The Real Gas Effect on the Stagnation Properties for Supercritical Carbon Dioxide Flows
Author:
Affiliation:
1. Department of Aeronautics and Astronautics, The University of Tokyo
Publisher
Gas Turbine Society of Japan
Subject
Mechanical Engineering
Link
https://www.jstage.jst.go.jp/article/jgpp/11/2/11_1/_pdf
Reference12 articles.
1. Hasuike, H., Yamamoto, T., Fukushima, T., etal., 2010, “Test Plan and Preliminary Test Results of a Bench Scale Closed Cycle Gas Turbine with Super-critical CO2 as Working Fluid,” ASME paper, GT2010-22171.
2. Raman, S. K., Kim, H. D., 2018, “Solutions of supercritical CO2 flowthrough a converging-diverging nozzle with real gas effects”. Int. J. Heat Mass Transfer 2018, 116, 127−135.
3. Yamamoto, S., Furusawa, T., 2018, Mathematical Modelling and Computation for Rapid Expansion of Supercritical Solutions, Supercritical and Other High-pressure Solvent Systems, Royal society of Chemistry.
4. Yamamoto, S., Furusawa, H., Miyazawa, H., 2011, “Numerical Simulation of Supercritical Carbon Dioxide Flowsacross critical Point”, Int. J. Heat Mass Transfer 2011, 54, 774-782.
5. Hosangadi, A., Weathers, T., Liu, Z., et al., 2018, “Numerical Simulation of CO2 Compressors at Near-critical and Sub-critical Inlet Conditions”, ASME paper, GT2018-75102.
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