Water from a large tank discharges into the atmosphere through the pipeline shown in the figure. Calculate (a) the discharge velocity V at the exit of the pipeline (station 2); (b) the head loss h;; and (c) the volume flow rate Q. Assume constant diameter of the pipeline, d = 15 cm, and roughness e/d = 0.0017. Use Moody's formula (Eq. 6.48 in the textbook).
Water from a large tank discharges into the atmosphere through the pipeline shown in the figure. Calculate (a) the discharge velocity V at the exit of the pipeline (station 2); (b) the head loss h;; and (c) the volume flow rate Q. Assume constant diameter of the pipeline, d = 15 cm, and roughness e/d = 0.0017. Use Moody's formula (Eq. 6.48 in the textbook).
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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
Transcribed Image Text:Water from a large tank discharges into the atmosphere through the pipeline shown in the figure.
Calculate (a) the discharge velocity V at the exit of the pipeline (station 2); (b) the head loss
h;; and (c) the volume flow rate Q. Assume constant diameter of the pipeline, d = 15 cm, and
roughness e/d = 0.0017. Use Moody's formula (Eq. 6.48 in the textbook).
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Transcribed Image Text:+.
Eld
-2.0 log
3.7
1
2.51
1/2
Reaf/2
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