The secondary flow induced around a sphere in an oscillating stream of elastico-viscous liquid |
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Authors: | D B Rauthan |
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Institution: | (1) Department of Mathematics, Indian Institute of Technology, Kharagpur, India |
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Abstract: | The present paper is devoted to the theoretical study of the secondary flow induced around a sphere in an oscillating stream of an elastico-viscous liquid. The boundary layer equations are derived following Wang's method and solved by the method of successive approximations. The effect of elasticity of the liquid is to produce a reverse flow in the region close to the surface of the sphere and to shift the entire flow pattern towards the main flow. The resistance on the surface of the sphere and the steady secondary inflow increase with the elasticity of the liquid.Nomenclature
a
radius of the sphere
-
b
ik
contravariant components of a tensor
-
e
contravariant components of the rate of strain tensor
-
F()
see (47)
-
G
total nondimensional resistance on the surface of the sphere
-
g
ik
covariant components of the metric tensor
-
f, g, h
secondary flow components introduced in (34)
-
k
0
measure of relaxation time minus retardation time (elastico-viscous parameter)
-
K
=k
0
2/V
0
2
, nondimensional parameter characterizing the elasticity of the liquid
-
n
measure of the ratio of the boundary layer thickness and the oscillation amplitude
-
N, T
defined in (44)
-
p
arbitrary isotropic pressure
-
p
ik
covariant components of the stress tensor
-
p
ik
contravariant components of the stress tensor associated with the change of shape of the material
-
R
=V
0
a/v, the Reynolds number
-
S
=a/V
0, the Strouhall number
-
r, ,
spherical polar coordinates
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u, v, w r, ,
component of velocity
-
t
time
-
V(, t)
potential velocity distribution around the sphere
-
V
0
characteristic velocity
-
u, v, t, y, P
nondimensional quantities defined in (15)
-
reciprocal of s
-
density
-
defined in (32)
-
defined in (42)
-
0
limiting viscosity for very small changes in deformation velocity
-
complex conjugate of
-
oscillation frequency
-
=
0/, the kinematic coefficient of viscosity
-
,
defined in (52)
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(, y)
stream function defined in (45)
-
=(NT/2n)1/2
y
-
/t
convective time derivative
(1)
ik
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Keywords: | |
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