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Three-dimensional lubrication theory in viscoelastic short-bearing
Sule Celasun
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Corresponding author for this work
Department of Mechanical Engineering
Research output
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peer-review
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Keyphrases
Analytical Method
33%
Anticipated Value
33%
Cavitation
33%
Cavitation Effect
33%
Certitude
33%
Complex Flow
66%
Computational Difficulty
33%
Design Methodology
33%
Difficult Problem
33%
Digital Computers
33%
Flow Problems
66%
Highly Elastic
33%
Inlet Boundary Condition
33%
Journal Bearing
33%
Lift Force
33%
Lubrication Theory
100%
Non-Newtonian Fluid Mechanics
33%
Numerical Cases
33%
Numerical Methods
66%
Outlet Boundary Conditions
33%
Overall Parameters
33%
Parameter Space
33%
Perturbation Method
33%
Shear Thinning
33%
Short Bearing
100%
Three-dimensional (3D)
100%
Three-dimensional Flow Characteristics
33%
Two-dimensional Flow
33%
Unrealistic Assumptions
33%
Engineering
Boundary Condition
50%
Digital Computer
50%
Dimensional Flow
100%
Flow Characteristics
50%
Flow Problem
100%
Generality
50%
Journal Bearing
50%
Non-Newtonian Fluid Mechanics
50%
Numerical Methods
100%
Outlet Boundary
50%
Parameter Space
50%
Perturbation Technique
50%
Shear Thinning
50%
Two Dimensional
50%