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Main parameters optimization of regenerative organic Rankine cycle driven by low-temperature flue gas waste heat

Author

Listed:
  • Ge, Zhong
  • Wang, Hua
  • Wang, Hui-Tao
  • Wang, Jian-Jun
  • Li, Ming
  • Wu, Fu-Zhong
  • Zhang, Song-Yuan

Abstract

Thermodynamic analyses of regenerative ORC (organic Rankine cycle) driven by low-temperature flue gas waste heat are performed. The heat transfer and flow analyses of a regenerator are also analyzed. A simplified optimal design method to optimize main thermodynamic parameters is proposed for the regenerative ORC driven by flue gas waste heat under different temperature conditions. Results reveal the existence of two characteristic temperatures, namely, Tw1(1) and Tw1(2). If the flue gas inlet temperature Tw1 is lower than Tw1(1), then the regenerator should not be equipped, the optimal pinch point temperature difference is the lowest limit value, and the optimal evaporation temperature increases with the increasing flue gas inlet temperature. If Tw1(1) ≤ Tw1 ≤ Tw1(2), then the regenerator should be equipped, the optimal regenerator effectiveness increases with the increasing flue gas inlet temperature, the optimal pinch point temperature difference is the lowest limit value, and the optimal evaporation temperature is the highest limit value. If Tw1 ≥ Tw1(2), then the regenerator should be equipped, the optimal regenerator effectiveness is the highest limit value, the optimal pinch point temperature difference increases with the increasing flue gas inlet temperature, and the optimal evaporation temperature is the highest limit value.

Suggested Citation

  • Ge, Zhong & Wang, Hua & Wang, Hui-Tao & Wang, Jian-Jun & Li, Ming & Wu, Fu-Zhong & Zhang, Song-Yuan, 2015. "Main parameters optimization of regenerative organic Rankine cycle driven by low-temperature flue gas waste heat," Energy, Elsevier, vol. 93(P2), pages 1886-1895.
  • Handle: RePEc:eee:energy:v:93:y:2015:i:p2:p:1886-1895
    DOI: 10.1016/j.energy.2015.10.051
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    7. Li, Jian & Ge, Zhong & Duan, Yuanyuan & Yang, Zhen & Liu, Qiang, 2018. "Parametric optimization and thermodynamic performance comparison of single-pressure and dual-pressure evaporation organic Rankine cycles," Applied Energy, Elsevier, vol. 217(C), pages 409-421.
    8. Sun, Xiaojing & Zhuang, Yu & Liu, Linlin & Dong, Yachao & Zhang, Lei & Du, Jian, 2022. "Multi-objective optimization of heat exchange network and thermodynamic cycles integrated system for cooling and power cogeneration," Applied Energy, Elsevier, vol. 321(C).
    9. Zhao, Yulong & Wang, Shixue & Ge, Minghui & Li, Yanzhe & Liang, Zhaojun & Yang, Yurong, 2018. "Performance analysis of a thermoelectric generator applied to wet flue gas waste heat recovery," Applied Energy, Elsevier, vol. 228(C), pages 2080-2089.
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