Investigation of film cooling on the leading edge of turbine blade based on detached eddy simulation
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Engineering,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s11431-012-4910-x.pdf
Reference25 articles.
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2. Karni J, Goldstein R J. Surface injection effect on mass transfer from a cylinder in crossflow: a simulation of film cooling in the leading edge region of a turbine blade. ASME J Turbomach, 1990, 112: 418–427
3. Ekkad S V, Han J C, Du H. Detailed film cooling measurements on a cylindrical leading edge model: Effect of free-stream turbulence and coolant density. ASME J Turbomach, 1998, 120: 799–807
4. Ou S, Rivir R B. Leading edge film cooling heat transfer with high free stream turbulence using a transient liquid crystal image method. Int J Heat Fluid Flow, 2001, 22: 614–623
5. Lawson S A, Thole K A, Okita Y, et al. Simulations of multi-phase particle deposition on a showerhead with staggered film-cooling hole. ASME Turbo Expo 2011, GT2011–45191
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1. Verification of the Film Cooling Calculations for Nozzle Vane Leading Edges in ANSYS CFX;Russian Aeronautics;2019-01
2. Numerical analysis on the film cooling of leading edge with laid back holes to determine the optimal angle for the holes;Australian Journal of Mechanical Engineering;2018-11-27
3. Experimental measurements of the flow field around a film-cooled blade leading edge using particle image velocimetry;Advances in Mechanical Engineering;2018-10
4. Comparison of RANS and Detached Eddy Simulation Modeling Against Measurements of Leading Edge Film Cooling on a First-Stage Vane;Journal of Turbomachinery;2017-01-24
5. Detached-eddy simulations and analyses on new vortical flows over a 76/40° double delta wing;Science China Physics, Mechanics and Astronomy;2013-05-03
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