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Enhancement of film cooling effectiveness using Dean vortices
Pingting Chen
, Lang Wang
, Xueying Li
, Jing Ren
, Hongde Jiang
,
Terrence Simon
Mechanical Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
Overview
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Dive into the research topics of 'Enhancement of film cooling effectiveness using Dean vortices'. Together they form a unique fingerprint.
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Keyphrases
Film Cooling
100%
Dean Vortices
100%
Curved Hole
100%
Kidney Vortex
54%
Blowing Ratio
45%
Cooling Technology
27%
Vortex
27%
Film Cooling Hole
27%
Laidback Fan-shaped Hole
27%
Gas Turbine
18%
Flow Field
18%
In Films
18%
Coolant
18%
Heat Flux Reduction
18%
Jet Flow
9%
Manufacturing Technology
9%
Passage Flow
9%
Specific Power
9%
Technology Focus
9%
Numerical Results
9%
Streamwise
9%
Near-wall Region
9%
Vorticity
9%
Kinetic Energy
9%
Heat Transfer Coefficient
9%
Cooling Effectiveness
9%
Field Temperature
9%
Lift-off
9%
Heat Transfer Enhancement
9%
ReAttach
9%
Thermal Efficiency
9%
Round Hole
9%
Hole Geometry
9%
Injection Angle
9%
Mixing Region
9%
Local Injection
9%
High Kinetics
9%
Rotation Direction
9%
Numerical Effort
9%
Additive Manufacturing
9%
Shaped Holes
9%
Cooling Air
9%
Anti-kidney Vortex
9%
Specific Thrust
9%
Cooling Jet
9%
High Blowing Ratio
9%
Engineering
Vortex
100%
Cooling Hole
21%
Gas Turbine
14%
Heat Flux
14%
Flow Distribution
14%
Manufacturing Engineering
7%
Cooling Air
7%
Flow Passage
7%
Streamwise
7%
Mixing Region
7%
Cooling Performance
7%
Specific Power
7%
Additive Manufacturing
7%
Round Hole
7%
High Kinetic Energy
7%
Heat Transfer Coefficient
7%
Turbine Thermal Efficiency
7%
Heat Transfer Enhancement
7%
Vorticity
7%
Jet
7%
Physics
Film Cooling
100%
Coolant
14%
Flow Distribution
14%
Gas Turbine
14%
Vorticity
7%
Kinetic Energy
7%
Heat Transfer Enhancement for Application
7%
Air Cooling
7%
Thermodynamic Efficiency
7%
Additive Manufacturing
7%
Jet Flow
7%