The figure shows two reservoirs connected by a pipe. The discharge rate in the pipe is known be equal to SN/100 (m³/s) (where SN is the sum of your student number). Calculate the height of the second reservoir (H2), and the pressure head, velocity head and elevation head at point 3 (mid-point of the pipe).

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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SN=21

The figure shows two reservoirs connected by a pipe. The discharge rate in the pipe is known to
be equal to SN/100 (m/s) (where SN is the sum of your student number).
Calculate the height of the second reservoir (H2), and the pressure head, velocity head and
elevation head at point 3 (mid-point of the pipe).
Hi = 300 m
H2
datum
SN/1000
%3D
L = 100 x SN (m)
D = 0.3 m
Transcribed Image Text:The figure shows two reservoirs connected by a pipe. The discharge rate in the pipe is known to be equal to SN/100 (m/s) (where SN is the sum of your student number). Calculate the height of the second reservoir (H2), and the pressure head, velocity head and elevation head at point 3 (mid-point of the pipe). Hi = 300 m H2 datum SN/1000 %3D L = 100 x SN (m) D = 0.3 m
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