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- [1] Film Cooling Effectiveness Comparison on Full-Scale Turbine Vane Endwalls Using Pressure-Sensitive Paint Technique JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2018, 140 (02):
- [2] Full-Scale Turbine Vane Endwall Film-Cooling Effectiveness Distribution Using Pressure-Sensitive Paint Technique JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2016, 138 (05):
- [3] Film-cooling effectiveness on a rotating turbine platform using pressure sensitive paint technique PROCEEDINGS OF THE ASME TURBO EXPO 2007, VOL 4, PTS A AND B, 2007, : 169 - 183
- [4] Film-Cooling Effectiveness on a Rotating Turbine Platform Using Pressure Sensitive Paint Technique JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2010, 132 (04): : 1 - 13
- [5] INFLUENCE OF COOLANT DENSITY ON TURBINE BLADE FILM-COOLING USING PRESSURE SENSITIVE PAINT TECHNIQUE PROCEEDINGS OF THE ASME TURBO EXPO 2010, VOL 4, PTS A AND B, 2010, : 1529 - 1540
- [6] Influence of Coolant Density on Turbine Blade Film-Cooling Using Pressure Sensitive Paint Technique JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2012, 134 (03):
- [7] Transonic Turbine Vane Endwall Film Cooling Using the Pressure-Sensitive Paint Measurement Technique JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2020, 142 (08):
- [8] Effects of Unsteady Wake on Leading Edge Film Cooling of Turbine Blade Using Pressure Sensitive Paint Technique Tuijin Jishu/Journal of Propulsion Technology, 2019, 40 (04): : 858 - 865
- [9] Unsteady Wake and Coolant Density Effects on Turbine Blade Film Cooling Using Pressure Sensitive Paint Technique JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2012, 134 (08):
- [10] Design of Full-Scale Endwall Film Cooling of a Turbine Vane JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2020, 142 (02):