Jun Shen’s research while affiliated with Technical Institute of Physics and Chemistry, Chinese Academy of Sciences and other places

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Publications (1)


An improved absorption refrigeration system for recovering two waste heat with different temperatures: Parametric analysis and comparative study
  • Article

November 2021

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29 Reads

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14 Citations

International Journal of Refrigeration

Yin Bai

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Zijian Liu

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Jun Shen

Heat capacity and temperature matching between the heat sources and energy system is of vital importance to improve energy efficiency, especially in occasions with multiple temperature-distributed heat sources. In this paper, an improved ammonia-water absorption refrigeration system with additional intermediate-pressure generator and absorber is proposed, aiming at recovering two kinds of heat sources with different grades. To match the heat capacity of two sources, solution distribution to the high- and intermediate-pressure generator can be adjusted. Moreover, heating areas of the two generators are extended from the reboilers to the stripping sections, in order to improve the heat utilization ratio. Simulation study shows that as the solution split ratio to the intermediate-pressure generator increases, the capacity for recovering low-grade heat sources is improved. The coefficient of performance of the proposed system is 5% higher than that of the modified vapor exchange system within a large range of the intermediate pressure. Under the baseline working condition with evaporation temperature of -15°C and condensation temperature of 31°C, a significant increment in exergy efficiency is achieved by the proposed system, which is 32.6% and 56.5% higher than that of the conventional single-effect and conventional vapor exchange system, respectively.

Citations (1)


... Integration of an absorption chiller with a combustion engine with the objective of utilizing waste energy from the internal combustion engines to drive the absorption system is reported on (Chun et al., 2023;Dadpour et al., 2022), while many other researchers considered the implementation of solar energy to run absorption chiller systems (Mendiburu et al., 2023;Nedaei et al., 2022). Also, numerous investigations focused on absorption chillers which are run with waste heat (Villa et al., 2023;Lu et al., 2023;Zhou et al., 2021a;Bai et al., 2022Bai et al., , 2021b. Many studies reported the integration of a power generation system with absorption chillers with the objective of multi-generation, such as cooling energy, electric power, and desalination (Mugdadi and Al-Nimr, 2023;Kerme et al., 2020;Anand et al., 2022;Mokhtari et al., 2023;Yao et al., 2022;Xu et al., 2022;Esmaeilion et al., 2022;Ehyaei et al., 2021). ...

Reference:

Performance analysis of a novel absorption-refrigeration driven membrane condenser system for recovery of water and waste heat from flue gas
An improved absorption refrigeration system for recovering two waste heat with different temperatures: Parametric analysis and comparative study
  • Citing Article
  • November 2021

International Journal of Refrigeration