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Couette-Poiseuille flow in a thin gap
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Fluid mechanics
Viscous fluid flow
Lubrication theory
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Words: 189
Articles: 6
Between surfaces of velocities
U
0
,
U
1
separated by
h
, the local lubrication profile is
u
=
U
0
+
(
U
1
−
U
0
)
y
/
h
+
(
p
x
/2
μ
)
y
(
y
−
h
)
.
(40)
Table of contents
189
6
Couette-Poiseuille flow with a stress-free stationary wall
Couette-Poiseuille flow in a thin gap
41
Moving-boundary lubrication flux
Couette-Poiseuille flow in a thin gap
133
4
Reynolds lubrication equation
Moving-boundary lubrication flux
77
2
Pressure gradient in a translating and squeezing finite gap
Reynolds lubrication equation
55
1
Zero-shear lower wall in a translating and squeezing finite gap
Pressure gradient in a translating and squeezing finite gap
22
Annular lubrication drag on a settling cylinder
Moving-boundary lubrication flux
47
Ancestors
(6)
Lubrication theory
Viscous fluid flow
Fluid mechanics
Branch of physics
Physics
Home
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(2)
Solution
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