Experimental and Theoretical Study of Surge Behavior in a Boil-Off Gas Centrifugal Compressor on an LNG Carrier
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Lee, Jinkwang
[1
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Cheon, Yujin
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Kyungpook Natl Univ, Dept Chem Sci & Engn, 80 Daehak Ro, Daegu 41566, South KoreaDong A Univ, Dept Naval Architecture & Offshore Engn, 37 Nakdong Daero 550 Beon Gil, Busan 49315, South Korea
Cheon, Yujin
[2
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Choi, Younseok
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Republ Korea Air Force Acad, Dept Aerosp Engn, 635 Danjae Ro, Cheongju 28187, South KoreaDong A Univ, Dept Naval Architecture & Offshore Engn, 37 Nakdong Daero 550 Beon Gil, Busan 49315, South Korea
Choi, Younseok
[3
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[1] Dong A Univ, Dept Naval Architecture & Offshore Engn, 37 Nakdong Daero 550 Beon Gil, Busan 49315, South Korea
[2] Kyungpook Natl Univ, Dept Chem Sci & Engn, 80 Daehak Ro, Daegu 41566, South Korea
[3] Republ Korea Air Force Acad, Dept Aerosp Engn, 635 Danjae Ro, Cheongju 28187, South Korea
In this study, we conducted experiments and numerical analysis on a 270 kW industrial-scale centrifugal compressor used in the fuel supply system of an LNG carrier in order to improve the lumped-parameter surge model by considering the viscosity in the pipeline and to confirm whether the improved model would be applicable. The steady and unsteady compressor performance curves were constructed using measurements and predictions, respectively. The flow through the pipeline was assumed to be both steady and unsteady, and each governing equation under the assumptions was derived in accordance with the lumped-parameter model. In the steady flow case, the surge behavior of the modified model was in a good agreement with the lumped-parameter model at surge parameter B = 4.8716. In the unsteady flow case, however, the modified model showed a deviation from the lumped-parameter model, and the simulation from the modified model described the surge behavior 5% more accurately than the lumped-parameter model. Through experiments and numerical analysis, this study showed that the present models are useful and applicable for describing the surge behavior of an industrial-scale single-stage centrifugal compressor.
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Bhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, IndiaBhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, India
Mukhopadhyay, D.
Vijayan, P. K.
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Bhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, IndiaBhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, India
Vijayan, P. K.
Ghosh, A. K.
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Bhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, IndiaBhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, India
Ghosh, A. K.
Sahoo, P. K.
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Indian Inst Technol, Roorkee, Uttar Pradesh, IndiaBhabha Atom Res Ctr, Reactor Safety Div, Bombay 400085, Maharashtra, India
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KR, Future Technol Res Team, Busan 46762, South KoreaKR, Future Technol Res Team, Busan 46762, South Korea
Kim, Kyunghwa
Park, Kido
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KR, Future Technol Res Team, Busan 46762, South Korea
Korea Maritime & Ocean Univ, Div Marine Syst Engn, Busan 49112, South KoreaKR, Future Technol Res Team, Busan 46762, South Korea
Park, Kido
Roh, Gilltae
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KR, Future Technol Res Team, Busan 46762, South KoreaKR, Future Technol Res Team, Busan 46762, South Korea
Roh, Gilltae
Chun, Kangwoo
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KR, Future Technol Res Team, Busan 46762, South KoreaKR, Future Technol Res Team, Busan 46762, South Korea
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Korea Natl Oil Corp, 305 Jongga Ro, Ulsan 44538, South Korea
Chungnam Natl Univ, Grad Sch Energy Sci & Technol, 99 Daehak Ro, Daejeon 34134, South KoreaKorea Natl Oil Corp, 305 Jongga Ro, Ulsan 44538, South Korea