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1
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0025051692
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Measurement and Calculation of the Dynamic Operating Characteristics of the Five Shoe, Tilting Pad Journal Bearing
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Brockwell, K.1
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2
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0002563093
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An Experimental Investigation of the Thermal Equilibrium of Steadily Loaded Journal Bearings
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67a
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Dowson, D., Hudson, J. D., Hunter, B., and March, C. N., 1966-67a, “An Experimental Investigation of the Thermal Equilibrium of Steadily Loaded Journal Bearings,” Proceedings, Instn Mechanical Engineers, Vol. 181, Part 3B, pp. 70-80.
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Dowson, D.1
Hudson, J.D.2
Hunter, B.3
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3
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0001152921
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A Thermohydrodynamic Analysis of Journal Bearings
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67b
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Dowson, D., and March, C. N., 1966-67b, “A Thermohydrodynamic Analysis of Journal Bearings,” Proceedings, Instn Mechanical Engineers, Vol. 181, Part 30, pp. 117-126.
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March, C.N.2
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4
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0026804286
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A Thermohydrodynamic Analysis of a Twin Axial Groove Groove Bearing Under Different Loading Directions and Comparison with Experiment
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El-Deihi, M. K. I. and Gethin, D, T., 1992, “A Thermohydrodynamic Analysis of a Twin Axial Groove Groove Bearing Under Different Loading Directions and Comparison with Experiment,” ASME Journal of Tribology, Vol. 114, pp. 304-310.
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(1992)
ASME Journal of Tribology
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El-Deihi, M.K.I.1
Gethin, D.2
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5
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85025183585
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Observation of Pressure Variation in the Cavitation Region of Submerged Journal Bearings
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Etsion, I. and Ludwig, L. P., 1982, “Observation of Pressure Variation in the Cavitation Region of Submerged Journal Bearings,” ASME Journal of Lubrication Technology, Vol. 104, pp. 357-363.
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(1982)
ASME Journal of Lubrication Technology
, vol.104
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Etsion, I.1
Ludwig, L.P.2
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6
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0026898228
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Experimental Study of Tilting-Pad Journal Bearings-Comparison with Theoretical Thermoelastohydrodynamic Results
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Fillon, M., Bliboud, J-C., and Frêne, J., 1992, “Experimental Study of Tilting-Pad Journal Bearings-Comparison with Theoretical Thermoelastohydrodynamic Results,” ASME Journal of Tribology, Vol. 114, pp. 579-588.
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(1992)
ASME Journal of Tribology
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Fillon, M.1
Bliboud, J.-C.2
Frêne, J.3
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7
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0025456654
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A Finite Volume Analysis of the Thermohydrodynamic Performance of Finite Journal Bearings
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Han, T. and Paranjpe, R. S., 1990, “A Finite Volume Analysis of the Thermohydrodynamic Performance of Finite Journal Bearings,” ASME Journal of Tribology, Vol. 112, pp. 557-566.
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(1990)
ASME Journal of Tribology
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Han, T.1
Paranjpe, R.S.2
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8
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0020780497
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High-Speed Motion Picture Camera Experiments of Cavitation in Dynamically Loaded Journal Bearings
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Jacobson, B. O., and Hamrock, B. J., 1983, “High-Speed Motion Picture Camera Experiments of Cavitation in Dynamically Loaded Journal Bearings,” ASME Journal of Lubrication Technology, Vol. 105, pp. 446-452.
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(1983)
ASME Journal of Lubrication Technology
, vol.105
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Jacobson, B.O.1
Hamrock, B.J.2
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9
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0028138040
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The Synchronous Instability of a Compressor Rotor due to Bearing Journal Differential Heating
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The Hague, Netherlands, Paper 94-GT-35
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de Jongh, F. M., and Morton, P. G., 1994, “The Synchronous Instability of a Compressor Rotor due to Bearing Journal Differential Heating,” ASME Ini. Gas Turbine and Aeroengine Cong, and Exp., The Hague, Netherlands, Paper 94-GT-35.
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(1994)
ASME Ini. Gas Turbine and Aeroengine Cong, and Exp
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De Jongh, F.M.1
Morton, P.G.2
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10
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0042365013
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Journal Bearing Differential Heating Evaluation with Influence on Rotor Dynamic Behaviour
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Keogh, P. S., and Morton, P. G., 1993, “Journal Bearing Differential Heating Evaluation with Influence on Rotor Dynamic Behaviour,” Proceedings Roy. Soc. Lond., Series A, Vol. 441, pp. 527-548.
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Keogh, P.S.1
Morton, P.G.2
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11
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0020835242
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An Approximate Solution Technique for Multilobe Journal Bearings Including Thermal Effects with Comparison to Experiment
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Knight, J. D., and Barrett, L. E., 1983, “An Approximate Solution Technique for Multilobe Journal Bearings Including Thermal Effects with Comparison to Experiment,” ASLE Transactions, Vol. 26, pp. 501-508.
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, vol.26
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Knight, J.D.1
Barrett, L.E.2
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12
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0026634539
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Effects of modified effective length models of the rupture zone on the analysis of a fluid journal bearing
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Knight, J. D., and Ghadimi, P., 1992, “Effects of modified effective length models of the rupture zone on the analysis of a fluid journal bearing,” STLE Tribology Transactions, Vol, 35, pp. 29-36.
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Knight, J.D.1
Ghadimi, P.2
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13
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0025419713
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Effects of two film rupture models on the thermal analysis of journal bearings
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Knight, J. D., and Niewiarowski, A. J., 1990, “Effects of two film rupture models on the thermal analysis of journal bearings,” ASME Journal of Tribology, Vol. 112, pp. 183-188.
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(1990)
ASME Journal of Tribology
, vol.112
, pp. 183-188
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Knight, J.D.1
Niewiarowski, A.J.2
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14
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0021406575
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An Approximate Analysis of the Temperature Conditions in a Journal Bearing. Part I: Theory
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Lund, J. W., and Hansen, P. K., 1984, “An Approximate Analysis of the Temperature Conditions in a Journal Bearing. Part I: Theory,” ASME Journal of Tribology, Vol. 106, pp. 228-236.
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(1984)
ASME Journal of Tribology
, vol.106
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Lund, J.W.1
Hansen, P.K.2
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15
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0021406574
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An Approximate Analysis of the Temperature Conditions in a Journal Bearing. Part II: Application
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Lund, J. W., and Tonnesen, J., 1984, “An Approximate Analysis of the Temperature Conditions in a Journal Bearing. Part II: Application,” ASME Journal of Tribology, Vol. 106, pp. 237-245.
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(1984)
ASME Journal of Tribology
, vol.106
, pp. 237-245
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Lund, J.W.1
Tonnesen, J.2
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16
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0020330263
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A Study of the Lubricant Film Characteristics of Journal Bearings (Part 2, Effects of Various Design Parameters on Thermal Characteristics of Journal Bearings
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Mitsui, J., 1982, “A Study of the Lubricant Film Characteristics of Journal Bearings (Part 2), Effects of Various Design Parameters on Thermal Characteristics of Journal Bearings,” Bull JSME, Vol. 25, No. 210, pp. 2010-2017.
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(1982)
Bull JSME
, vol.25
, Issue.210
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Mitsui, J.1
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17
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0028713083
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A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded Journal Bearings
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Hawaii, Paper 94-Trib-36
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Paranjpe, R. S., and Han, T., 1994, “A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded Journal Bearings,” STLE/ASME Tribology Conf., Hawaii, Paper 94-Trib-36.
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(1994)
STLE/ASME Tribology Conf
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Paranjpe, R.S.1
Han, T.2
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20
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0027498119
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Thermal Effects in Cryogenic Liquid Annular Seals-Part II: Numerical Solution and Results
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San Andres, L., Yang, Z., and Childs, D. W. 1993, “Thermal Effects in Cryogenic Liquid Annular Seals-Part II: Numerical Solution and Results,” ASME Journal of Tribology, Vol. 116, pp. 277-284.
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(1993)
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San Andres, L.1
Yang, Z.2
Childs, D.W.3
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21
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84969116971
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A Thermohydrodynamic Analysis of Journal Bearings
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Suganami, T., and Szeri, A. Z., 1979, “A Thermohydrodynamic Analysis of Journal Bearings,” ASME Journal of Lubrication Technology, Vol. 101, pp. 21-27.
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Suganami, T.1
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22
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0027148427
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Simultaneous Pressure Measurement and High-Speed Photography Study of Cavitation in a Dynamically Loaded Journal Bearing
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Sun, D. C., Brewe, D. E., and Abel, P. B., 1993, “Simultaneous Pressure Measurement and High-Speed Photography Study of Cavitation in a Dynamically Loaded Journal Bearing,” ASME Journal of Tribology, Vol. 115, pp. 88-95.
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(1993)
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Sun, D.C.1
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23
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0019369463
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Some Experiments on the Steady State Characteristics of a Cylindrical Fluid-Film Bearing Considering Thermal Effects
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Tonnesen, J., and Hansen, P. K., 1981, “Some Experiments on the Steady State Characteristics of a Cylindrical Fluid-Film Bearing Considering Thermal Effects,” ASME Journal of Lubrication Technology, Vol. 103, pp. 107-114.
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, vol.103
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Tonnesen, J.1
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0029137121
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A Generalised CFD Approach for Journal Bearing Performance Prediction
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Tucker, P. G., and Keogh, P. S., 1995, “A Generalised CFD Approach for Journal Bearing Performance Prediction,” Proceedings, Instn Mechanical Engineers, Journal of Tribology, Vol. 209, Part J, pp. 99-108.
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(1995)
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, vol.209
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Tucker, P.G.1
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25
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0021412675
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Enhancement of the SIMPLE method for predicting incompressible fluid flows
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Van Doormaal, J. P., and Raithby, G. D., 1984, “Enhancement of the SIMPLE method for predicting incompressible fluid flows,” Numerical Heat Transfer, Vol. 7, pp. 147-163.
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Numerical Heat Transfer
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