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PRINCETON INSTITUTE OF ENGINEERING AND
TECHNOLOGY FOR WOMEN-HYDERABAD.
DEPARTMENT OF CIVIL ENGINEERING
Presented by:
MOOD NARESH
ASST.PROF
PETW
INTRODUCTION
The different devices required for controlling
the flow of water, for preventing leakage and
other purposes in water supply system are
called “appurtenances”.
The distribution pipes are provided with various
pipe appurtenances or accessories so as to
make the distribution of water easy and
effective.
NECESSITY OF WATER SUPPLY
APPURTENANCES
 The main purpose of water supply appurtenances is to
make the distribution of water easy and effective.
 To avoid wastage and leakage of water.
 To change the direction of flow of water in pipe line.
 To make the efficient use of water.
 To control the flow of water in opposite direction in pipe.
 To regulate the flow of water.
REQUIREMENTS OF WATER SUPPLY
APPURTENANCES
 It should be strong.
 It should be durable.
 It should be economical.
 It should have resistance to corrosion.
 It should have resistance to internal pressure of water.
 It should be easy to remove & repair.
 It should not affected by chemicals, acids.
VALVES
Valves are mechanical devices that controls the flow and
pressure within a system or process. In water works practice,
to control the flow of water, to regulate pressure, to release or
to admit air, prevent flow of water in opposite direction valves
are required
FUNCTIONS OF VALVES
 Stopping and starting flow
 Reduce or increase a flow
 Controlling the direction of flow
 Regulating a flow or process pressure
 Relieve a pipe system of a certain pressure
TYPES OF VALVES
1) Sluice valve (stop valve) 5) Zero velocity valve
2) Check valve (reflux valve) 6) Scour valve
3) Air relief valve (float valve) 7) Ball valve
4) Drain valve (blow offs) 8) Fire hydrant
Depending upon different situations and requirements different types of
valves are used in the supply system.
SLUICE VALVE (STOP VALVE)
These are sometimes known as gate valves. This is
generally use to control the flow in a pipe line. When
a question of repair is needed, this valve close the
supply of water beyond the valve in the pipe line.
This is made of cast iron having a brass or stainless
steel mounting at its end fitted with a pipe. A circular
wedge shaped disc attached to the end of a threaded
spindle (stem) passing through a gland. This is
connected to a handle by means of a threaded
spindle. This can be used to control or regulate the
flow.
SLUICE VALVE (STOP VALVE)
These valves are cheaper, offers less
resistance to the flow of water than
other valves. The entire supply system is
divided into blocks by providing these
valves at appropriate places. They are
provided in straight pipeline at 150-
200m intervals. When two pipe lines
intersect, valves are fixed in both sides
of intersection. For long straight mains,
the sluice valves can be installed at a
distance of about 1km also to divide the
pipe in different sections.
CHECK VALVE (REFLUX VALVE)
This is sometimes called as non-return valves. A reflux valve is an
automatic device which allows water to go one direction only. The swing
type of reflux valve is widely used practice.
When the water moves in the direction of arrow, the valve swings or
rotates around the pivot and is kept in open position due to the pressure
of water. When the flow of water in this direction ceases. The water tries
to flow in a backward direction. But this valve prevents passage of water
in the reverse direction.
TYPES OF CHECK VALVES
Swing check valve lift check valve
1. Swing check valve
2. Lift check valve
AIR RELIEF VALVE (FLOAT VALVE)
In longer pipe lines, air accumulates at high points
of the line which interfaces with stream line flow
of water
. At such points air valves are provided
which remove the accumulated air automatically.
This valve has one or two hollow float chamber.
There are air opening at the top and the valves are
connected to the main as indicated in the figure.
Float chamber normally remains full of water.
When air fills it, the water level goes down and the
float falls, thereby openings the air opening at the
top through which air escapes out, after which
chamber again fills up with water and takes the
float up which closes the air openings.
AIR RELIEF VALVE (FLOAT VALVE)
An air valve consists of a cast-iron chamber, float, lever and poppet
valve shown in figure. The chamber may be circular or rectangular in
shape. A poppet valve is a valve that is lifted bodily.
DRAIN VALVE (BLOW OFFS)
These are also called wash out
valves they are provided at all
dead ends and depression of
pipelines to drain out the waste
water. These are ordinary valves
operated by hand.
ZERO VELOCITY VALVE
Zero velocity valve called as water
hammer arrester. The principle
behind the design of this valve is to
arrest the forward moving water
column at zero momentum i.e.
when its velocity is zero and before
any return velocity is established.
ADVANTAGES OF ZERO VELOCITY VALVES
1. Controlled closing characteristics.
2. Low loss of head due to streamlined design.
SCOUR VALVE
These are similar to blow off valves. They
are ordinary valves operated by hand. It
is placed at every depression in a pipe
line. Mud and sludge get collected in the
pipes at these depressions which
generally occur when pipes cross valleys,
etc. the valve is essentially mounted on a
branch of the main pipe line at the lowest
point. When the valve is worked, it
removes the dirt due to high velocity of
water. After the complete removal of silt,
the value is to be closed.
BALL VLAVE
A Ball valve is a quarter-turn rotational
motion valve that uses a ball-shaped
disk to stop or start flow. If the valve is
opened, the ball rotates to a point
where the hole through the ball is in
line with the valve body inlet and
outlet. If the valve is closed, the ball is
rotated so that the hole is
perpendicular to the flow openings of
the valve body and the flow is stopped
FIRE HYDRANT
A hydrant is an outlet provided in
water pipe for tapping water mainly
in case of fire. They are located at
100 to 150m apart the roads and also
at junction roads.
They are of two types namely
1. Flush hydrant
2. Post hydrant
REQUIREMENTS OF A GOOD FIRE HYDRANT
 Should be cheap.
 Easy to connect with hose or motor pump.
 Easily detachable and reliable.
 It should function properly and should not go out of
order during operation.
 It should permit undisturbed flow of water when
being fully opened.
WATER METER
To determine the quantity of water
flowing through pipes, water
meters are installed. The readings
obtained from the meters help in
working out the quantity of water
supplied and thus the consumers
can charged accordingly. The water
meters are usually installed to
supply water to houses, industries,
hotels, big institutions, etc.
Metering prevents the wastage of
purified water.
REQUIREMENTS OF GOOD METER
 It should not offer any resistance to the flow of water.
 It should measure the discharge up to 2% accuracy.
 All its parts should be of non-corrosive alloy.
 It can be easily maintained and repaired.
 It should be economical.
 It should have screen on its inlet side, to exclude the
clay, silt, grit, etc.
 It should be capable of registering even small quantity
of flow of water.
CLASSIFICATION OF WATER METERS
1. Positive displacement type meters
2. Velocity meters.
STORAGE TANKS
Storage tanks may be kept on the
roof of the building or on the ground
and should be water tight. The
storage tank should be placed in
such a position so that the discharge
of water can be readily seen. The
tank should be provided with over
flow pipe and drain pipe near the
bottom to clean the tank. The
storage tanks are provided with
outlet pipes to draw the water.
STORAGE TANKS
CONSTRUCTION DETAILS
Storage tanks are the small tanks
installed above the roof level of the
buildings and intended to serve the
requirements of water storage of the
buildings. A storage tank may be
constructed of masonry or reinforced
cement concrete when the size is to
be large.
The storage tank is usually supported
on the roof slab of the building or on
separate bearers so as to distribute
the load uniformly. The tank should
be located in an easily accessible
position and should be able to easy
inspection and cleaning.
BIB COCK
These are the water taps which are
attached at the end of water pipes and
from which the consumers obtain
water. Bib cocks are available of
various patterns. Figure shows typical
bib cock. It is operated from a handle
and when handle is turned, the opening
from which water comes out, gets
increased in size. The bib cocks may
also be of push and they operate
automatically. They open out when a
slight push is given and close down as
soon as the push is removed or
withdrawn.
BIB COCK
The bib cocks should be water
tight. The leaky bib cocks are
the source of waste of water.
The below table gives an idea
of water lost due to leaky bib
cocks in a continuous system
of water supply. It is therefore
advisable to repair or replace
such leaky bib cocks as early
as possible.
STOP COCK
These are small sized sluice
valves and they are installed in
service pipes serving the bib
cocks. They operate on the same
principle of sluice valve and they
are used up to sizes of about
50mm. they are placed on water
pipe leading to flushing tanks,
wash basins, water tanks, etc. It
should be of size sufficient to pass
the required discharge through
service pipe.
STOP COCK
It is provided before the water
meter service line. Stop cock is
housed in a suitable masonry
chamber with a removable cover
and is fixed in the street close to
the boundary wall in an accessible
position. It controls the supply to
the building from the water main.
The purpose of stop cock is to stop
the supply of water. The temporary
disconnections are made at the stop
cock while permanent
disconnections are made at ferrule.

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Watersupply appurtenances

  • 1. PRINCETON INSTITUTE OF ENGINEERING AND TECHNOLOGY FOR WOMEN-HYDERABAD. DEPARTMENT OF CIVIL ENGINEERING Presented by: MOOD NARESH ASST.PROF PETW
  • 2. INTRODUCTION The different devices required for controlling the flow of water, for preventing leakage and other purposes in water supply system are called “appurtenances”. The distribution pipes are provided with various pipe appurtenances or accessories so as to make the distribution of water easy and effective.
  • 3. NECESSITY OF WATER SUPPLY APPURTENANCES  The main purpose of water supply appurtenances is to make the distribution of water easy and effective.  To avoid wastage and leakage of water.  To change the direction of flow of water in pipe line.  To make the efficient use of water.  To control the flow of water in opposite direction in pipe.  To regulate the flow of water.
  • 4. REQUIREMENTS OF WATER SUPPLY APPURTENANCES  It should be strong.  It should be durable.  It should be economical.  It should have resistance to corrosion.  It should have resistance to internal pressure of water.  It should be easy to remove & repair.  It should not affected by chemicals, acids.
  • 5. VALVES Valves are mechanical devices that controls the flow and pressure within a system or process. In water works practice, to control the flow of water, to regulate pressure, to release or to admit air, prevent flow of water in opposite direction valves are required FUNCTIONS OF VALVES  Stopping and starting flow  Reduce or increase a flow  Controlling the direction of flow  Regulating a flow or process pressure  Relieve a pipe system of a certain pressure
  • 6. TYPES OF VALVES 1) Sluice valve (stop valve) 5) Zero velocity valve 2) Check valve (reflux valve) 6) Scour valve 3) Air relief valve (float valve) 7) Ball valve 4) Drain valve (blow offs) 8) Fire hydrant Depending upon different situations and requirements different types of valves are used in the supply system.
  • 7. SLUICE VALVE (STOP VALVE) These are sometimes known as gate valves. This is generally use to control the flow in a pipe line. When a question of repair is needed, this valve close the supply of water beyond the valve in the pipe line. This is made of cast iron having a brass or stainless steel mounting at its end fitted with a pipe. A circular wedge shaped disc attached to the end of a threaded spindle (stem) passing through a gland. This is connected to a handle by means of a threaded spindle. This can be used to control or regulate the flow.
  • 8. SLUICE VALVE (STOP VALVE) These valves are cheaper, offers less resistance to the flow of water than other valves. The entire supply system is divided into blocks by providing these valves at appropriate places. They are provided in straight pipeline at 150- 200m intervals. When two pipe lines intersect, valves are fixed in both sides of intersection. For long straight mains, the sluice valves can be installed at a distance of about 1km also to divide the pipe in different sections.
  • 9. CHECK VALVE (REFLUX VALVE) This is sometimes called as non-return valves. A reflux valve is an automatic device which allows water to go one direction only. The swing type of reflux valve is widely used practice. When the water moves in the direction of arrow, the valve swings or rotates around the pivot and is kept in open position due to the pressure of water. When the flow of water in this direction ceases. The water tries to flow in a backward direction. But this valve prevents passage of water in the reverse direction.
  • 10. TYPES OF CHECK VALVES Swing check valve lift check valve 1. Swing check valve 2. Lift check valve
  • 11. AIR RELIEF VALVE (FLOAT VALVE) In longer pipe lines, air accumulates at high points of the line which interfaces with stream line flow of water . At such points air valves are provided which remove the accumulated air automatically. This valve has one or two hollow float chamber. There are air opening at the top and the valves are connected to the main as indicated in the figure. Float chamber normally remains full of water. When air fills it, the water level goes down and the float falls, thereby openings the air opening at the top through which air escapes out, after which chamber again fills up with water and takes the float up which closes the air openings.
  • 12. AIR RELIEF VALVE (FLOAT VALVE) An air valve consists of a cast-iron chamber, float, lever and poppet valve shown in figure. The chamber may be circular or rectangular in shape. A poppet valve is a valve that is lifted bodily.
  • 13. DRAIN VALVE (BLOW OFFS) These are also called wash out valves they are provided at all dead ends and depression of pipelines to drain out the waste water. These are ordinary valves operated by hand.
  • 14. ZERO VELOCITY VALVE Zero velocity valve called as water hammer arrester. The principle behind the design of this valve is to arrest the forward moving water column at zero momentum i.e. when its velocity is zero and before any return velocity is established. ADVANTAGES OF ZERO VELOCITY VALVES 1. Controlled closing characteristics. 2. Low loss of head due to streamlined design.
  • 15. SCOUR VALVE These are similar to blow off valves. They are ordinary valves operated by hand. It is placed at every depression in a pipe line. Mud and sludge get collected in the pipes at these depressions which generally occur when pipes cross valleys, etc. the valve is essentially mounted on a branch of the main pipe line at the lowest point. When the valve is worked, it removes the dirt due to high velocity of water. After the complete removal of silt, the value is to be closed.
  • 16. BALL VLAVE A Ball valve is a quarter-turn rotational motion valve that uses a ball-shaped disk to stop or start flow. If the valve is opened, the ball rotates to a point where the hole through the ball is in line with the valve body inlet and outlet. If the valve is closed, the ball is rotated so that the hole is perpendicular to the flow openings of the valve body and the flow is stopped
  • 17. FIRE HYDRANT A hydrant is an outlet provided in water pipe for tapping water mainly in case of fire. They are located at 100 to 150m apart the roads and also at junction roads. They are of two types namely 1. Flush hydrant 2. Post hydrant
  • 18. REQUIREMENTS OF A GOOD FIRE HYDRANT  Should be cheap.  Easy to connect with hose or motor pump.  Easily detachable and reliable.  It should function properly and should not go out of order during operation.  It should permit undisturbed flow of water when being fully opened.
  • 19. WATER METER To determine the quantity of water flowing through pipes, water meters are installed. The readings obtained from the meters help in working out the quantity of water supplied and thus the consumers can charged accordingly. The water meters are usually installed to supply water to houses, industries, hotels, big institutions, etc. Metering prevents the wastage of purified water.
  • 20. REQUIREMENTS OF GOOD METER  It should not offer any resistance to the flow of water.  It should measure the discharge up to 2% accuracy.  All its parts should be of non-corrosive alloy.  It can be easily maintained and repaired.  It should be economical.  It should have screen on its inlet side, to exclude the clay, silt, grit, etc.  It should be capable of registering even small quantity of flow of water. CLASSIFICATION OF WATER METERS 1. Positive displacement type meters 2. Velocity meters.
  • 21. STORAGE TANKS Storage tanks may be kept on the roof of the building or on the ground and should be water tight. The storage tank should be placed in such a position so that the discharge of water can be readily seen. The tank should be provided with over flow pipe and drain pipe near the bottom to clean the tank. The storage tanks are provided with outlet pipes to draw the water.
  • 22. STORAGE TANKS CONSTRUCTION DETAILS Storage tanks are the small tanks installed above the roof level of the buildings and intended to serve the requirements of water storage of the buildings. A storage tank may be constructed of masonry or reinforced cement concrete when the size is to be large. The storage tank is usually supported on the roof slab of the building or on separate bearers so as to distribute the load uniformly. The tank should be located in an easily accessible position and should be able to easy inspection and cleaning.
  • 23. BIB COCK These are the water taps which are attached at the end of water pipes and from which the consumers obtain water. Bib cocks are available of various patterns. Figure shows typical bib cock. It is operated from a handle and when handle is turned, the opening from which water comes out, gets increased in size. The bib cocks may also be of push and they operate automatically. They open out when a slight push is given and close down as soon as the push is removed or withdrawn.
  • 24. BIB COCK The bib cocks should be water tight. The leaky bib cocks are the source of waste of water. The below table gives an idea of water lost due to leaky bib cocks in a continuous system of water supply. It is therefore advisable to repair or replace such leaky bib cocks as early as possible.
  • 25. STOP COCK These are small sized sluice valves and they are installed in service pipes serving the bib cocks. They operate on the same principle of sluice valve and they are used up to sizes of about 50mm. they are placed on water pipe leading to flushing tanks, wash basins, water tanks, etc. It should be of size sufficient to pass the required discharge through service pipe.
  • 26. STOP COCK It is provided before the water meter service line. Stop cock is housed in a suitable masonry chamber with a removable cover and is fixed in the street close to the boundary wall in an accessible position. It controls the supply to the building from the water main. The purpose of stop cock is to stop the supply of water. The temporary disconnections are made at the stop cock while permanent disconnections are made at ferrule.