2012
DOI: 10.1016/j.phpro.2012.03.494
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Advanced superconducting power conditioning system with SMES for effective use of renewable energy

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Cited by 4 publications
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“…Liquid hydrogen plays the role of the cryogen of the HTS magnet as well as that of the fuel cell. The HTS conductors, especially REBCO and BSCCO, have a critical current and critical magnetic field which are several times higher at the temperature of liquid hydrogen, 20 K than 77 K. Most conduction-cooled HTSMES also have an operating temperature of around 20 K. The HTS magnet can be immersed in liquid hydrogen, but conduction cooling is preferred over immersion cooling because of the risk of explosion [40][41][42]. Indirect cooling by conduction through heat exchangers with liquid hydrogen may not have enough cooling power for deep cycling of the charging and discharging of the energy of SMES.…”
Section: Advances In Science and Technology To Meet Challengesmentioning
confidence: 99%
“…Liquid hydrogen plays the role of the cryogen of the HTS magnet as well as that of the fuel cell. The HTS conductors, especially REBCO and BSCCO, have a critical current and critical magnetic field which are several times higher at the temperature of liquid hydrogen, 20 K than 77 K. Most conduction-cooled HTSMES also have an operating temperature of around 20 K. The HTS magnet can be immersed in liquid hydrogen, but conduction cooling is preferred over immersion cooling because of the risk of explosion [40][41][42]. Indirect cooling by conduction through heat exchangers with liquid hydrogen may not have enough cooling power for deep cycling of the charging and discharging of the energy of SMES.…”
Section: Advances In Science and Technology To Meet Challengesmentioning
confidence: 99%