Gas Foil Bearings with Radial Injection: Multi-domain Stability Analysis and Unbalance Response
暂无分享,去创建一个
[1] Marc Carpino,et al. Effects of Membrane Stresses in the Prediction of Foil Bearing Performance , 1994 .
[2] S. E. Zarantonello,et al. A note on piecewise linear and multilinear table interpolation in many dimensions , 1988 .
[3] Jean Frene,et al. Finite-volume solution of the compressible Reynolds equation: Linear and non-linear analysis of gas bearings , 2006 .
[4] Timothy A. Davis,et al. Algorithm 907 , 2010 .
[5] Konrad Wegener,et al. Centrally fed orifice based active aerostatic bearing with quasi-infinite static stiffness and high servo compliance , 2019 .
[6] Yu Ping Wang,et al. Experimental Identification of Force Coefficients of Large Hybrid Air Foil Bearings , 2013 .
[7] Marc Carpino,et al. Theoretical Performance of a Hydrostatic Foil Bearing , 1994 .
[8] Donghyun Lee,et al. Design of Three-Pad Hybrid Air Foil Bearing and Experimental Investigation on Static Performance at Zero Running Speed , 2010 .
[9] Daejong Kim,et al. Foil Gas Bearing With Compression Springs: Analyses and Experiments , 2006 .
[10] A Eshel. Foil Bearing Investigation. Numerical Solution of the Planar Hydrostatic Foil Bearing. , 1977 .
[11] Daejong Kim,et al. Start-Stop Characteristics and Thermal Behavior of a Large Hybrid Airfoil Bearing For Aero-Propulsion Applications , 2012 .
[12] Donghyun Lee,et al. Design and Performance Prediction of Hybrid Air Foil Thrust Bearings , 2011 .
[13] Stefano Morosi,et al. Active lubrication applied to radial gas journal bearings. Part 1: Modeling , 2011 .
[14] Yeau-Ren Jeng,et al. Numerical analysis of discharge coefficients in aerostatic bearings with orifice-type restrictors , 2015 .
[15] Young Cheol Kim,et al. Experimental Feasibility Study of Radial Injection Cooling of Three-Pad Air Foil Bearings , 2013 .
[17] Donglin Zou,et al. A numerical method for solution of the discharge coefficients in externally pressurized gas bearings with inherent orifice restrictors , 2018, Tribology International.
[18] Terenziano Raparelli,et al. Discharge coefficients of orifice-type restrictor for aerostatic bearings , 2007 .
[19] Yoon Keun Kwak,et al. A linear air bearing stage with active magnetic preloads for ultraprecise straight motion , 2010 .
[20] Adolfo Delgado,et al. Dynamic Force Coefficients of Hydrostatic Gas Films for Recessed Flat Plates: Experimental Identification and Analytical Predictions , 2018 .
[21] Z-S Liu,et al. Performance analysis of rotating externally pressurized air bearings , 2009 .
[22] Ilmar F. Santos,et al. Stability of rigid rotors supported by air foil bearings: Comparison of two fundamental approaches , 2016 .
[23] Ilmar F. Santos,et al. Steady state characteristics of an adjustable hybrid gas bearing – Computational fluid dynamics, modified Reynolds equation and experimental validation , 2015 .
[24] P. Bonello. The extraction of Campbell diagrams from the dynamical system representation of a foil-air bearing rotor model , 2019, Mechanical Systems and Signal Processing.
[25] Carol S. Woodward,et al. Enabling New Flexibility in the SUNDIALS Suite of Nonlinear and Differential/Algebraic Equation Solvers , 2020, ACM Trans. Math. Softw..
[26] Daejong Kim,et al. Rotordynamic Performance of Hybrid Air Foil Bearings With Regulated Hydrostatic Injection , 2017 .
[27] Ilmar F. Santos,et al. Controllable sliding bearings and controllable lubrication principles-an overview , 2018 .
[28] Adolfo Delgado,et al. Dynamic Characterization of a Novel Externally Pressurized Compliantly Damped Gas-Lubricated Bearing With Hermetically Sealed Squeeze Film Damper Modules , 2018, Journal of Engineering for Gas Turbines and Power.
[29] Daejong Kim,et al. Hybrid Air Foil Bearings With External Pressurization , 2006 .
[30] Ilmar F. Santos,et al. Experimental Grey Box Model Identification and Control of an Active Gas Bearing , 2015 .
[31] Kenji Goto,et al. Active inherent restrictor for air-bearing spindles , 1996 .
[32] Kevin C. Radil,et al. Air Injection as a Thermal Management Technique for Radial Foil Air Bearings , 2011 .
[33] Farid Al-Bender,et al. On the modelling of the dynamic characteristics of aerostatic bearing films: From stability analysis to active compensation , 2009 .
[34] Ilmar F. Santos,et al. On the Numerical Simulation of Nonlinear Transient Behavior of Compliant Air Foil Bearings , 2015 .
[35] Mihai Arghir,et al. Comparison Between Numerical and Experimental Dynamic Coefficients of a Hybrid Aerostatic Bearing , 2012 .
[36] D. Cleaver,et al. An Advanced Single-Stage Turbine Facility for Investigating Nonaxisymmetric Contoured Endwalls in the Presence of Purge Flow , 2019, Journal of Engineering for Gas Turbines and Power.
[37] Jyh-Chyang Renn,et al. Experimental and CFD study on the mass flow-rate characteristic of gas through orifice-type restrictor in aerostatic bearings , 2004 .
[38] Antonio Andreini,et al. Numerical Characterization of Aerodynamic Losses of Jet Arrays for Gas Turbine Applications , 2012 .
[39] Ilmar F. Santos,et al. Lateral vibration control of a flexible overcritical rotor via an active gas bearing – Theoretical and experimental comparisons , 2016 .
[40] Adolfo Delgado,et al. Compliant Hybrid Gas Bearing Using Modular Hermetically Sealed Squeeze Film Dampers , 2018, Journal of Engineering for Gas Turbines and Power.
[41] Zhi-Yang Guo,et al. Characterization of a controllable stiffness foil bearing with shape memory alloy springs , 2019, Tribology International.
[42] F. Al-Bender,et al. Development of improved externally pressurized gas bearings , 1987 .
[43] Zhi-Yang Guo,et al. Experimental and theoretical investigation of rotordynamic characteristics of a rigid rotor supported by an active bump-type foil bearing , 2020 .
[44] Jennifer A. Scott,et al. A fast and robust mixed-precision solver for the solution of sparse symmetric linear systems , 2010, TOMS.
[45] Ilmar F. Santos,et al. Active lubrication applied to radial gas journal bearings. Part 2: Modelling improvement and experimental validation , 2016 .
[46] Yujie Zhou,et al. A hybrid approach to the numerical solution of air flow field in aerostatic thrust bearings , 2016 .
[47] Terenziano Raparelli,et al. Diaphragm valve-controlled air thrust bearing , 2017 .
[48] Kai Cheng,et al. CFD based investigation on influence of orifice chamber shapes for the design of aerostatic thrust bearings at ultra-high speed spindles , 2015 .
[49] Randolph E. Bank,et al. Sparse matrix multiplication package (SMMP) , 1993, Adv. Comput. Math..
[50] Manish Kumar,et al. Parametric Studies on Dynamic Performance of Hybrid Airfoil Bearing , 2008 .
[51] Dong-Chul Han,et al. A study on the characteristics of externally pressurized air bearings , 1994 .
[52] I. Santos,et al. Multi-domain stability and modal analysis applied to Gas Foil Bearings: Three approaches , 2020 .
[53] Ilmar F. Santos,et al. A fully coupled air foil bearing model considering friction - Theory & experiment , 2017 .
[54] Yuan Kang,et al. The comparison in stability of rotor-aerostatic bearing system compensated by orifices and inherences , 2010 .
[55] J. W. Lund. The Hydrostatic Gas Journal Bearing With Journal Rotation and Vibration , 1964 .
[56] W. Brian Rowe,et al. Basic Flow Theory , 2013 .
[57] Ilmar F. Santos,et al. On the nonlinear steady-state response of rigid rotors supported by air foil bearings—Theory and experiments , 2015 .
[58] Ilmar Santos,et al. Experimental and theoretical analysis of a rigid rotor supported by air foil bearings , 2015 .
[59] M. T. Neves,et al. Discharge coefficient influence on the performance of aerostatic journal bearings , 2010 .
[60] Tomasz Pronobis,et al. Comparison of stability limits obtained by time integration and perturbation approach for Gas Foil Bearings , 2019, Journal of Sound and Vibration.
[61] Philip Bonello,et al. The efficient computation of the nonlinear dynamic response of a foil–air bearing rotor system , 2014 .