The design process of journal bearings of turbomachines is complex and time-consuming due to the many geometric and physical variables involved. This paper reports on the design of experiments (DOE) and the response surface design of experiments (RSDOE) methods employed on the design of the drive-end and free-end three-lobe journal bearings supporting a centrifugal compressor rotor. The suitability of each technique is discussed. The bearing design variables employed are bearing slenderness ratio, radial clearance, preload, and lubricant inlet temperature. The rotordynamic response variables selected were the critical speed location, the vibrations at critical speed and operating speed for both bearings, and the threshold speed of instability. The use of a nonlinear (quadratic) RSDOE model is justified. An optimization approach combining an SRDOE and rotordynamic finite element modeling is presented. This method leads to arrive to a multivariate model for multi-objective optimization with very few computations. Identification of the dominant design variables and their effects on several response variables allows establishing engineering feasible solutions with focus on manufacturing versus operating conditions tradeoff.
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December 2016
Research-Article
Rotordynamic Optimization of Fixed Pad Journal Bearings Using Response Surface Design of Experiments
Leonardo Urbiola-Soto,
Leonardo Urbiola-Soto
Center for Advanced Technology,
Universidad Nacional Autónoma
de México (UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
e-mail: leourbiola@gmail.com
Universidad Nacional Autónoma
de México (UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
e-mail: leourbiola@gmail.com
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Raymundo Santibañez-Santoscoy,
Raymundo Santibañez-Santoscoy
Center for Advanced Technology,
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
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Marcelo López-Parra,
Marcelo López-Parra
Center for Advanced Technology,
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
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Alejandro C. Ramírez-Reivich,
Alejandro C. Ramírez-Reivich
Department of Mechanical Engineering,
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
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Ricardo Yañez-Valdez
Ricardo Yañez-Valdez
Department of Mechanical Engineering,
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Search for other works by this author on:
Leonardo Urbiola-Soto
Center for Advanced Technology,
Universidad Nacional Autónoma
de México (UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
e-mail: leourbiola@gmail.com
Universidad Nacional Autónoma
de México (UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
e-mail: leourbiola@gmail.com
Raymundo Santibañez-Santoscoy
Center for Advanced Technology,
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Marcelo López-Parra
Center for Advanced Technology,
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Universidad Nacional Autónoma de México
(UNAM),
Boulevard Juriquilla 3001,
Queretaro 76230, Mexico
Alejandro C. Ramírez-Reivich
Department of Mechanical Engineering,
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Ricardo Yañez-Valdez
Department of Mechanical Engineering,
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
Universidad Nacional Autónoma de México
(UNAM),
Circuito Exterior, Cd. Universitaria,
04510 Distrito Federal, México
1Corresponding author.
Contributed by the Structures and Dynamics Committee of ASME for publication in the JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER. Manuscript received October 8, 2015; final manuscript received June 16, 2016; published online August 2, 2016. Assoc. Editor: Philip Bonello.
J. Eng. Gas Turbines Power. Dec 2016, 138(12): 122502 (10 pages)
Published Online: August 2, 2016
Article history
Received:
October 8, 2015
Revised:
June 16, 2016
Citation
Urbiola-Soto, L., Santibañez-Santoscoy, R., López-Parra, M., Ramírez-Reivich, A. C., and Yañez-Valdez, R. (August 2, 2016). "Rotordynamic Optimization of Fixed Pad Journal Bearings Using Response Surface Design of Experiments." ASME. J. Eng. Gas Turbines Power. December 2016; 138(12): 122502. https://doi.org/10.1115/1.4034066
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