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Centrifugal Compressors Chapter 3 131
[7a] D.W. Childs, Turbomachinery Rotordynamics, Phenomena, Modeling, and Analysis, John
Wiley & Sons, 1993.
[8] API Standard 617, Axial and Centrifugal Compressor and Expander-Compressors, eighth ed.,
American Petroleum Institute, Washington, DC, 2014.
[9] B. Venkataraman, D. Moulton, C. Cave, J. Wilkes, J. Moore, Eldridge, Design and implemen-
tation of swirl brakes for enhanced rotordynamic stability in an off-shore centrifugal compres-
sor, in: Proc. Asia Turbomachinery and Pump Symposia, May 12–15, Singapore, 2018.
[10] J.J. Moore, T.S. Soulas, Damper seal comparison in a high-pressure re-injection centrifugal
compressor during full-load, full-pressure factory testing using direct rotordynamic stability
measurement, in: Proceedings of the DETC’03 ASME 2003 Design Engineering Technical
Conference, Chicago, IL, Sept. 2–6, 2003, 2003.
[11] J.C. Wachel, W. von Nimitz, Assuring the reliability of offshore gas compression systems,
in: European Offshore Petroleum Conference & Exhibition, October 21–24, 1980, London,
England, 1980. EUR 205.
[12] J.J. Moore, D. Ransom, Refinement of physics based approach used in the prediction of impel-
ler rotordynamic forces for centrifugal compressors, in: Proc. ASME Turbo Expo 2008, Power
for Land, Sea, and Air, GT2008-51484, 2008.
[12a] J.J. Moore, D.L. Ransom, Centrifugal Compressor Stability Prediction Using a New Physics
Based Approach, in: ASME Turbo Expo 2009: Power for Land, Sea, and Air Volume 6:
Structures and Dynamics, Parts A and B Orlando, Florida, USA, June 8–12, 2009.
[13] F. Kushner, Disc vibration—rotating blade and stationary vane interaction, ASME J. Mech.
Des. 102 (1980) 579–584.
[14] F. Kushner, S.J. Richard, R.A. Strickland, Critical review of compressor impeller vibration
parameters for failure prevention, in: Proceedings of the Twenty-Ninth Turbomachinery Sym-
posium, Turbomachinery Laboratory, Texas A&M University, College Station, TX, 2000,
pp. 143–161.
[15] M.P. Singh, B.K. Thakur, W.E. Sullivan, G. Donald, Resonance identification for impellers,
in: Proceedings of the Thirty-Second Turbomachinery Symposium, Turbomachinery Labora-
tory, Texas A&M University, College Station, TX, 2003, pp. 59–70.
[16] W. Campbell, The protection of steam turbine disc wheels from axial vibration, Trans. ASME
46 (1924) 31–160.
[17] B. Pettinato, J. Griffin, Y. Wang, D. Feiner, B. Echols, M. Cushman, Lecture 10: Experimen-
tally based statistical forced response analysis for purpose of impeller mistuning identification,
nd
in: Proceedings of the 2 Middle East Turbomachinery Symposium, Presented in Doha, Qatar,
March, 2013, Turbomachinery Laboratory, Texas A&M University, College Station, TX,
2013.
[18] S. Konig, N. Petry, N.G. Wagner, Aeroacoustics phenomenon in high-pressure centrifugal
compressors—a possible root cause for impeller failures, in: Proceedings of the Thirty-Eighth
Turbomachinery Symposium, Turbomachinery Laboratory, Texas A&M University, College
Station, TX, 2009, pp. 103–121.
[18a] N. Petry, F.K. Benra, S. Koenig, Experimental study of acoustic resonances in the side cav-
ities of a high-pressure centrifugal compressor excited by rotor/stator interaction, in: Proc.
ASME Turbo Expo 2010: Power for Land, Sea and Air (GT2010-22054).
[19] Y. Bidaut, D. Dessibourg, The challenge for the accurate determination of the axial rotor thrust
in centrifugal compressors, in: Proceedings of the Asia Turbomachinery and Pump Sympo-
sium, Singapore, February 22–25, 2016, 2016.
[19a] R. Kurz, E.J. Fowler, R.K. Marechale, M. Ji, M.J. Cave, Operation of centrifugal compressors
in choke conditions, in: Proc. 40th Turbosymposium, Houston, TX, 2011.