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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 21, 1992 - Issue 1
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Original Articles

APPLICATION OF A HIGHER-ORDER TURBULENCE CLOSURE MODEL TO PLANE JET

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Pages 21-35 | Received 08 Jan 1991, Accepted 07 Mar 1991, Published online: 30 Mar 2007

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Read on this site (2)

Tien-Mo Shih, M. M. Ohadi & Wei Liu. (1996) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1992–1993). Numerical Heat Transfer, Part A: Applications 29:5, pages 441-484.
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X.-Q. Chen & J. C.F Pereira. (1995) PREDICTION OF EVAPORATING SPRAY IN ANISOTROPICALLY TURBULENT GAS FLOW. Numerical Heat Transfer, Part A: Applications 27:2, pages 143-162.
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Farah Nazifa Nourin & Ryoichi S. Amano. (2023) Heat Transfer Augmentation With Multiple Jet Impingement Cooling on Dimpled Surface for Gas Turbine Blades. Journal of Energy Resources Technology 145:2.
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Farah Nazifa Nourin & Ryoichi S. Amano. (2022) Experimental Study on Flow Behavior and Heat Transfer Enhancement With Distinct Dimpled Gas Turbine Blade Internal Cooling Channel. Journal of Energy Resources Technology 144:7.
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Farah Nazifa Nourin & Ryoichi S. Amano. (2022) Experimental and Large Eddy Simulation Study for Visualizing Complex Flow Phenomena of Gas Turbine Internal Blade Cooling Channel With No Bend. Journal of Energy Resources Technology 144:6.
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P.S. Glockner & G.F. Naterer. (2005) Near-wall velocity profile with adaptive shape functions for turbulent forced convection. International Communications in Heat and Mass Transfer 32:1-2, pages 72-79.
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R. S. Amano, G. R. Draxler & J. M. Golembiewski. (2002) High-Pressure Steam Flow in Turbine Bypass Valve System Part 2: Pipe Flow. Journal of Propulsion and Power 18:3, pages 561-571.
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R. S. Amano & G. R. Draxler. (2002) High-Pressure Steam Flow in Turbine Bypass Valve System Part 1: Valve Flow. Journal of Propulsion and Power 18:3, pages 555-560.
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