Inlet Fogging of Gas Turbine Engines—Part II: Fog Droplet Sizing Analysis, Nozzle Types, Measurement, and Testing

Author:

Chaker Mustapha1,Meher-Homji Cyrus B.1,Mee Thomas1

Affiliation:

1. Gas Turbine Division, Mee Industries, Inc., 204 West Pomona Avenue, Monrovia, CA 91016

Abstract

The inlet fogging of gas turbine engines for power augmentation has seen increasing application over the past decade yet not a single technical paper treating the physics and engineering of the fogging process, droplet size measurement, droplet kinetics, or the duct behavior of droplets, from a gas turbine perspective, is available. This paper provides the results of extensive experimental and theoretical studies conducted over several years, coupled with practical aspects learned in the implementation of nearly 500 inlet fogging systems on gas turbines ranging in power from 5 to 250 MW. Part II of the paper treats the practical aspects of fog nozzle droplet sizing, measurement and testing presenting the information from a gas turbine fogging perspective. This paper describes the different measurement techniques available, covers design aspects of nozzles, provides experimental data on different nozzles, and provides recommendations for a standardized nozzle testing method for gas turbine inlet air fogging.

Publisher

ASME International

Subject

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

Reference13 articles.

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3. Doble, S. J., Matthews, G. A., Rutherford, I., and E. S. E., Southcombe, 1985, “A System for Classifying Hydraulic Nozzles and Other Atomizers into Categories of Spray Quality,” Proceedings of the 1985 British Crop Protection Conference: Weeds, vol. 9A-5, pp. 1125–1133.

4. Arnold, A. C. , 1990, “A Comparative Study of Drop Sizing Equipment for Agricultural Fan-Spray Atomizers,” Aeronaut. Sci. Technol., 12, pp. 431–445.

5. Young, B. W., and Bachalo, W. B., 1987, “The Direct Comparison of Three ‘In-Flight’ Droplet Sizing Techniques for Pesticide Spray Research,” International Symposium on Optical Particle Sizing: Theory and Practice, Rouen, France.

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