Analysis of Some Improved Blade Tip Concepts

Author:

Prakash C.1,Lee C. P.1,Cherry D. G.1,Doughty R.1,Wadia A. R.1

Affiliation:

1. General Electric Aviation, 30 Merchant Sreet, Princeton Hill P20, Cincinnati, OH 45246

Abstract

Over tip leakage in high-pressure turbines contributes to aerodynamic losses and migration of hot gasses towards the tip resulting in increased thermal distress. Consequently, turbine designers continue to search for improved blade tip concepts that offer the promise of reducing tip leakage. The present paper deals with the computational fluid dynamics analyses of some such tip configurations. The geometries, patented by GE, are variants of a conventional squealer tip and include (i) a pressure side tip shelf with vertical squealer tip wall and (ii) a pressure side tip shelf with an inclined squealer tip wall. It is found that the inclined shelf results in separation of flow leaking over the tip, resulting in reduced leakage and improved efficiency. The inclined shelf also shows a reduced efficiency derivative with clearance.

Publisher

ASME International

Subject

Mechanical Engineering

Reference5 articles.

1. Axial Turbine Blade Tips: Function, Design, and Durability;Bunker;AIAA J. Propul. Power

2. Glezer, B., Harvey, N., Camci, C., Bunker, R., and Ameri, A., 2004, “Turbine Blade Tip Design and Tip Clearance Treatment,” Von Karman Institute for Fluid Dynamics Lecture Series VKI-LS 2004-02, ISSN0377-8312, Brussels, Jan. 19–23.

3. Acharya, S., Yang, H., Prakash, C., and Bunker, R., 2003, “Numerical Study of Flow and Heat Transfer on a Blade Tip with Different Leakage Reduction Strategies,” ASME Paper No. 2003-GT-38617.

4. Butts, D., Nourse, J. G., and Simmons, R. C., 1993, “Tip Cooled Blade,” U.S. Patent No. 5,261,789.

5. Cherry, D. G., Lee, C. P., Prakash, C., Wadia, A. R., Keith, B. D., and Brassfield, S. R., 2004, “Turbine Blade Having Angled Squealer Tip,” U.S. Patent No. 6,672,829.

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