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Original Articles

Thermohydrodynamic Analysis of Laminar Incompressible Journal Bearings

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Pages 141-150 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (16)

Kai Feng, Wenjun Li, Zhihong Deng & Min Zhang. (2017) Thermohydrodynamic Analysis and Thermal Management of Spherical Spiral Groove Gas Bearings. Tribology Transactions 60:4, pages 629-644.
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C. A. Laukiavich, M. J. Braun & A. J. Chandy. (2015) An Investigation into the Thermal Effects on a Hydrodynamic Bearing's Clearance. Tribology Transactions 58:6, pages 980-1001.
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Z.S. Zhang, Y.M. Yang, X.D. Dai & Y.B. Xie. (2013) Effects of Thermal Boundary Conditions on Plain Journal Bearing Thermohydrodynamic Lubrication. Tribology Transactions 56:5, pages 759-770.
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David Orloff, Barry Hojjatie & Frederick Bloom. (1996) Lubrication and Heat Transfer in a Crown-Compensated Press Roll. Tribology Transactions 39:4, pages 745-756.
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RohitS. Paranjpe. (1996) A Study of Dynamically Loaded Engine Bearings Using a Transient Thermohydrodynamic Analysis. Tribology Transactions 39:3, pages 636-644.
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GregoryJ. Kostrzewsky, RonaldD. Flack & LloydE. Barrett. (1996) Comparison Between Measured and Predicted Performance of a Two-Axial-Groove Journal Bearing. Tribology Transactions 39:3, pages 571-578.
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A. Harnoy & M.M. Khonsari. (1996) Hydro-Roll: A Novel Bearing Design with Superior Thermal Characteristics. Tribology Transactions 39:2, pages 455-461.
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Jinsang Kim, AlanB. Palazzolo & RavindraK. Gadangi. (1994) TEHD Analysis for Tilting-Pad Journal Bearings Using Upwind Finite Element Method. Tribology Transactions 37:4, pages 771-783.
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RohitS. Paranjpe & Taeyoung Han. (1994) A Study of the Thermohydrodynamic Performance of Steadily Loaded Journal Bearings. Tribology Transactions 37:4, pages 679-690.
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M.M. Khonsari & S.H. Wang. (1992) Notes on Transient THD Effects in a Lubricating Film. Tribology Transactions 35:1, pages 177-183.
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E. Richard Booser & DonaldF. Wilcock. (1988) Temperature Fade in Journal Bearing Exit Regions. Tribology Transactions 31:4, pages 405-410.
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M.M. Khonsari. (1987) A Review of Thermal Effects in Hydrodynamic Bearings. Part II: Journal Bearings. A S L E Transactions 30:1, pages 26-33.
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Articles from other publishers (61)

Yingying Yun, Bowen Zhao, Jiyuan Sun, Kexin Pu & Bin Huang. (2023) Analysis of lubrication performance and flow field for lead-bismuth bearings considering the temperature-viscosity effect. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology.
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Hao Zhang & Shuyun Jiang. (2023) Study on the static characteristics of high-speed water-lubricated journal bearings considering thermal and cavitation effects. Journal of Physics: Conference Series 2609:1, pages 012012.
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Yon-Do Chun, Jiheon Lee, Jiyoung Lee & Junho Suh. (2022) Thermal Preload for Predicting Performance Change Due to Pad Thermal Deformation of Tilting Pad Journal Bearing. Lubricants 11:1, pages 3.
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Thales Freitas Peixoto, Diogo Stuani Alves, Felipe Wenzel da Silva Tuckmantel, Gregory Bregion Daniel, Tiago Henrique Machado & Katia Lucchesi Cavalca. (2022) Effect of thermal boundary conditions on dynamic characteristics of multi-lobed bearings. Mechanism and Machine Theory 172, pages 104787.
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Nagarjuna Baineni, Nitin Borse & Shriniwas Chippa. (2022) Analysis of Thermoelastohydrodynamic Lubrication of Journal Bearing including the Effect of Surface Roughness and Cavitation. Journal of The Institution of Engineers (India): Series D.
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Karimulla Shaik & B.K. Dutta. (2021) Stability analysis of horizontal symmetric flexible rotor mounted on hydrodynamic bearing and squeeze film damper using analytical approach. Tribology International 158, pages 106924.
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Dongil Shin, Jongin Yang, Xiaomeng Tong, Junho Suh & Alan Palazzolo. (2021) A Review of Journal Bearing Thermal Effects on Rotordynamic Response. Journal of Tribology 143:3.
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Shaoyu Zhu, Jun Sun, Biao Li & Guixiang Zhu. (2020) Thermal turbulent lubrication analysis of rough surface journal bearing with journal misalignment. Tribology International 144, pages 106109.
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Chaoang Xiao & Hesheng Tang. (2020) Elastohydrodynamic lubrication characteristics of surface-textured slipper bearing in an axial piston pump. Journal of the Brazilian Society of Mechanical Sciences and Engineering 42:4.
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Tang Hesheng, Ren Yan & Xiang Jiawei. (2019) Power loss characteristics analysis of slipper pair in axial piston pump considering thermoelastohydrodynamic deformation. Lubrication Science 31:8, pages 381-403.
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Gourav Jamwal, Sanjay Sharma & R.K. Awasthi. (2019) The dynamic performance analysis of chevron shape textured hydrodynamic bearings. Industrial Lubrication and Tribology 72:1, pages 1-8.
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Jean Bouyer, Michel Fillon, Mathieu Helene, Jérôme Beaurain & Célia Giraudeau. (2019) Behavior of a Two-Lobe Journal Bearing With a Scratched Shaft: Comparison Between Theory and Experiment. Journal of Tribology 141:2.
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Thales Freitas Peixoto, Gregory Bregion Daniel & Katia Lucchesi Cavalca. 2019. Proceedings of the 10th International Conference on Rotor Dynamics – IFToMM. Proceedings of the 10th International Conference on Rotor Dynamics – IFToMM 16 31 .
Xiaomeng Tong & Alan Palazzolo. (2018) Measurement and Prediction of the Journal Circumferential Temperature Distribution for the Rotordynamic Morton Effect. Journal of Tribology 140:3.
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Xiaomeng Tong, Alan Palazzolo & Junho Suh. (2017) A Review of the Rotordynamic Thermally Induced Synchronous Instability (Morton) Effect. Applied Mechanics Reviews 69:6.
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Feng Liang, Quanyong Xu & Ming Zhou. (2017) A novel quasi-3D thermodynamic model of oil film bearing with non-Newtonian and temperature-viscosity effects. Industrial Lubrication and Tribology 69:5, pages 638-644.
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Andrea Codrignani, Daniele Savio, Franco Magagnato & Bettina Frohnapfel. (2017) A scaling parameter for pressure losses and thermal effects in lubricant flows with viscous dissipation. Tribology International 113, pages 238-244.
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Michael M. Khonsari & E. Richard Booser. 2017. Applied Tribology: Bearing Design and Lubrication. Applied Tribology: Bearing Design and Lubrication 329 372 .
Michael M. Khonsari & E. Richard Booser. 2017. Applied Tribology: Bearing Design and Lubrication. Applied Tribology: Bearing Design and Lubrication 221 253 .
Michael M. Khonsari & E. Richard Booser. 2017. Applied Tribology: Bearing Design and Lubrication. Applied Tribology: Bearing Design and Lubrication 189 219 .
Michael M. Khonsari & E. Richard Booser. 2017. Applied Tribology: Bearing Design and Lubrication. Applied Tribology: Bearing Design and Lubrication 159 188 .
Alireza Arab Solghar. (2015) Three-dimensional hydrodynamic analysis of journal bearings using lattice Boltzmann method. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 230:7, pages 817-826.
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J. K. Wang & M. M. Khonsari. 2016. Thermohydrodynamic Instability in Fluid-Film Bearings. Thermohydrodynamic Instability in Fluid-Film Bearings 63 90 .
Joon Jang & Michael Khonsari. (2015) On the Characteristics of Misaligned Journal Bearings. Lubricants 3:1, pages 27-53.
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H. Shahmohamadi, R. Rahmani, H. Rahnejat, C. P. Garner & D. Dowson. (2015) Big End Bearing Losses with Thermal Cavitation Flow Under Cylinder Deactivation. Tribology Letters 57:1.
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Guo Hui Xu, Jian Zhou, Hai Peng Geng & Ming Jian Lu. (2014) Fault Analysis of Journal Bearing Considering the Turbulent and Thermo-Hydrodynamic Effects. Applied Mechanics and Materials 670-671, pages 638-645.
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Junho Suh & Alan Palazzolo. (2014) Three-Dimensional Thermohydrodynamic Morton Effect Simulation—Part I: Theoretical Model. Journal of Tribology 136:3.
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Dhaneshwar Prasad, S. S. Panda & S. V. Subrahmanyam. 2014. Proceedings of International Conference on Advances in Tribology and Engineering Systems. Proceedings of International Conference on Advances in Tribology and Engineering Systems 73 84 .
S. Boubendir, S. Larbi & R. Bennacer. (2011) Numerical study of the thermo-hydrodynamic lubrication phenomena in porous journal bearings. Tribology International 44:1, pages 1-8.
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J. Y. Jang & M. M. Khonsari. (2010) On the Behavior of Misaligned Journal Bearings Based on Mass-Conservative Thermohydrodynamic Analysis. Journal of Tribology 132:1.
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B Maneshian & S A Gandjalikhan Nassab. (2009) Thermohydrodynamic analysis of turbulent flow in journal bearings running under different steady conditions. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 223:8, pages 1115-1127.
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L. Roy. (2009) Thermo-hydrodynamic performance of grooved oil journal bearing. Tribology International 42:8, pages 1187-1198.
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Kai Feng & Shigehiko Kaneko. (2009) Thermohydrodynamic Study of Multiwound Foil Bearing Using Lobatto Point Quadrature. Journal of Tribology 131:2.
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Kyuho Sim & Daejong Kim. (2008) Thermohydrodynamic Analysis of Compliant Flexure Pivot Tilting Pad Gas Bearings. Journal of Engineering for Gas Turbines and Power 130:3.
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Daquan LiuWen ZhangTiesheng Zheng. (2008) A Simplified One-Dimensional Thermal Model for Journal Bearings. Journal of Tribology 130:1.
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L Jeddi, M El Khlifi & D Bonneau. (2005) Thermohydrodynamic Analysis for a Hydrodynamic Journal Bearing Groove. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 219:4, pages 263-274.
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J Y Jang & M M Khonsari. (2005) Design of bearings on the basis of thermohydrodynamic analysis. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 218:5, pages 355-363.
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L Costa, A. S. Miranda, M Fillon & J. C. P. Claro. (2005) An analysis of the influence of oil supply conditions on the thermohydrodynamic performance of a single-groove journal bearing. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 217:2, pages 133-144.
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X-L Wang, K-Q Zhu & C-L Gui. (2005) A study of a journal bearing lubricated by couple stress fluids considering thermal and cavitation effects. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 216:5, pages 293-305.
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S A Gandjalikhan Nassab & M. S. Moayeri. (2005) Three-dimensional thermohydrodynamic analysis of axially grooved journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 216:1, pages 35-47.
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Xiao-Li Wang, Ke-Qin Zhu & Shi-Zhu Wen. (2001) Thermohydrodynamic analysis of journal bearings lubricated with couple stress fluids. Tribology International 34:5, pages 335-343.
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I Pierre & M Fillon. (2005) Influence of geometric parameters and operating conditions on the thermohydrodynamic behaviour of plain journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 214:5, pages 445-457.
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B. Kucinschi & M. Fillon. (1999) An Experimental Study of Transient Thermal Effects in a Plain Journal Bearing. Journal of Tribology 121:2, pages 327-332.
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S.S. Banwait & H.N. Chandrawat. (1998) Study of thermal boundary conditions for a plain journal bearing. Tribology International 31:6, pages 289-296.
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J. Y. Jang & M. M. Khonsari. (1997) Performance Analysis of Grease-Lubricated Journal Bearings Including Thermal Effects. Journal of Tribology 119:4, pages 859-868.
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J. Y. Jang & M. M. Khonsari. (1997) Thermohydrodynamic Design Charts for Slider Bearings. Journal of Tribology 119:4, pages 733-740.
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D. J. Radakovic & M. M. Khonsari. (1997) Heat Transfer in a Thin-Film Flow in the Presence of Squeeze and Shear Thinning: Application to Piston Rings. Journal of Heat Transfer 119:2, pages 249-257.
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M. M. Khonsari, J. Y. Jang & M. Fillon. (1996) On the Generalization of Thermohydrodynamic Analyses for Journal Bearings. Journal of Tribology 118:3, pages 571-579.
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D. Vijayaraghavan. (1996) An Efficient Numerical Procedure for Thermohydrodynamic Analysis of Cavitating Bearings. Journal of Tribology 118:3, pages 555-563.
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R. K. Gadangi, A. B. Palazzolo & J. Kim. (1996) Transient Analysis of Plain and Tilt Pad Journal Bearings Including Fluid Film Temperature Effects. Journal of Tribology 118:2, pages 423-430.
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M. Fillon & M. Khonsari. (1996) Thermohydrodynamic Design Charts for Tilting-Pad Journal Bearings. Journal of Tribology 118:1, pages 232-238.
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Rohit S. Paranjpe & Taeyoung Han. (1995) A Transient Thermohydrodynamic Analysis Including Mass Conserving Cavitation for Dynamically Loaded Journal Bearings. Journal of Tribology 117:3, pages 369-378.
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T. P. Indulekha, M. L. Joy & K. Prabhakaran Nair. (1994) Fluid flow and thermal analysis of a circular journal bearingUntersuchung des Strömungs- und Temperaturverhaltens eines Wellenlagers. Wärme- und Stoffübertragung 29:6, pages 367-371.
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Y. Nagaraju, M.L. Joy & K.Prabhakaran Nair. (1994) Thermohydrodynamic analysis of a two-lobe journal bearing. International Journal of Mechanical Sciences 36:3, pages 209-217.
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M. Fillon, J. Frene & R. Boncompain. 1987. Fluid Film Lubrication – Osborne Reynolds Centenary, Proceedings of the 13th Leeds–Lyon Symposium on Tribology, held in Bodington Hall, The University of Leeds. Fluid Film Lubrication – Osborne Reynolds Centenary, Proceedings of the 13th Leeds–Lyon Symposium on Tribology, held in Bodington Hall, The University of Leeds 27 47 .
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