译:讨论了将ORC添加到与地源热泵耦合的组合太阳能系统的经济可行性。 ORC可以防止太阳能回路停滞并逆转热泵循环。工作流体在热泵的冷凝器中蒸发,在涡旋压缩机中膨胀,该涡旋压缩机成为涡旋膨胀器,并在盐水热交换器中冷凝。 ORC系统唯一的额外投资包括泵,阀门和升级的控制装置,单户住宅单元的投资估计为400欧元。平板式集热器是首选的集热器类型,因为真空管式集热器的更高集热效率不会超过更高的成本。在ORC期间对地面的热补给对热泵的COP的影响可忽略不计。然而,与常规系统相比,补给导致更少的深孔。由于ORC的投资少,因此即使井眼深度的小幅减少也对该系统的经济可行性做出了重大贡献。由于岩石土壤和热固性水泥浆的加入,ORC的总利润在安卡拉为155欧元,在丹佛为74欧元。相反,发现与地面源热泵耦合的常规太阳能组合系统在所有位置在经济上都是不合理的。与R134a相比,由于较低的全球变暖潜能值和较小的饱和压力,因此工作流体异丁烷在未来的应用中非常有趣。后者允许安装大量生产的旋片泵,从而将ORC的额外投资减少到200欧元。这样,ORC在所有地点都变得合理,在安卡拉的利润为505欧元,在丹佛为375欧元,在波鸿为189欧元。

著录项

  • 来源
    《Energy Conversion & Management》 |2015年第4期|430-437|共8页
  • 作者

    Stefan Schimpf; Roland Span;

  • 作者单位

    Thermodynamics, Ruhr-Universitaet Bochum, 44801 Bochum, Germany,International Geothermal Centre, Lennershofstr, 140, 44801 Bochum, Germany;

    Thermodynamics, Ruhr-Universitaet Bochum, 44801 Bochum, Germany;

  • 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

    Solar combisystem; Heat pump; Organic Rankine Cycle;

    机译:太阳能组合系统;热泵;有机朗肯循环;

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