Int. J. Curr. Microbiol. App. Sci (2018) 7 (2): 2660-2677



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P.R. Landge, et al

Design of submain 
Selection of submain size depends on 
frictional head loss in submain. The Hazen-
William equation (equation 3.10) was used to 
estimate the head loss in the submain.
After checking the suitability of the head loss 
the size of the submain were finalized. 
… 
(3.10) 
The flow rate (Qs) of submain is estimated by 
using equation (3.11) 
… 
(3.11) 
Where,
Js = Submain head loss due to friction, m 
Qs = Submain discharge, lph 
Q

= Discharge of individual laterals, lph 
N

= Number of laterals on the submain 
Ls = Length of submain, m 
Ds = Inside diameter of submain pipe, mm 
Fs =Reduction coefficient for submain, 
dimensionless 
Maximum permissible head loss along a 


Int.J.Curr.Microbiol.App.Sci 
(2018)
 7
(2): 2660-2677 
2665 
submain is calculated with the equation 3.12.
… 
(3.12) 
Where,
ΔHs = Allowable friction head loss along the 
submain, m 
∆Ps = Allowable head loss in the sub unit, m 
Zm = Elevation difference along the submain, 
m
Design of main 
The main line carries water from the source to 
the sub main. Frictional head loss in main line 
was estimated using equation (3.13). 
… 
(3.13) 
The flow rate of mainline (Q
m
) is estimated 
using equation (3.14) 
… 
(3.14) 
Where,
J

= Head loss in main due to friction, m. 
Q

= Discharge in main line, lph 
Q

= Discharge in submain, lph 
Ns = Number of submains on mainline. 
D

= Inside diameter of main pipe, mm 
L

= Length of main, m 
Total frictional head loss along a main helped 
in the size selection which was estimated 
using equation (3.15). 
… 
(3.15) 
Where, 
∆Hm = Total head loss along the main, m 
Jm = Friction head loss in the main, m 
Zm = Elevation difference along the main, m
Size selection of the main line is depend on 
the two main factors viz., frictional heal loss 
along the length of pipe and the velocity of the 
flow through pipe. Therefore the selected size 
is checked for the permissible velocity of the 
flow through pipe. The velocity in the main 
line was estimated using equation (3.16). 
… 
(3.16) 
Where, 
Am = Cross sectional area of the pipe, m
2
The inside diameter of the mainline should be 
such that the velocity should not exceed the 
prescribed limit decided on the basis of pipe 
material to be used. For PVC pipes, generally 
the maximum permissible velocity must be 
within 1.5 m/sec. 

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