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L- 51
Pipe Appurtenances
Environmental Engineering –I
By Prof S S JAHAGIRDAR
Components of Distribution
Networks
•
•
•
•
•
•

Pipes
Storage Facilities
Pumps
Valves
Hydrants
Meters
Valves
• Purpose of Valves
1. The primary purpose of valves is to
allow for isolation of mains or
sections of main within the network.
2. Another important function of
valves is to control flow or pressure.
1. Sluice or Gate Valve
• Also known as shut off valves or
stop valves or isolation valves.
• Used to shut of the supplies wherever
desired.
• Useful in dividing water mains in
various sections.
Location of isolation valves
•
•
•
•
•

Spacing – 150 to 300 m.
Also placed on corners.
Less cost
Less resistance to flow
Made up of cast iron with brass
mountings
2. Air Relief Valve
• Water flowing through pipes
always contain some air.
• Air tries to accumulate at high
points.
• Accumulated air interferes with
flow.
• Therefore air relief valves are
provided at summits.
• Function of air valve to discharge
out excess air.
Location of Air Relief Valve

Summit
3. Reflux Valve
• Also known as Check valve or nonreturn valve.
• Allows water to flow in only one
direction.
• They are provided next to pumps to
avoid back flow of water after
shutting off the pump.
• Back flow of water may damage the
pump.
• Pivoted Flat disc is provided, which
returns to its original position in
case of reverse flow
4. Pressure Relief Valve
• Also known as Automatic cutoff or
Safety valves.
• Located at points where pressure is
maximum.
• When pressure increases preset
value, the valve operates
automatically and pressure is
reduces.
5. Altitude Valves
• Provides automatic filling of elevated
tanks or reservoirs.
• When the altitude control senses a
drop in level below the predetermined
set point, the valve opens to fill tank.
When the level again reaches the set
point, the valve will close.
• These are provided to the pipes
which supply water to ESRs or stand
pipes.
• There are two types
- Single acting and
- Double acting
• Single acting : - flow in one direction
only - from the pump side to the tank.
A separate discharge line or by-pass
arrangement is used for removing the
storage water from the tank.
• Double Acting:- an altitude valve
which allows flow from the pump to
the tank and also allows reserve flow
from the tank back through the valve
to the distribution system.
Single Acting
6. Scour Valves
• Also known as blow off or wash out
valves.
• Located at dead end in dead end
distribution system.
• Provided to remove sand and silt
deposited in the pipe line.
• Operated manually.
ASSIGNMENT 4 TE –(A)
WATER DISTRIBUTION
SYSTEM
1. Find length of equivalent pipe with
equivalent diameter 0.5 m if three
pipes are connected in
a) Series and
b) Parallel
Pipe

Length

Diameter

1

2 km

0.6 m

2

1 km

0.5 m

3

3 km

0.7 m
2. Compute distribution of flows in the
pipe network shown below by using
Hardy Cross method. Take two trials
Use hf = kQ2
3. Compute distribution of flow in the
network shown below by using Hardy
Cross method. Take two trials.
Use hf = kQ1.85
UNIVERSITY QUESTIONS ON
UNIT IV
Objective Questions
1. Radial system is reverse of ______
system. (dead end/grid iron/circular/ all of
above).
2. To increase the discharge pipes are
provided in _____. (series/ parallel/ series
or parallel/ cant say).
3. Reflux valve are also known as _____
valves. (shut off/check/cut off/ air relief).
4. Check valve is also known as _____.
(reflux valve/non return valve/ both/none of
these).
5. Summits are the points of ____ pressure.
(high/ low/ equal/none of these).
6. Match the pairs
Group A

Group B

Gate valve

Located at high pressure points

Air relief valve

Used to shutoff the supplies

Reflux valve

To provide exit for accumulated
air
Allows water to flow in one
direction

Safety valve
7. In pressure supply mains, water hammer
pressure is reduced by providing ______.
(sluice valve/air valve/pressure relief valve/
none of these).
8. In equation hf = k.Qn the value of ‘n’ for
Hazen Williams formula is _________.
(1.85/2/1.7/1).
9.Reflux valve is also known as _______.
(gate/ check/scour/sluice).
10. Washout valves are provided at _______
points in the mains. (lowest/ highest/
summit/ all of above).
Theory Questions
Q1. Give requirements of a good
distribution system. (May 2012, Dec
2010, 5 marks).
Q2. Explain grid iron system of water
distribution with neat sketch (May
2012, 5 marks).
Q3. Draw neat sketch of air relief valve
and name its parts (Dec 2011, Dec
2009, 5 marks)
Q4. Explain grid iron system of water
distribution with neat sketch and mention
its advantages (Dec 2011, Dec 2009, 5
marks).
Q5. Explain Hardy-Cross method of
analysis of pipe network (Dec 2011, Dec
2010, 9 marks).
Q6. Draw neat sketch of non return or
reflux valve and name its parts (May
2011, Dec 2010, 5 marks).
Q7. Explain circular system of water
distribution with neat sketch (May 2011, 8
marks).
Q8. Explain Dead end system of water
distribution with neat sketch (Dec 2010, 4
marks) .
Q9. Explain equivalent pipe method of
analysis of pipe network of a distribution
system (Dec 2009, 9 marks).
L 51 appurtennances (Valves)
L 51 appurtennances (Valves)
L 51 appurtennances (Valves)

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L 51 appurtennances (Valves)

  • 1. L- 51 Pipe Appurtenances Environmental Engineering –I By Prof S S JAHAGIRDAR
  • 3.
  • 4. Valves • Purpose of Valves 1. The primary purpose of valves is to allow for isolation of mains or sections of main within the network. 2. Another important function of valves is to control flow or pressure.
  • 5. 1. Sluice or Gate Valve • Also known as shut off valves or stop valves or isolation valves. • Used to shut of the supplies wherever desired. • Useful in dividing water mains in various sections.
  • 7. • • • • • Spacing – 150 to 300 m. Also placed on corners. Less cost Less resistance to flow Made up of cast iron with brass mountings
  • 8.
  • 9.
  • 10. 2. Air Relief Valve • Water flowing through pipes always contain some air. • Air tries to accumulate at high points. • Accumulated air interferes with flow.
  • 11. • Therefore air relief valves are provided at summits. • Function of air valve to discharge out excess air.
  • 12. Location of Air Relief Valve Summit
  • 13.
  • 14.
  • 15. 3. Reflux Valve • Also known as Check valve or nonreturn valve. • Allows water to flow in only one direction. • They are provided next to pumps to avoid back flow of water after shutting off the pump.
  • 16. • Back flow of water may damage the pump. • Pivoted Flat disc is provided, which returns to its original position in case of reverse flow
  • 17.
  • 18. 4. Pressure Relief Valve • Also known as Automatic cutoff or Safety valves. • Located at points where pressure is maximum. • When pressure increases preset value, the valve operates automatically and pressure is reduces.
  • 19.
  • 20.
  • 21. 5. Altitude Valves • Provides automatic filling of elevated tanks or reservoirs. • When the altitude control senses a drop in level below the predetermined set point, the valve opens to fill tank. When the level again reaches the set point, the valve will close.
  • 22.
  • 23.
  • 24. • These are provided to the pipes which supply water to ESRs or stand pipes. • There are two types - Single acting and - Double acting
  • 25. • Single acting : - flow in one direction only - from the pump side to the tank. A separate discharge line or by-pass arrangement is used for removing the storage water from the tank. • Double Acting:- an altitude valve which allows flow from the pump to the tank and also allows reserve flow from the tank back through the valve to the distribution system.
  • 27. 6. Scour Valves • Also known as blow off or wash out valves. • Located at dead end in dead end distribution system. • Provided to remove sand and silt deposited in the pipe line. • Operated manually.
  • 28. ASSIGNMENT 4 TE –(A) WATER DISTRIBUTION SYSTEM
  • 29. 1. Find length of equivalent pipe with equivalent diameter 0.5 m if three pipes are connected in a) Series and b) Parallel Pipe Length Diameter 1 2 km 0.6 m 2 1 km 0.5 m 3 3 km 0.7 m
  • 30. 2. Compute distribution of flows in the pipe network shown below by using Hardy Cross method. Take two trials Use hf = kQ2
  • 31. 3. Compute distribution of flow in the network shown below by using Hardy Cross method. Take two trials. Use hf = kQ1.85
  • 33. Objective Questions 1. Radial system is reverse of ______ system. (dead end/grid iron/circular/ all of above). 2. To increase the discharge pipes are provided in _____. (series/ parallel/ series or parallel/ cant say). 3. Reflux valve are also known as _____ valves. (shut off/check/cut off/ air relief). 4. Check valve is also known as _____. (reflux valve/non return valve/ both/none of these).
  • 34. 5. Summits are the points of ____ pressure. (high/ low/ equal/none of these). 6. Match the pairs Group A Group B Gate valve Located at high pressure points Air relief valve Used to shutoff the supplies Reflux valve To provide exit for accumulated air Allows water to flow in one direction Safety valve
  • 35. 7. In pressure supply mains, water hammer pressure is reduced by providing ______. (sluice valve/air valve/pressure relief valve/ none of these). 8. In equation hf = k.Qn the value of ‘n’ for Hazen Williams formula is _________. (1.85/2/1.7/1). 9.Reflux valve is also known as _______. (gate/ check/scour/sluice). 10. Washout valves are provided at _______ points in the mains. (lowest/ highest/ summit/ all of above).
  • 36. Theory Questions Q1. Give requirements of a good distribution system. (May 2012, Dec 2010, 5 marks). Q2. Explain grid iron system of water distribution with neat sketch (May 2012, 5 marks). Q3. Draw neat sketch of air relief valve and name its parts (Dec 2011, Dec 2009, 5 marks)
  • 37. Q4. Explain grid iron system of water distribution with neat sketch and mention its advantages (Dec 2011, Dec 2009, 5 marks). Q5. Explain Hardy-Cross method of analysis of pipe network (Dec 2011, Dec 2010, 9 marks). Q6. Draw neat sketch of non return or reflux valve and name its parts (May 2011, Dec 2010, 5 marks).
  • 38. Q7. Explain circular system of water distribution with neat sketch (May 2011, 8 marks). Q8. Explain Dead end system of water distribution with neat sketch (Dec 2010, 4 marks) . Q9. Explain equivalent pipe method of analysis of pipe network of a distribution system (Dec 2009, 9 marks).