Water with density and kinematic viscosity of 1000 kg/m³, 1 x10-6 m²/s respectively flow through a 0.1 m diameter 10 m long horizontal pipe and Figure 1 shows the exponent value (n) for power laws velocity profiles. If average velocity of the flow is 1 m/s, determine; (1) centerline velocity; and time average velocity at a location of 0.025 m from the pipe centerline. 11 10 9 8 7 6 104 105 106 ND Re= Figure 1: the exponent value (n) for power laws velocity profiles

Elements Of Electromagnetics
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Water with density and kinematic viscosity of 1000 kg/m?, 1 x10-s m²/s respectively flow through
a 0.1 m diameter 10 m long horizontal pipe and Figure 1 shows the exponent value (n) for power
laws velocity profiles. If average velocity of the flow is 1 m/s, determine;
(i)
(ii)
centerline velocity; and
time average velocity at a location of 0.025 m from the pipe centerline.
11
10
6
10
10
10
Re=
ND
Figure 1: the exponent value (n) for power laws velocity profiles
Transcribed Image Text:Water with density and kinematic viscosity of 1000 kg/m?, 1 x10-s m²/s respectively flow through a 0.1 m diameter 10 m long horizontal pipe and Figure 1 shows the exponent value (n) for power laws velocity profiles. If average velocity of the flow is 1 m/s, determine; (i) (ii) centerline velocity; and time average velocity at a location of 0.025 m from the pipe centerline. 11 10 6 10 10 10 Re= ND Figure 1: the exponent value (n) for power laws velocity profiles
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