Water at 15'C (p = 1000 kg/m' and u = 1.15 x 10 kg/m s) flows from a tank through a 15 m length of 3-in Schedule 40 steel pipe (inside diameter of 77.9 mm) as shown in Figure 1. The flow rate of water in the system is 0.03 m/s. Neglect all minor energy losses. 20 m 3-in Schedule 40 3m Figure 1 (a) Classify the type of flow in the pipe. (b) Analyse the energy loss due to friction in pipe. (c) Determine the pressure of water at point B.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Water at 15'C (p = 1000 kg/m' and u = 1.15 x 10 kg/m s) flows from a tank through a 15
m length of 3-in Schedule 40 steel pipe (inside diameter of 77.9 mm) as shown in Figure
1. The flow rate of water in the system is 0.03 m/s. Neglect all minor energy losses.
20 m
3-in Schedule 40
Figure 1
(a) Classify the type of flow in the pipe.
(b) Analyse the energy loss due to frietion in pipe.
(c) Determine the pressure of water at point B.
Transcribed Image Text:Water at 15'C (p = 1000 kg/m' and u = 1.15 x 10 kg/m s) flows from a tank through a 15 m length of 3-in Schedule 40 steel pipe (inside diameter of 77.9 mm) as shown in Figure 1. The flow rate of water in the system is 0.03 m/s. Neglect all minor energy losses. 20 m 3-in Schedule 40 Figure 1 (a) Classify the type of flow in the pipe. (b) Analyse the energy loss due to frietion in pipe. (c) Determine the pressure of water at point B.
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