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Research Center For Advanced Energy Conversion | 論文
- Prediction of NO_x Emissions from High-temperature Gas Turbines : Numerical Simulation for Low-NO_x Combustion
- Raman Scattering In (1 - X)Pb(Zn_Nb_)O_PbTiO_3 Mixed Crystal System II
- Effect of Raw-Fuel Flow Rate on Soot Formation Reaction in Carbon Black Furnace
- Non-Oxidizing Heating by High Temperature Nitrogen Gas Jet Stream
- Research of Energy Conversion and Environmental Technologies in Research Center for Advanced Energy Conversion Nagoya University (RAN)(Letters from R&D Groups)
- An Appraisal of Experimental, Predictive and Correlative Contributions to Fully Developed Turbulent Flow in a Round Tube
- An Appraisal of Resources and Methodologies for Prediction of Flow and Convection in Channels
- A New Concept of Correlation for Turbulent Convection
- Combustion Technology in a Novel Gas Turbine System with Steam Injection and Two-Stage Combustion
- A112 High Efficiency Gas Tuirbine Cogeneration System Using High-Level Steam Addition (HISA) Cycle(Advanced thermal system analysis-2)
- A101 COMBUSTION CHARACTERISTICS UNDER CONDITION OF LOW-OXYGEN ATMOSPHERE AND HIGH-LEVEL STEAM ADDITION(Nuclear power-1/combustion)
- Spectroscopic Two-dimensional Observation of Flames in an Industrial Furnace for Steel Processing
- IMPROVEMENT OF HIGH-TEMPERATURE ENDURANCE OF C/C COMPOSITES BY DOUBLE COATING WITH SiC AND GLASS MATERIALS
- Effects of Isoflurane on Kinetics of N_2O Catalytic Decomposition over Rh/Al_2O_3 in Medical Operating Rooms
- Excitation Characteristics and Matrix Effect in a Helium Radiofrequency Atomization and Excitation Source for Atomic Emission Spectrometry
- Improvement in Oxidation Resistance of a C/C Composite by Using CVD-SiC Coating with SiC Fiber-Composite Layer
- Intercalation of Spirooxazine Induced by Zinc Cation Chelation in Montmorillonite and Its Photochromic Behavior
- Passive Enhancement Technique for Free Convection-Dominated Melting of Phase Change Material in Horizontal Cylindrical Annulus
- The Characteristics of Heat Transfer and the Decomposition of N_2O in a Double-Spiral Heat Exchanger/Catalytic Reactor