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Department Of Mechanical Engineering Faculty Of Engineering Osaka University | 論文
- Computational Modelling for Materials with Crystalline Structure : Molecular Dynamic Simulation of Microscopic Crack Tip Field under Antiplane Shear Loading
- Nonintrusive Gas Pressure Measurement by Laser Induced Fluorescence from NO Molecules
- SA-07-2(099) Loading Frequency Effect on Near-Threshold and Sub-Threshold Fatigue Crack Growth in SUS304 Steel at an Elevated Temperature(Flaw Assessment at Elevated Temperature 2)
- IDENTIFICATION OF AN INTERFACE CRACK IN BONDED DISSIMILAR MATERIALS FROM ELECTRIC POTENTIAL DISTRIBUTION
- Evaluation of the J-Integral Range of Fatigue Crack Emanating from Notches by Simple Estimation Formulae
- Investigation on Path-Integral Expression of the J-Integral Range Using Numerical Simulations of Fatigue Crack Growth
- INVERSE PROBLEMS IN SOLID MECHANICS AND RELEVANT FIELDS
- Numerical Computation and Its Comparison with Experiments on Vortex Formation and the Mixing Process in a Transient Jet
- Measurements of O_2 Concentration and Temperature in Diffusion Flame by Excimer-Laser-Induced Fluorescence and Rayleigh Scattering
- Measurements of OH Concentration and Temperature in Diffusion Flame by Excimer Laser-Induced Fluorescence and Rayleigh Scattering
- Separation Performance of the Hydrocyclone
- The Oxidation and Reduction Behavior of Metal Surface in a Flame
- Turbulence and Mixing in Turbulent Premixed Flames : Fine Flame Structure and Its Influence on Mixing Processes
- Experimental and Numerical Study on Combustion Mechanism of Liquid Fuel Spray Entering Gaseous Flame Front
- Boundary Element Method Applied to Simulation of Active Noise Control in Ducts
- Boundary Element Method for Solving Elastic Buckling Problems of Assembled Plate Structures
- B12-113 HEAT TRANSFER ENHANCEMENT BY ADHERENT NANO-PARTICLE ON SURFACE : EXPERIMENTAL AND MOLECULAR DYNAMICS STUDY
- A General Purpose BEM Computer Code for Acoustic Problems : Series C : Vibration Control Engineering Engineering for Industry
- Effect of Stress Reduction of Secondary Creep of Mild Steel
- Noise Source Identification by an Optimization Technique Using the Boundary Element Method