Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects

Tribologists have generally accepted that the dynamic modeling of tilting-pad journal bearings (TPJB) must consider the frequency dependency of the dynamic properties. Industrial compressors, turbines, and other rotating machines are subjected to instability drivers, such as blades, impellers, and s...

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Main Authors: Laurence F. Wagner, Paul E. Allaire
Format: Article
Language:English
Published: MDPI AG 2022-02-01
Series:Lubricants
Subjects:
Online Access:https://www.mdpi.com/2075-4442/10/2/20
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author Laurence F. Wagner
Paul E. Allaire
author_facet Laurence F. Wagner
Paul E. Allaire
author_sort Laurence F. Wagner
collection DOAJ
description Tribologists have generally accepted that the dynamic modeling of tilting-pad journal bearings (TPJB) must consider the frequency dependency of the dynamic properties. Industrial compressors, turbines, and other rotating machines are subjected to instability drivers, such as blades, impellers, and seals, leading to dominant vibratory frequencies that are generally quite different from rotational frequency. Though the literature has provided related methods and numerical results, full understanding of the physics of TPJB frequency dependency is not generally available to the design community, and theorists and experimentalists are often not in agreement. This investigation hinges on a single-pad, two degree-of-freedom model that creates a basis for understanding the various geometries and operating conditions related to frequency dependency for a full bearing. The analytical results indicate that both stiffness and damping coefficients show frequency dependency, and that the dependency is primarily associated with the pad rotational damping and the flexibility of the pivot contact region that provides support for the pad. Understanding the role of pivot flexibility in combination with the fluid film provides a key to improving agreement between theory and experiment. This article is a revised and expanded version of the paper presented at the ASME 2019 Turbo Expo in Phoenix, Arizona from 17 to 21 June. The paper number was GT2019-90195 and it was titled “On the Frequency Dependency of Tilting-Pad Journal Bearings”.
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spelling doaj.art-f6b97831066e4854b7ea3f578e1569b22023-11-23T20:47:38ZengMDPI AGLubricants2075-44422022-02-011022010.3390/lubricants10020020Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility EffectsLaurence F. Wagner0Paul E. Allaire1Rotor Bearing Solutions Intl. LLC, 5211 Mountainview Rd., Winston Salem, NC 27104, USARotor Bearing Solutions Intl. LLC, 5211 Mountainview Rd., Winston Salem, NC 27104, USATribologists have generally accepted that the dynamic modeling of tilting-pad journal bearings (TPJB) must consider the frequency dependency of the dynamic properties. Industrial compressors, turbines, and other rotating machines are subjected to instability drivers, such as blades, impellers, and seals, leading to dominant vibratory frequencies that are generally quite different from rotational frequency. Though the literature has provided related methods and numerical results, full understanding of the physics of TPJB frequency dependency is not generally available to the design community, and theorists and experimentalists are often not in agreement. This investigation hinges on a single-pad, two degree-of-freedom model that creates a basis for understanding the various geometries and operating conditions related to frequency dependency for a full bearing. The analytical results indicate that both stiffness and damping coefficients show frequency dependency, and that the dependency is primarily associated with the pad rotational damping and the flexibility of the pivot contact region that provides support for the pad. Understanding the role of pivot flexibility in combination with the fluid film provides a key to improving agreement between theory and experiment. This article is a revised and expanded version of the paper presented at the ASME 2019 Turbo Expo in Phoenix, Arizona from 17 to 21 June. The paper number was GT2019-90195 and it was titled “On the Frequency Dependency of Tilting-Pad Journal Bearings”.https://www.mdpi.com/2075-4442/10/2/20bearingstilting-paddynamiccoefficientsfrequencystiffness
spellingShingle Laurence F. Wagner
Paul E. Allaire
Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
Lubricants
bearings
tilting-pad
dynamic
coefficients
frequency
stiffness
title Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
title_full Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
title_fullStr Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
title_full_unstemmed Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
title_short Tilting-Pad Journal Bearings—Frequency-Dependent Dynamic Coefficients and Pivot Flexibility Effects
title_sort tilting pad journal bearings frequency dependent dynamic coefficients and pivot flexibility effects
topic bearings
tilting-pad
dynamic
coefficients
frequency
stiffness
url https://www.mdpi.com/2075-4442/10/2/20
work_keys_str_mv AT laurencefwagner tiltingpadjournalbearingsfrequencydependentdynamiccoefficientsandpivotflexibilityeffects
AT pauleallaire tiltingpadjournalbearingsfrequencydependentdynamiccoefficientsandpivotflexibilityeffects