참고문헌
- Aschenbruck, J., Adamczuk, R., and Seume, J.R. (2014), "Recent progress in turbine blade and compressor blisk regeneration", Proceedings of the 3rd International Conference on Through-life Engineering Services, Cranfield, England, November.
- Aschenbruck, J., Meinzer, C.E. and Seume, J. (2013b), "Influence of regeneration-induced variances of stator vanes on the vibration behaviour of rotor blades in axial turbines", Proceedings of the 10th European Conference on Turbomachinery Fluid dynamics & Thermodynamics, Lappeenranta, Finland, April.
- Aschenbruck, J., Meinzer, C.E., Pohle, L., Panning-von Scheidt, L. and Seume, J. (2013a), "Regenerationinduced forced response in axial turbines", Proceedings of the ASME Turbo Expo 2013, San Antonio, Texas, USA, June.
- Booysen, C., Heyns, P.S., Hindley, M.P. and Scheepers, R. (2015), "Fatigue life assessment of a low pressure steam turbine blade during transient resonant conditions using a probabilistic approach", Int. J. Fatig., 73, 17-26. https://doi.org/10.1016/j.ijfatigue.2014.11.007
- Brenner, P. (1956), "Statische und dynamische Festigkeitseigenschaften hochfester Aluminiumlegierungen", Aluminium, 32, 756-768
- Enright, M.P., Hudak, S.J. and, McClung, R.C. (2006), "Application of Probabilistic probabilistic Fracture fracture Mechanics mechanics to Prognosis prognosis of Aircraft aircraft Engine engine components", AIAA J., 44(2), 311-316. https://doi.org/10.2514/1.13142
- Fei, C., Tang, W., Bai, G. and Ma, S. (2015), "Dynamic probabilistic design for blade deformation with SVM-ERSM", Aircraft Eng. Aerosp. Tech., 87(4), 312-321. https://doi.org/10.1108/AEAT-07-2013-0125
- Garzon, V.E. and Darmofal, D.L. (2003), "Impact of geometric variability on axial compressor performance", Proceeding of the ASME Turbo Expo 2003, Atlanta, Georgia, USA, January.
- GOM (2016), available online at: http://www.gom.com (accessed 3 August 2016).
- Heinze K., Meyer M., Scharfenstein J., Voigt, M. and Vogeler, K. (2013), "A parametric model for probabilistic analysis of turbine blades considering real geometric effects", CEAS Aeronaut. J., 5(1), 41-51. https://doi.org/10.1007/s13272-013-0088-6
- Heinze, K. (2015), "Eine Methode fur probabilistische Untersuchungen zum Einfluss von Fertigungsstreuungen auf die hochzyklische Ermudung von Verdichterschaufeln", Ph.D. Dissertation, TU Dresden, Dresden.
- Hohenstein, S., Aschenbruck, J. and Seume, J. (2013), "Einfluss betriebs- und regenerationsbedingter Varianzen von Turbinenschaufeln", Int. J. Elect. Heat Gen. VGB Power Tech., 11, 51-58.
- Holl, M., Rogge, T., Loehnert, S., Wriggers, P. and Rolfes, R. (2014), "3D multiscale crack propagation using the XFEM applied to a gas turbine blade", Comput. Mech., 53(1), 173-188. https://doi.org/10.1007/s00466-013-0900-5
- Hou, J. and Wicks, B.J. (2002), "Root flexibility and untwist effects on vibration characteristics of a gas turbine blade", Defence Science and Technology Organization Victoria (Australia) Platform Science Lab, No. DSTO-RR-0250.
- Hou, J., Wicks, B.J. and Antoniou, R.A. (2002), "An investigation of fatigue failures of turbine blades in a gas turbine engine by mechanical analysis", Eng. Fail. Anal., 9(2), 201-211. https://doi.org/10.1016/S1350-6307(01)00005-X
- Jolliffe, I. (2002), Principal Component Analysis, 2th Edition, Springer, New York, NY, USA.
- Lange, A. (2016), "Performanceuntersuchung eines Hochdruckverdichters unter Berucksichtigung geometrischer Variabilitat", Ph.D. Dissertation, TU Dresden, Dresden.
- Lange, A., Voigt, M., Vogeler, K. and Johann, E. (2012), "Principal component analysis on 3D scanned compressor blades for probabilistic CFD simulation", 53rd AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference Honolulu, Hawaii.
- Lange, A., Voigt, M., Vogeler, K., Schrapp, H., Johann, E. and Gummer, V. (2012), "Impact of manufacturing variability on multi-stage high-pressure compressor performance", Proceedings of the ASME Turbo Expo 2012, Copenhagen, Denmark.
- Miner, M.A. (1945), "Cumulative damage in fatigue", J. Appl. Mech., 12(3), 159-164.
- Rao, J.S. (2000), Turbine blade life estimation, 1st Edition, Alpha Science International, Pangbourne, UK.
- Reyhani, M.C., Alizadeh, M., Fathi, A. and Khaledi, H. (2013), "Turbine blade temperature calculation and life estimation-a sensitivity analysis", Propuls. Power Res., 2(2), 148-161. https://doi.org/10.1016/j.jppr.2013.04.004
- Rogge, T. and Rolfes, R. (2012), "Stochastische Untersuchungen regenerationsbedingter Imperfektionen einer Turbinenschaufel-Modellierung des deterministischen Modells zur effizienten Berechnung des Schwingungs- und Festigkeitsverhaltens", Proceedings of 5 Dresdener-Probabilistik-Workshop, Dresden, Germany, October.
- Sabour, M.H. and Bhat, R.B. (2008), "Lifetime prediction in creep-fatigue environment", Mater. Sc. Poland, 26(3), 563-584.
- Spearman, C. (1904), "The proof and measurement of association between two things", Am. J. Psychol., 15(1), 72-101. https://doi.org/10.2307/1412159
- ThyssenKrupp (2016), "Data sheet: EN AW-7022", available online at: http://www.thyssenkrupp.ch/documents/Al_Platten_7022.1.pdf (accessed 3 August 2016).
- Traupel, W. (2001), Thermische Turbomaschinen II, 4th Edition, Springer, Berlin, Germany.
- Vogeler, K. and Voigt, M. (2015), "Probabilistic analysis of complex system behavior in turbomachinery design", Proceedings of International Gas Turbine Congress, Tokyo, Japan, November.