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Test-loop Design of the Supercritical CO 2 Power Cycle with an Axial Turbine Dong-Ryul Rhim, Sung-Ho Park, Munkyu Yoon, Jung-Uk Shin, Jinil Kim (Institute for Advanced Engineering) The 6th International Supercritical CO 2 Power Cycles March 26-29, 2018 Pittsburgh, PA, USA Graphical Process Flow Diagram Piping and Instrument Diagrams Axial Turbine for Supercritical CO 2 Test - loop 3D Modeling and Pipe Thermal Stress Analysis It was selected as a two-stage turbine through thermal-FEM analysis and aerodynamic analysis by KIMM. Background Due to the Paris Climate Change Agreement (COP21, Dec. 12, 2015), Korea should reduce 37% of greenhouse gas compared to BAU (greenhouse gas emission estimates) by 2030. To meet the target of Korea BAU requirement, other approaches such as sCO 2 power cycle are needed for higher power generation efficiency. Test-loop of the supercritical CO 2 power cycle was designed for using a part of flue gas from a coal-fired power plant as a heat source.

Test-loop Design of the Supercritical CO2 Power Cycle with ...sco2symposium.com/posters2018/121_Poster.pdfTest-loop Design of the Supercritical CO 2 Power Cycle with an Axial Turbine

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Page 1: Test-loop Design of the Supercritical CO2 Power Cycle with ...sco2symposium.com/posters2018/121_Poster.pdfTest-loop Design of the Supercritical CO 2 Power Cycle with an Axial Turbine

Test-loop Design of the Supercritical CO2 Power Cycle

with an Axial Turbine

Dong-Ryul Rhim, Sung-Ho Park, Munkyu Yoon, Jung-Uk Shin, Jinil Kim

(Institute for Advanced Engineering)

The 6th International Supercritical CO2 Power Cycles ● March 26-29, 2018 ● Pittsburgh, PA, USA

Graphical Process Flow Diagram Piping and Instrument Diagrams

Axial Turbine for Supercritical CO2Test-loop 3D Modeling and Pipe Thermal Stress Analysis

It was selected as a two-stage turbine through

thermal-FEM analysis and aerodynamic analysis

by KIMM.

■ Background

Due to the Paris Climate Change Agreement (COP21, Dec. 12, 2015), Korea should reduce 37% of greenhouse gas compared to BAU (greenhouse gas emission estimates) by 2030.

To meet the target of Korea BAU requirement, other approaches such as sCO2 power cycle are needed for higher power generation efficiency.

Test-loop of the supercritical CO2 power cycle was designed for using a part of flue gas from a coal-fired power plant as a heat source.