Affiliation:
1. Laboratory of Thermal Turbomachines, National Technical University of Athens, Iroon Plolytechniou 9, Athens 15773, Greece
Abstract
The paper presents an analysis of the effect of ambient humidity on the performance of industrial gas turbines and examines the impact of humidity on methods used for engine condition assessment and fault diagnostics. First, the way of incorporating the effect of humidity into a computer model of gas turbine performance is described. The model is then used to derive parameters indicative of the “health” of a gas turbine and thus diagnose the presence of deterioration or faults. The impact of humidity magnitude on the values of these health parameters is studied and the uncertainty introduced, if humidity is not taken into account, is assessed. It is shown that the magnitude of the effect of humidity depends on ambient conditions and is more severe for higher ambient temperatures. Data from an industrial gas turbine are presented to demonstrate these effects and to show that if humidity is appropriately taken into account, the uncertainty in the estimation of health parameters is reduced.
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Reference16 articles.
1. Andersen, H., 2000, “Early Detection of Combustor Pulsations and Optimized Operation Through On-Line Monitoring Systems,” ASME Paper No. 2000-GT-0180.
2. Gu¨len, S. C., Griffin, P. R., and Paolucci, S., 2000, “Real-Time On-Line Performance Diagnostics of Heavy-Duty Industrial Gas Turbines,” ASME Paper No. 2000-GT-0312.
3. Razak, A. M. Y, and Carlyle, J. S., 2000, “An Advanced Model Based Health Monitoring System To Reduce Gas Turbine Ownership Cost,” ASME Paper No. 2000-GT-627.
4. Cloyd, S. T., and Harris, A. J., 1995, “Gas Turbine Performance—New Application and Test Correction Curves,” ASME Paper No. 95-GT-167.
5. AGARD-AR-332,1995, Recommended Practices for the Assessment of the effects of Atmospheric Water Injestion on the Performance and Operability of Gas Turbines Engines, Sept.
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