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Loss analysis of oil-free twin-screw expanders for recovering energy in fuel cell systems by means of p-θ diagrams

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  • Wang, Chuang
  • Xing, Ziwen
  • Sun, Shizhong
  • He, Zhilong

Abstract

Twin-screw expanders extend their application and become more and more favored in fuel cells. For twin-screw expanders in fuel cells, pressure loss is a key factor to affect their performance, and thus is investigated by means of the indicator diagram in this paper. Hence, a series of pressure transducers were arranged in consecutive positions of the casing to measure the pressure variation inside working chamber of three expanders with different suction port area and rotor length. By analyzing the measured p-θ diagrams, the features of working process are identified. Moreover, the relevant influence mechanisms of rotating speed and suction back pressure on losses including suction loss and mechanical loss are discussed. Results show that the suction throttling pressure loss and leakage shows a significant influence on the expander performance. The suction port area is suggested to be larger than the maximum value of filling area, and it had better to set both radial and axial filling port in order to decrease the pre-expansion pressure loss. Finally, a method to judge the operating state of expanders according to the measured p-θ diagrams is proposed. Results indicate that the rotor length of 60 mm may be just suitable for the developed expanders.

Suggested Citation

  • Wang, Chuang & Xing, Ziwen & Sun, Shizhong & He, Zhilong, 2020. "Loss analysis of oil-free twin-screw expanders for recovering energy in fuel cell systems by means of p-θ diagrams," Energy, Elsevier, vol. 201(C).
  • Handle: RePEc:eee:energy:v:201:y:2020:i:c:s0360544220306885
    DOI: 10.1016/j.energy.2020.117581
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    References listed on IDEAS

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    1. Wu, Yuting & Guo, Zhiyu & Lei, Biao & Shen, Lili & Zhi, Ruiping, 2019. "Internal volume ratio optimization and performance analysis for single-screw expander in small-scale middle temperature ORC system," Energy, Elsevier, vol. 186(C).
    2. Tian, Yafen & Xing, Ziwen & He, Zhilong & Wu, Huagen, 2017. "Modeling and performance analysis of twin-screw steam expander under fluctuating operating conditions in steam pipeline pressure energy recovery applications," Energy, Elsevier, vol. 141(C), pages 692-701.
    3. Li, Jing & Li, Pengcheng & Gao, Guangtao & Pei, Gang & Su, Yuehong & Ji, Jie, 2017. "Thermodynamic and economic investigation of a screw expander-based direct steam generation solar cascade Rankine cycle system using water as thermal storage fluid," Applied Energy, Elsevier, vol. 195(C), pages 137-151.
    4. Tang, Hao & Wu, Huagen & Wang, Xiaolin & Xing, Ziwen, 2015. "Performance study of a twin-screw expander used in a geothermal organic Rankine cycle power generator," Energy, Elsevier, vol. 90(P1), pages 631-642.
    5. Yao, Sheng & Zhang, Yufeng & Deng, Na & Yu, Xiaohui & Dong, Shengming, 2019. "Performance research on a power generation system using twin-screw expanders for energy recovery at natural gas pressure reduction stations under off-design conditions," Applied Energy, Elsevier, vol. 236(C), pages 1218-1230.
    6. Li, Jing & Li, Pengcheng & Pei, Gang & Alvi, Jahan Zeb & Ji, Jie, 2016. "Analysis of a novel solar electricity generation system using cascade Rankine cycle and steam screw expander," Applied Energy, Elsevier, vol. 165(C), pages 627-638.
    7. Tao Wang & Zhilong He & Jun Guo & Xueyuan Peng, 2017. "Investigation of the Thermodynamic Process of the Refrigerator Compressor Based on the m- θ Diagram," Energies, MDPI, vol. 10(10), pages 1-14, October.
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