Dynamic simulation of 10 kW brayton cryocooler for HTS cable

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Abstract

Dynamic simulation of a Brayton cryocooler is presented as a partial effort of a Korean governmental project to develop 1∼3 km HTS cable systems at transmission level in Jeju Island. Thermodynamic design of a 10 kW Brayton cryocooler was completed, and a prototype construction is underway with a basis of steady-state operation. This study is the next step to investigate the transient behavior of cryocooler for two purposes. The first is to simulate and design the cool-down process after scheduled or unscheduled stoppage. The second is to predict the transient behavior following the variation of external conditions such as cryogenic load or outdoor temperature. The detailed specifications of key components, including plate-fin heat exchangers and cryogenic turbo-expanders are incorporated into a commercial software (Aspen HYSYS) to estimate the temporal change of temperature and flow rate over the cryocooler. An initial cool-down scenario and some examples on daily variation of cryocooler are presented and discussed, aiming at stable control schemes of a long cable system.

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APA

Chang, H. M., Park, C. W., Yang, H. S., & Hwang, S. D. (2014). Dynamic simulation of 10 kW brayton cryocooler for HTS cable. In AIP Conference Proceedings (Vol. 1573, pp. 1770–1775). American Institute of Physics Inc. https://doi.org/10.1063/1.4860922

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