Experimental and Three-Dimensional CFD Investigation in a Gas Turbine Exhaust System

Author:

Sultanian B. K.1,Nagao S.2,Sakamoto T.2

Affiliation:

1. General Electric Company, GE Power Systems, 1 River Raod, Bldg. 53-227, Schenectady, NY 12345

2. Toshiba Corporation, Heavy Apparatus Engineering Lab, Tsurumi-ku, Yokohama-shi 230, Japan

Abstract

Both experimental and three-dimensional CFD investigations are carried out in a scale model of an industrial gas turbine exhaust system to better understand its complex flow field and to validate CFD prediction capabilities for improved design applications. The model consists of an annular diffuser passage with struts, followed by turning vanes and a rectangular plenum with side exhaust. Precise measurements of total/static pressure and flow velocity distributions at the model inlet, strut outlet and model outlet are made using aerodynamic probes and locally a Laser Doppler Velocimeter (LDV). Numerical analyses of the model internal flow field are performed utilizing a three-dimensional Navier-Stokes (N-S) calculation method with the industry standard k-ε turbulence model. Both the experiments and computations are carried out for three load conditions: full speed no load (FSNL), full speed mid load (FSML, 57 percent load), and full speed full load (FSFL). Based on the overall comparison between the measurements and CFD predictions, this study concludes that the applied N-S method is capable of predicting complicated gas turbine exhaust system flows for design applications.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference29 articles.

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2. Desideri, U., and Manfrida, G., 1995, “Flow and Turbulence Survey for a Model of Gas Turbine Exhaust Diffuser,” ASME Paper 95-GT-139.

3. Cheng, Z., and Eiseman, P. R., 1996, “Interactive Topology Generation and Grid Viewer for GridPro/az3000,” in Numerical Grid Generation in Computational Field Simulations, Proceedings, Of the 5th International Conference, B. Soni, J. F. Thompson, J. Hauser, and P. R. Eiseman, eds., Mississippi State University Press, pp. 413–422.

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