Modeling and Validation of the Thermal Effects on Gas Turbine Transients
Author:
Affiliation:
1. Hermann-Eckert-Strasse 20, D-88634 Herdwangen-Schoenach, Germany
2. Rolls-Royce Deutschland Ltd., & CoKG, Eschenweg 15, 15827 Dahlewitz, Germany
3. Institut fu¨r Luftfahrtantriebe, University Stuttgart, Pfaffenwaldring 6, 70596 Stuttgart, Germany
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Link
http://asmedigitalcollection.asme.org/gasturbinespower/article-pdf/127/3/564/5718315/564_1.pdf
Reference8 articles.
1. Therkorn, D., 1992, “Fortschrittliches Leistungs-Berechnungsverfahren fu¨r luftatmende Turbotriebwerke,” Doctor thesis, University of Stuttgart.
2. Khalid, S. J., and Hearne, R. E., 1980, “Enhancing Dynamic Model Fidelity for Improved Prediction of Turbofan Engine Transient Performance,” AIAA 80-1083.
3. Fiola, R., 1993, “Berechnung des Instationa¨ren Betriebsverhaltens unter Besonderer Beru¨cksichtigung von Sekunda¨reffekten,” Doctor thesis, Technical University of Munich.
4. Riegler, C., 1999, “Correlations to Include Heat Transfer in Gas Turbine Performance Calculations,” Aerospace Science and Technology, No. 5, pp. 281–292.
5. Frank, R., Rist, D., and Kappler, G., 1993, “On-line U¨berwachung der Ermu¨dungslebensdauer von Rotierenden Flugtriebwerkskomponenten,” DGLR Jahresbuch No. 93-03-048.
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