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Original Articles

Three-Dimensional Computations of Rotordynamic Force Distributions in a Labyrinth Seal

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Pages 461-469 | Published online: 25 Mar 2008

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Read on this site (2)

Gordon Kirk & Rui Gao. (2012) Influence of Preswirl on Rotordynamic Characteristics of Labyrinth Seals. Tribology Transactions 55:3, pages 357-364.
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R.G. Kirk & Z. Guo. (2009) Influence of Leak Path Friction on Labyrinth Seal Inlet Swirl. Tribology Transactions 52:2, pages 139-145.
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Articles from other publishers (17)

V. A. Futin & S. S. Evgeniev. The method for calculating circulating gas-dynamic forces in labyrinth seals installed between the opposite impellers of high-pressure centrifugal compressors. The method for calculating circulating gas-dynamic forces in labyrinth seals installed between the opposite impellers of high-pressure centrifugal compressors.
E. Saber, Khaled M. Abdou & R. Afify. (2020) Effect of shaft eccentricity on dynamic characteristics for different geometries of stationary labyrinth seals. Alexandria Engineering Journal 59:1, pages 61-75.
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Tomohiko Tsukuda, Toshio Hirano, Cori Watson, Neal R. Morgan, Brian K. Weaver & Houston G. Wood. (2018) A Numerical Investigation of the Effect of Inlet Preswirl Ratio on Rotordynamic Characteristics of Labyrinth Seal. Journal of Engineering for Gas Turbines and Power 140:8.
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L. H. Cao, J. X. Wang, P. Li, P. F. Hu & Y. Li. (2017) Numerical Analysis on Steam Exciting Force Caused by Rotor Eccentricity. Shock and Vibration 2017, pages 1-9.
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R.G. Kirk & R. Gao. 2012. 10th International Conference on Vibrations in Rotating Machinery. 10th International Conference on Vibrations in Rotating Machinery 467 476 .
Ma Wensheng, Chen Zhaobo & Jiao Yinghou. (2011) Leakage and whirl speed study in labyrinth seal using CFD. Leakage and whirl speed study in labyrinth seal using CFD.
R. Gordon Kirk. 2011. IUTAM Symposium on Emerging Trends in Rotor Dynamics. IUTAM Symposium on Emerging Trends in Rotor Dynamics 1 11 .
L. di Mare, M. Imregun, J. S. Green & A. I. Sayma. (2010) A Numerical Study of Labyrinth Seal Flutter. Journal of Tribology 132:2.
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Toshio HIRANO, Takashi SASAKI, Hitoshi SAKAKIDA, Tatsuro UCHIDA, Masaji TSUTSUI & Kazunori IKEDA. (2008) Evaluation of Rotordynamic Stability of a Steam Turbine Due to Labyrinth Seal Force. Journal of Power and Energy Systems 2:3, pages 945-955.
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Toshio Hirano, Takashi Sasaki, Hitoshi Sakakida, Tatsuro Uchida, Masaji Tsutsui & Kazunori Ikeda. 2007. Challenges of Power Engineering and Environment. Challenges of Power Engineering and Environment 361 367 .
Toshio Hirano, Zenglin Guo & R. Gordon Kirk. (2005) Application of Computational Fluid Dynamics Analysis for Rotating Machinery—Part II: Labyrinth Seal Analysis. Journal of Engineering for Gas Turbines and Power 127:4, pages 820-826.
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Diangui Huang & Xuesong Li. (2005) Rotordynamic characteristics of a rotor with labyrinth gas seals. Part 1: comparison with Childs’ experiments. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 218:3, pages 171-177.
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Mihai Arghir & Jean Frene. (2004) A Bulk-Flow Analysis of Static and Dynamic Characteristics of Eccentric Circumferentially-Grooved Liquid Annular Seals. Journal of Tribology 126:2, pages 316-325.
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J. J. Moore & A. B. Palazzolo. (2001) Rotordynamic Force Prediction of Whirling Centrifugal Impeller Shroud Passages Using Computational Fluid Dynamic Techniques. Journal of Engineering for Gas Turbines and Power 123:4, pages 910-918.
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J. Jeffrey Moore & Alan B. Palazzolo. (1999) CFD Comparison to 3D Laser Anemometer and Rotordynamic Force Measurements for Grooved Liquid Annular Seals. Journal of Tribology 121:2, pages 306-314.
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Mihai Arghir & Jean Freˆne. (1997) Rotordynamic Coefficients of Circumferentially-Grooved Liquid Seals Using the Averaged Navier-Stokes Equations. Journal of Tribology 119:3, pages 556-567.
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Z. Guo, D. L. Rhode & F. M. Davis. (1996) Computed Eccentricity Effects on Turbine Rim Seals at Engine Conditions With a Mainstream. Journal of Turbomachinery 118:1, pages 143-152.
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