3D Investigation of Film Cooling Effectiveness for Nozzle Vane Platform of High Pressure Turbine with “Meridian Constriction” and Laidback Fan-Shaped Film-Cooling Holes

Author:

Gorelov Yu. G.

Publisher

Allerton Press

Subject

Aerospace Engineering

Reference9 articles.

1. Gorelov, Yu.G. and Matveev, A.S., Findings of Experimental Investigations of Promising Methods of High-Temperature GTE Turbine Blade Shrouds and Platforms of Nozzle Vanes Cooling, Tezisy dokladov mezhdunarodnoi nauchno-tekhnicheskoi konferentsii “Problemy i perspektivy razvitiya dvigatelestroeniya v Povolzhskom regione” (Proc. Int. Scientific and Technical Conference “Problems and Perspectives of Propulsion Engineering Development in the Volga region”), Samara: SSAU, 1997, vol. 2, pp. 12–18.

2. Yang Zhang and Xin Yuan, Experimental Investigation of Turbine Phantom Cooling on Endwall with Trailing Edge Discharge Flow, Proc. ASME Turbo Expo, Germany, Düsseldorf, 2014, paper no. GT2014-26781, pp. V05BT13A052.

3. Yang Zhang and Xin Yuan, Experimental Investigation of Nonperiodic Endwall Film Cooling in Neighboring Passages with Upstream Rotating Flow, Proc. ASME Turbo Expo, Germany, Düsseldorf, 2014, paper no. GT2014-26824, pp. V05BT13A053.

4. Poletaev, V.A., Remizov, A.E., Vyatkov, V.V., and Lebedev, V.V., Special Features of Aerodynamic and Thermal Improvement of Turbine Nozzles for Advanced Gas Turbine Engines, Izv. Vuz. Av. Tekhnika, 2016, vol. 59, no. 1, pp. 81–86 [Russian Aeronautics (Engl. Transl.), vol. 59, no. 1, pp. 89–94].

5. Barigozzi, G., Franchini, G., Perdichizzi, A., and Ravelli, S., Film Cooling of a Contoured Endwall Nozzle Vane through Fan-shaped Holes, International Journal of Heat and Fluid Flow, 2010, vol. 31, issue 4, pp. 576–585.

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