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WorksheetsFirepro(win)
Total questions: 54
Worksheet time: 28mins
Classes of Standpipe Systems
Class I System
Class II System
Class III System
This system is provided
with 64 mm (2 ½ in.) hose
connections
for full-scale firefighting at the
following designated building
locations:
Class I System
Class II System
Class III System
This a hose connection
provided with 38 mm (1½ in.) hose or
within thirty seven meters (37 m) of a
hose connection system shall be
provided with 38 mm (1 ½ in.)
Class I System
Class II System
Class III System
A type of standpipe system in
which the pipes are normally not filled
with water. Water is introduced into the system
thru fire service connections when needed.
Dry Standpipe
Wet Standpipe
Combination Standpipe
is an auxiliary fifire line
system with a constant water supply
installed primarily for emergency use
by the occupants of the building.
Dry Standpipe
Wet Standpipe
Combination Standpipe
A pipeline system
filled with water and connected to a
constant water supply for the use of the BFP
and the occupants of the buildings
solely for fire suppression purposes
Dry Standpipe
Wet Standpipe
Combination Standpipe
is a hose
connection at grade or street level for
use by the Fire Service only. It is also
known as Fire Service Connection.
Fire Department House Connection
Wet Standpipe
Combination Standpipe
fire service outlet
siamese
hydrant
shall be used
for Class I system.
wet standpipe
dry standpipe
combination standpipe
Wet standpipe system extending from the
cellar or basement into the topmost
storey shall be required in the following:
Assembly occupancies with an
occupant load exceeding one
thousand (1,000);
Educational, healthcare and detention
and correctional, business and mercantile,
industrial, and hotels and apartments
occupancies, four or more storeys in
height,
Hazardous storage and business and
mercantile occupancies having a floor
area exceeding one thousand eight
hundred sixty square meters (1,860 m2)
per floor.
Fire Hose Cabinets (FHC)
Fire Box
Fire Panle
The size of the
standpipes shall
not be less than
_______
in diameter
64 mm (2 ½ in.)
38 mm (1 ½ in.)
Each wet standpipe
outlet shall be supplied
with a hose not less
than ____in
diameter
64 mm (2 ½ in.)
38 mm (1½ in.)
technique whereby air is
blown into spaces which are designed to be kept
clear of smoke
Pressurization
Precipitation
Condentation
Fittings and connections
shall be of sufficient
strength to withstand
_____ of
water pressure when
ready for service.
300 psi (21 kg/cm2)
400 psi (21 kg/cm2)
500 psi (21 kg/cm2)
All dry standpipes shall be
tested hydrostatically to
withstand not less than
_____
above the maximum
working pressure
50 psi (3.5 kg/cm²)
60 psi (3.5 kg/cm²)
70 psi (3.5 kg/cm²)
Wet standpipe system
may be supplied from a
sprinkler system only
when in compliance
with _____, Standard
for the Installation of
Sprinkler System.
NFPA 12
NFPA 13
NFPA 14
All horizontal runs of
dry standpipe systems
shall have a twenty
percent ___ slope
for the purpose of
draining.
10%
20%
30%
40%
The wet standpipe shall deliver not
less than one hundred thirty two
liters ___ of water per minute
130L
131L
132L
134L
Pressure or gravity tanks shall have a
capacity sufficient to furnish at least __ liters of water
per minute for thirty (30) minutes.
260L
265L
270L
275L
Will put out fires in
ordinary combustibles, such as wood and paper.
The numerical rating for this class of fire
extinguisher refers to the amount of water the fire
extinguisher holds and the amount of fire it will
extinguish
Class A Extinguishers
Class B Extinguishers
Class C Extinguishers
Class D Extinguishers
should be used on fires
involving flammable liquids, such as grease,
gasoline, oil, etc. The numerical rating for this
class of fire extinguisher states the approximate
number of square feet of a flammable liquid fire
that a non-expert person can expect to
extinguish
Class A Extinguishers
Class B Extinguishers
Class C Extinguishers
Class D Extinguishers
are suitable for use on
electrically energized fires. This class of fire
extinguishers does not have a numerical rating.
The presence of the letter “C” indicates that the
extinguishing agent is non-conductive
Class A Extinguishers
Class B Extinguishers
Class C Extinguishers
Class D Extinguishers
are designed for use on
flammable metals and are often specific for the
type of metal in question. There is no picture
designator for Class D extinguishers. These
extinguishers generally have no rating nor are
they given a multi-purpose rating for use on other
types of fires
Class A Extinguishers
Class B Extinguishers
Class C Extinguishers
Class D Extinguishers
Maximum travel distance to Extinguisher of "Class B hazards " Of Low-Medium-High type of Hazard
10m
12m
15m
Maximum Area per Extinguisher of "Class A Hazard " Low
200 sqm
100sqm
75 sqm
An integrated system of underground or
overhead piping or both connected to a source
of extinguishing agent or medium and
designed in accordance with fire protection
engineering standards which, when actuated
by its automatic detecting device, suppresses
fires within the area protected.
Automatic Fire Suppression System
Sprinkler System
An integrated network of
hydraulically designed piping system
installed in a building, structure or area with
outlets arranged in a systematic paoern which
automatically discharges water when
activated by heat or combustion products
from a fire.
Automatic Fire Suppression System
Sprinkler System
Identify A
Fire tank
Jockey Pump
Fire Pump
Riser Feed Main
Identify B
Fire tank
Jockey Pump
Fire Pump
Riser Feed Main
Identify C
Fire Tank
Jockey Pump
Fire Pump
Riser Feed Main
Identify D
Fire Tank
Jockey Pump
Fire Pump
Riser Feed Main
pendent
upright
conventional
horizontal sidewall
pendent
upright
conventional
vertical sidewall
upright
pendent
conventional
recessed pendent
conventional
upright
pendent
horizontal sidewall
vertical sidewall
recessed pendent
concealed horizontal sidewall
Concealed pendent
vertical sidewall
recessed pendent
concealed horizontal sidewall
concealed pendent
vertical sidewall
recessed pendent
concealed horizontal sidewall
concealed pwnded
vertical sidewall
recessed pendent
concealed horizontal sidewall
concealed pendent
designed to keep the
pressure elevated in a fire-suppression system so
that the main fire pump is prevented from running
unless absolutely necessary. It consists of a motor, a
pump and a controller.
jockey pump
fire pump
fire tank
usually refers to a pressure-increasing component of the water supply for fixed-place fire suppression systems such as fire sprinklers, standpipes, and foam systems.
jockey pump
fire pump
fire tank
Identify 1
diesel
engine
Pressure sensing lines
Single point electrical
connection
fire
pump controller
Identify 2
diesel
engine
Pressure sensing lines
Single point electrical
connection
fire
pump controller
Identify 3
diesel
engine
Pressure sensing lines
Single point electrical
connection
fire
pump controller
Identify 4
diesel
engine
Pressure sensing lines
Single point electrical
connection
fire
pump controller
identify 5
Stuffing box and engine raw
water drain connections
Fire-piped fuel system
horizontal split case fire pump
diesel
engine
Identify 6
Stuffing box and engine raw
water drain connections
Fire--piped fuel system
horizontal split case fifire pump
diesel
engine
Identify 7
fire
pump controller
Stuffing box and engine raw
water drain connections
Fire-piped fuel system
horizontal split case fire pump
Fire Pump: Direct –
driven pump with
jockey pump
Fire Pump: Direct driven
Fire Pump: Close Coupled
Fire Pump: Direct –
driven pump with
jockey pump
Fire Pump: Direct driven
Fire Pump: Close Coupled
Fire Pump: Direct –
driven pump with
jockey pump
Fire Pump: Direct driven
Fire Pump: Close Coupled
SPRINKLER SYSTEM
POSITIVE SUCTION
negative water reservoir
SPRINKLER SYSTEM
POSITIVE SUCTION
negative water reservoir
