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Proposal and performance analysis of a novel solar-assisted resorption-subcooled compression hybrid heat pump system for space heating in cold climate condition

机译:新型冷天条件下空间供热的太阳能辅助吸收-过冷压缩混合热泵系统的建议和性能分析

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摘要

Absorption-resorption heat pumps (ARHPs) can efficiently utilize low-temperature solar heat for winter space heating, but are restricted by the relatively weak low ambient temperature adaptability. By combining the different strengthens of vapor compression heat pump (VCHP) and absorption-resorption heat pump (ARHP), a novel solar-assisted resorption-subcooled compression hybrid heat pump system with higher heating capacity under cold climate condition for space heating is proposed. Thermodynamic models for the hybrid system involving two subsystems are developed for performance evaluation under different operation conditions. Feasible high pressure/low pressure (P-H/P-L) and evaporation temperature/condensation temperature (T-e/T-a) ranges for the hybrid system are revealed for component design. Based on that, performance evaluation indices like total coefficient of performance (COPtot), primary energy ratio (PER), primary energy saving ratio (PESR), coefficient from solar irradiation to heating capacity (SCOP) are investigated in terms of different P-H/P-L and T-e/T-a values. The results showed that for the base-case, the above indices are 2.41, 1.66, 0.35 and 1.21, respectively. In addition, heat source temperature demand, heating capacity and ambient air temperature need of the hybrid system are compared with those of the conventional absorption heat pump (AHP), single ARHP and single VCHP under the same operation conditions. The results show that the hybrid system can extend the operation heat source temperature to above 72 degrees C, highlighting the possibility of integrating with common non-tracking solar collectors, and can extend the feasible ambient air temperature to above -20 degrees C. Moreover, by recovering the sub-cooling heat of VCHP subsystem for ARHP subsystem operation, the hybrid system can lift the heating capacity by over 50% based on the equivalent VCHP system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:吸收-吸收式热泵(ARHP)可以有效地利用低温太阳热来进行冬季采暖,但受到相对较弱的低环境温度适应性的限制。通过结合蒸气压缩热泵(VCHP)和吸收-吸收-吸收热泵(ARHP)的不同优势,提出了一种新型的太阳能辅助吸收-过冷压缩混合热泵系统,该系统在寒冷气候条件下具有较高的热容量,可以进行空间加热。针对包含两个子系统的混合系统,开发了热力学模型,用于在不同操作条件下进行性能评估。揭示了混合动力系统可行的高压/低压(P-H / P-L)和蒸发温度/冷凝温度(T-e / T-a)范围,以进行组件设计。在此基础上,针对不同的PH / PL,研究了性能综合评价指标,如总性能系数(COPtot),一次能源比(PER),一次能源节约比(PESR),从太阳辐射到热容量的系数(SCOP)。和Te / Ta值。结果表明,在基本情况下,上述指数分别为2.41、1.66、0.35和1.21。此外,在相同的运行条件下,将混合动力系统的热源温度需求,制热能力和环境空气温度需求与常规吸收式热泵(AHP),单个ARHP和单个VCHP进行了比较。结果表明,该混合系统可以将运行热源温度扩展到72摄氏度以上,从而突出了与常见的非跟踪式太阳能集热器集成的可能性,并且可以将可行的环境温度扩展到-20摄氏度以上。通过回收VCHP子系统的过冷热量以用于ARHP子系统运行,基于等效VCHP系统,混合动力系统可将供暖能力提高50%以上。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第5期|1136-1150|共15页
  • 作者

  • 作者单位

    Shanghai Jiao Tong Univ Inst Refrigerat & Cryogen Shanghai 200240 Peoples R China|MOE Engn Res Ctr Solar Power & Refrigerat Shanghai Peoples R China;

  • 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-assisted; Resorption-subcooled; Hybrid heat pump; Space heating; Cold climate condition;

    机译:太阳能辅助;吸收过冷混合热泵;空间供暖;气候寒冷;
  • 入库时间 2022-08-18 05:21:42

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