Abstract
There has been two-stage mixed refrigerant (MR) Joule–Thomson (JT) refrigeration cycle suggested for cooling high temperature superconductor (HTS) electric power cable below 70K. As the continuation effort of realizing the actual system, we fabricated and tested a small scale neon and nitrogen MR JT cryocooler to investigate the refrigeration characteristics and performance. The compression system of the refrigeration circuit was accomplished by modifying commercially available air-conditioning rotary compressors. Compressors stably operated at the maximum compression ratio of 31 when the suction pressure was 77kPa. The achieved lowest temperature was 63.6K when the heating load was 35.9W. The measured Carnot efficiency of the present system was 6.5% which was lower than that of the designed goal of 17.4%. The low efficiency of compressor (34.5%), and the pressure drop at the compressor suction were the main reasons for this efficiency degradation. The feasibility and usefulness of neon and nitrogen MR JT refrigeration cycle was validated that the achieved minimum temperature was 63.6K even though the pressure after the expansion was maintained by 130kPa. The comparison between the measurement and calculation showed that each stream temperature of refrigeration cycle were predictable within 3% error by Peng–Robinson equation of state (EOS).
Published Version
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