Consider liquid in a cylindrical tank. Both the tank and the liquid rotate as a rigid body (Fig. 9-85). The free surface of the surface tension effects are negligible. Discuss the boundary condary conditions required to solve this problem. Specifically, what are the velocity boundary condition in terms of cylindrical corrdinates ( r , θ , z ) and velocity components ( u r , u θ u z ) at all surface, including the tank walls and the free surface? What pressure biundary conditions are apporopate for this flow fied? Write mathematical eqautions for each boundary condition and discuss. FIGURE P9-85
Consider liquid in a cylindrical tank. Both the tank and the liquid rotate as a rigid body (Fig. 9-85). The free surface of the surface tension effects are negligible. Discuss the boundary condary conditions required to solve this problem. Specifically, what are the velocity boundary condition in terms of cylindrical corrdinates ( r , θ , z ) and velocity components ( u r , u θ u z ) at all surface, including the tank walls and the free surface? What pressure biundary conditions are apporopate for this flow fied? Write mathematical eqautions for each boundary condition and discuss. FIGURE P9-85
Solution Summary: The author explains the velocity boundary condition in terms of the cylindrical coordinate at the all surface.
Consider liquid in a cylindrical tank. Both the tank and the liquid rotate as a rigid body (Fig. 9-85). The free surface of the surface tension effects are negligible. Discuss the boundary condary conditions required to solve this problem. Specifically, what are the velocity boundary condition in terms of cylindrical corrdinates
(
r
,
θ
,
z
)
and velocity components
(
u
r
,
u
θ
u
z
)
at all surface, including the tank walls and the free surface? What pressure biundary conditions are apporopate for this flow fied? Write mathematical eqautions for each boundary condition and discuss.
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العنوان
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شكا
+91x PU + 96852
A heavy car plunges into a lake during an accident and lands at the bottom of the lake
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Deine the hadrostatic force on the
Plot the displacement diagram for a cam with roller follower of diameter 10 mm. The required
motion is as follows;
1- Rising 60 mm in 135° with uniform acceleration and retardation motion.
2- Dwell 90°
3- Falling 60 mm for 135° with Uniform acceleration-retardation motion.
Then design the cam profile to give the above displacement diagram if the minimum circle
diameter of the cam is 50 mm.
=
-20125
750 x2.01
Plot the displacement diagram for a cam with roller follower of diameter 10 mm. The required
motion is as follows;
1- Rising 60 mm in 135° with uniform acceleration and retardation motion.
2- Dwell 90°
3- Falling 60 mm for 135° with Uniform acceleration-retardation motion.
Then design the cam profile to give the above displacement diagram if the minimum circle
diameter of the cam is 50 mm.
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1 m
4 m
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