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      Nonlinear dynamic analysis of a relatively short spherical gas journal bearing system

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      https://www.riss.kr/link?id=A103787923

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      다국어 초록 (Multilingual Abstract)

      This paper studies the nonlinear dynamic behavior and bifurcation of a rigid rotor supported by two relatively short spherical gas journal bearings. The modified Reynolds equation is solved by a hybrid numerical method combining the differential trans...

      This paper studies the nonlinear dynamic behavior and bifurcation of a rigid rotor supported by two relatively short spherical gas journal bearings. The modified Reynolds equation is solved by a hybrid numerical method combining the differential transformation method (DTM) and the finite difference method (FDM). The analytical results reveal a complex dynamic behavior comprising periodic, subharmonic and quasi-periodic responses as the rotor mass and bearing number are increased. The results obtained using the hybrid DTM&FDM scheme are found to be in good agreement with those of a hybrid scheme comprising the successive over relaxation (SOR)method and the FDM scheme. Therefore, the DTM&FDM method provides an effective means of gaining insights into the nonlinear dynamics of relatively short spherical gas rotor-bearing systems.

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      참고문헌 (Reference)

      1 C. C. Wang, "Theoretical and nonlinear behavior analysis of a flexible rotor supported by a relative short herringbonegrooved gas journal-bearing system" 237 : 2282-2295, 2008

      2 C. C. Wang, "Theoretical analysis of the non-linear behavior of a flexible rotor supported by herringbone grooved gas journal bearings" 40 : 533-541, 2007

      3 J. Y. Zhao, "Subharmonic and quasi-periodic motion of an eccentric squeeze film dampermounted rigid rotor" 116 : 357-363, 1994

      4 W. A. Gross, "Perturbation solutions for gas-lubricating film" 83 : 139-144, 1961

      5 X. H. Li, "Nonsynchronous motion of squeeze-film damper systems" 109 : 169-176, 1987

      6 C. C. Wang, "Nonlinear dynamic behavior and bifurcation analysis of a rigid rotor supported by a relatively short externally pressurized porous gas journal bearing system" 183 : 41-60, 2006

      7 J. I. Nikolajsen, "Investigation of squeeze-film isolators for the vibration control of a flexible rotor," 21 (21): 247-252, 1979

      8 F. F. Ehrich, "High order subharmonic response of high speed rotor in bearing clearance, stress and reliability in design" 110 : 9-16, 1988

      9 G. Adiletta, "Chaotic motions of a rigid rotor in short journal bearings" 10 : 251-269, 1996

      10 C. C. Wang, "Chaotic analysis and control of microcandilevers with PD feedback using differential transformation method" 10 : 425-444, 2009

      1 C. C. Wang, "Theoretical and nonlinear behavior analysis of a flexible rotor supported by a relative short herringbonegrooved gas journal-bearing system" 237 : 2282-2295, 2008

      2 C. C. Wang, "Theoretical analysis of the non-linear behavior of a flexible rotor supported by herringbone grooved gas journal bearings" 40 : 533-541, 2007

      3 J. Y. Zhao, "Subharmonic and quasi-periodic motion of an eccentric squeeze film dampermounted rigid rotor" 116 : 357-363, 1994

      4 W. A. Gross, "Perturbation solutions for gas-lubricating film" 83 : 139-144, 1961

      5 X. H. Li, "Nonsynchronous motion of squeeze-film damper systems" 109 : 169-176, 1987

      6 C. C. Wang, "Nonlinear dynamic behavior and bifurcation analysis of a rigid rotor supported by a relatively short externally pressurized porous gas journal bearing system" 183 : 41-60, 2006

      7 J. I. Nikolajsen, "Investigation of squeeze-film isolators for the vibration control of a flexible rotor," 21 (21): 247-252, 1979

      8 F. F. Ehrich, "High order subharmonic response of high speed rotor in bearing clearance, stress and reliability in design" 110 : 9-16, 1988

      9 G. Adiletta, "Chaotic motions of a rigid rotor in short journal bearings" 10 : 251-269, 1996

      10 C. C. Wang, "Chaotic analysis and control of microcandilevers with PD feedback using differential transformation method" 10 : 425-444, 2009

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