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차재은(JaeEun CHA),이제경(JeKyoung LEE),정흥준(HeungJune JUNG) 대한기계학회 2015 대한기계학회 춘추학술대회 Vol.2015 No.11
The supercritical CO₂ Brayton cycle power generation system has been developed as a promising alternative to the present steam Rankine cycle. The principal advantage of the S-CO₂ gas is a good efficiency at a modest temperature range, a compact size of its components, and a compatibility with various heat sources. KAER has developed a Supercritical CO₂ Brayton Cycle Integral Experiment Loop(SCIEL) with 1MWt heat input to develop the basic technologies for the Supercritical CO₂ turbomachinery and compact heat exchanger design and operation technology since 2012 Sping. KAERI finished the installation of 2nd stage of SCIEL loop, the low compression ratio loop, recently. KAERI succeeded in generating the turbine electric power in the SCIEL Loop.