OBJECT OF THE INVENTION
[0001] The following invention, as expressed on the heading of the present specification,
is related to a control system of fire protection facilities, being of the type of
fire protection facilities installed in all types of buildings and warehouses fitted
with, at least, one pressure group and/or, at least, one equipped fire hydrant and/or,
at least, one fire extinguisher, with the corresponding function means, such that
the essential object of the invention, in addition to monitoring continuously and
automatically that the pressure of every component of the installation is the optimal
and that the fire extinguishers are at their location, is to monitor that the safety
pins of the actuating lever of the fire extinguishers have not been tampered with.
[0002] Likewise, the pressure gauges of the different components of the facility include
Bluetooth transmission with the object of being able to obtain "in situ", in the technical
periodic maintenance by using tablet, mobile telephones, PDA or similar, the information
concerning the status of the pressure gauge.
FIELD OF APPLICATION
[0003] In the present specification a control system of fire protection facilities is described,
which is applicable for installation in all types of buildings, and, thus, is applicable
in public institutions, shopping centres, health and educational centres and residential
buildings, as well as in all types of businesses and warehouses.
BACKGROUND OF THE INVENTION
[0004] As it is known, the security measures in general and, in particular fire safety measures
have been improved overtime with the object of minimizing the risk of the same.
[0005] Thus, the different components of a fire protection facility such as the pressure
group, the equipped fire hydrants and the fire extinguishers are provided with pressure
gauges that allow knowing that the pressure is the optimal and for this, regular inspections
are carried out.
[0006] Despite this, at any time a pressure leak may occur rendering the corresponding component
useless, not being aware of it until an "in situ" inspection is performed, such that
if said component had to be used during that interval of time it will not be possible,
and this may have fatal consequences.
[0007] This problem is exacerbated in those rooms of the facility that are enclosed with
restricted access and which are only checked when performing the corresponding inspection
of the facility by the maintenance services, so they may be unusable and this is not
detected until an inspection. Thus, the discharge of automatic fire extinguishers
can occur in burners or boilers where no one accesses until the inspection and that
therefore said area is unprotected.
[0008] Likewise, it may also be the case that the pressure group does not have the correct
pressure whereby in the event of use of the equipped fire hydrants there will not
be the sufficient pressure, with the added disadvantage that by not having the correct
pressure the pumps work without enough pressure and they can be damaged and the facility
is left unprotected.
[0009] Similarly, the fire extinguishers may lose pressure, they can be discharged or can
be stolen, leaving the area unprotected, such that, normally, there is no evidence
of it until there is an inspection. Exceptionally, it may be the case that, in those
components that are exposed such as fire extinguishers, someone is aware of the lack
of pressure or even of the lack of a fire extinguisher and can give notice, although
these are very sporadic situations.
[0010] On the other hand, there can be faulty maintenance by the maintenance company of
the facility, by carelessness or by lack of the corresponding element, and therefore
not being in conditions to be used.
[0011] Ultimately the real fact is that although there may be a fire protection facility
properly mounted it may occur that the same is not in the proper conditions of use
and therefore in the case of having to make use of it, it does not accomplish its
function.
[0012] On the other hand, we can consider document
EP 12 38 2288, of the same owners of the present document, wherein a control system of fire protection
facilities is described, based on providing the pressure gauges of all the components
of the facility with a LED light and a communication via radio or wiring, so that,
on a pressure drop, they are easily visible using the LED light and through the communication
via radio or wiring they can transmit it to a control centre consisting of a monitoring
station of the signal that sends a warning by e-mail, telephone or SMS to the computer
that can be located at the client's location or at the maintenance company.
[0013] Notwithstanding the foregoing, an existing problem is that in the case of theft or
loss of a safety pin of the actuating lever of the fire extinguishers there are no
means that allow knowing this, so that, in these circumstances, the fire extinguishers
can lose pressure and extinguishing agent and, with this, efficiency or rendering
them inoperative.
DESCRIPTION OF THE INVENTION
[0014] With the object of solving the mentioned problems, the present specification describes
a control system of fire protection facilities that, being of the type of facilities
that have, at least, one pressure group and/or, at least, one equipped fire hydrant
and/or, at least, one fire extinguisher, comprises in addition:
√ at least, one pressure group equipped with a pressure gauge provided with a LED
light and means of communication via radio or wiring;
√ at least, one equipped fire hydrant equipped with a pressure gauge provided with
a LED light and means of communication via radio or wiring;
√ at least, one fire extinguisher equipped with a pressure gauge provided with a LED
light and means of communication via radio or wiring;
√ a control centre with, at least, one monitoring station responsible for receiving
the warning signal from the various components of the facility;
√ a warning receiving centre equipped with, at least, one computer receiving information
about the components of the facility from the monitoring station of the control centre
via SMS, e-mail or telephone and is connected to the mobile or land telephone network,
and the receiving centre may be in the facilities of the client or in the maintenance
company, and;
√ a storage database of the plane of the facility with the location of the different
components of the same,
such that the system is
characterized in that:
➢ the pressure gauges of all the components of the facility relating to pressure groups,
equipped fire hydrants and fire extinguishers, are provided with a power supply battery
and include Bluetooth transmission, and;
➢ the safety pin of the actuating lever of the fire extinguishers is directly associated
with the corresponding pressure gauge of the same.
[0015] Thus, in a first practical implementation, the safety pin, associated with the pressure
gauge is inserted, by one of its ends, in a small hole of the pressure gauge itself
in contact with the means of communication.
[0016] In a second practical implementation, the safety pin, associated with the pressure
gauge, will be connected to the same by means of a metallic or non-metallic element,
e.g. a wire or strand, inserted in a small hole of the pressure gauge itself in contact
with the means of communication.
[0017] In this way, in addition to the different benefits already listed in document
EP 12 38 2288, through the association of the safety pin to the pressure gauge means, it is provided
the additional advantage of being able to control if the safety pin has been tampered
with, primarily, if the same has been released, thus leaving the actuating lever of
the fire extinguisher free, such that it may be accidentally operated and the fire
extinguisher could lose effectiveness or could be discharged.
[0018] Likewise, by incorporating all the pressure gauges of the different components of
the facility Bluetooth transmission the technical periodic maintenance may be carried
out through a tablet, mobile telephone, PDA or the like in order to obtain the information
concerning the status of the pressure gauges "in situ".
[0019] Thus, the control system allows continuous monitoring of the fire protection facility
for checking the good condition of the same, which allows that all the components
are in perfect state of use.
[0020] To complement the description that will be carried out next, and with the object
of helping to a better understanding of the features of the invention, the present
specification is accompanied by a set of drawings, in the figures of which are represented
the most characteristic details of the invention in an illustrative manner and without
limitation.
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
Figure 1. It shows a schematic view of a practical implementation of a fire protection
facility formed by a pressure group, two equipped fire hydrants and a series of fire
extinguishers that are communicated via radio with a control station.
Figure 2. It shows a front view of a pressure gauge relating to a fire extinguisher
provided with a LED light, communication via radio, a battery and Bluetooth transmission
and which is associated to the safety pin of the same.
Figure 3. It shows a rear view of the pressure gauge of the previous figure and it
can be seen how the same is provided with a small hole in which the safety pin or
an element linked to the same fits, to be able to control a possible release of the
safety pin.
DESCRIPTION OF A PREFERRED EMBODIMENT
[0022] In view of the aforementioned figures and according to the adopted numbering it can
be seen how the control system of fire protection facilities is applicable in all
types of fire protection facilities having, at least, one pressure group, and/or,
at least, one equipped fire hydrant and/or, at least, one fire extinguisher, such
that on the basis of a system in which the pressure gauges of the different components
of the facility are equipped with a LED light and means of communication via radio
or equivalent, it is about providing with a battery and Bluetooth transmission all
the pressure gauges, while, in addition, the pressure gauges relating to the fire
extinguishers are associated with the safety pin of the actuating lever of the same.
[0023] In addition, the control system of the fire protection facility has a control centre
11 with, at least, one monitoring station 12 of the signal sent by the different components
of the facility, and said incidents are communicated, via e-mail, telephone or SMS,
to a computer 13 receiving information from the different components of the facility
and this is communicated to the mobile or fixed telephone network, having, at least,
one storage database 14 of the plane of the facility to be controlled with the location
of the different components of the same.
[0024] The warning receiving centre equipped with a computer 18 receiving information about
the status of the facility will be associated with a keyboard and a screen 17 and
may be located in the place of the facility or in a different place as it may be in
the maintenance company.
[0025] Thus, according to figure 1 of the drawings and by way of example, the pressure group
1 is equipped with a pressure gauge 2 provided with a LED light 3, means of communication
via radio 4, a battery 5 and Bluetooth transmission 6.
[0026] In this way, If the pressure in the group falls below a certain parameter the warning
LED light 5 will be switched on and the means of communication via radio 4 will send
a communication to the station 12 of a control centre 11, in real time, notifying
the incidence produced to be able to act accordingly.
[0027] Likewise, the equipped fire hydrants 7 are provided with a pressure gauge 2' also
provided with a LED light 3', means of communication via radio 4', a battery 5' and
Bluetooth transmission 6', such that if the pressure of the same is below certain
parameter the warning LED light 3' will be switched on and the means of communication
via radio 4' will send a communication to the station 12 of a control centre 11, in
real time, notifying the incidence produced to be able to act accordingly. In the
same way, the different fire extinguishers 8 of the facility are equipped with a pressure
gauge 2" provided with a LED light 3", means of communication via radio 4", a battery
5" and Bluetooth transmission 6", such that if the pressure of any of them is not
the optimal, the warning LED light 3" will be switched on and the means of communication
via radio 4" will send a communication to the station 12 of a control centre 11, in
real time, notifying the incidence produced to be able to act accordingly.
[0028] In this way, the fire protection facility is perfectly monitored, so that any incident
that occurs in the same is notified in real time to a station 12 of a control centre
11 that will communicate it to a warning receiving centre 18 that may be located in
the maintenance company, in the facilities of the owner of the fire protection facility
or both, with a 24-hour monitoring.
[0029] Thus, at the moment of the occurrence of a failure in the facility and after it is
communicated to the station 12 of the control centre 11 through the customized software,
the component that sends the communication caused by the incidence produced is detected
on the plane of the facility, properly stored in the database 14, in which all the
components of the same are determined, so that its location is known.
[0030] Simultaneously with this, the red LED light is turned on, visual signal of the failure
of the corresponding component.
[0031] In addition, with the object of having complete control of the facility, and in particular
of the fire extinguishers or the like, the safety pin of the actuating lever 9 that
anchors it with respect to the fixed handle 10, is associated with the pressure gauge
2" to control a possible release of the same.
[0032] Thus, in a first practical implementation, the safety pin 15 of the fire extinguisher
can fit in a small hole 19 of the pressure gauge 2" being associated with the means
of communication 4", such that when the safety pin 15 is released it detects this
and sends a communication to the station 12 of the control centre 11 of the incidence
produced and having perfect knowledge of the fire extinguisher 8 in which the incidence
has occurred.
[0033] That is, when the safety pin 15 is not in contact with the means of communication,
a signal via radio will be emitted to the station 12 of the control centre 11 to give
notice of the incidence produced.
[0034] In a second practical implementation of the invention the safety pin 15 can be linked
to a metallic or non-metallic element, such as a strand or wire that will fit in the
small hole 19 of the pressure gauge 2" associated with the means of communication
4" to detect manipulation of the same.
[0035] This is intended to prevent the release of the safety pin 15 from the actuating lever
9 and the accidental discharge of the fire extinguisher 8 losing efficiency or being
rendered unusable.
[0036] On the other hand, by providing the pressure gauges of all the components of the
facility (pressure group, equipped fire hydrant and fire extinguishers) with Bluetooth
transmission 6, 6', 6", the information concerning the status of the pressure gauge
may be obtained "in situ", by means of a tablet, mobile telephone, PDA, or the like
in the technical periodic maintenance without relying on the central control system
that can be installed in the client's location or in the company responsible for its
maintenance.
[0037] In addition, the Bluetooth system can be activated from the control centre so that
the battery is not consumed except when performing the maintenance.
[0038] Depending on the size that the fire protection facility may have, the same may include
one or more radio repeaters 16 for the appropriate communication of the information.
[0039] The improvements made in the control system of fire protection facilities provide
the following advantages, in addition to those already mentioned in document
EP 1238228:
√ obtainment of the status of the pressure gauges of all the components of the facility,
by means of a tablet, mobile telephone, PDA or the like;
√ control of the possible theft or loss of the safety pin of the actuating lever of
the fire extinguishers, and;
√ activation of the Bluetooth system from the control centre when it is going to be
used, preventing the consumption of the battery included in the pressure gauges.
[0040] In short, the object is to be able to remedy any failure of the components of the
fire protection facility immediately when they occur, so that all the components are
always available.
1. Control system of fire protection facilities, being of the type of fire protection
facilities installed in all types of buildings and warehouses fitted with, at least,
one pressure group and/or, at least, one equipped fire hydrant and/or, at least, one
fire extinguisher with the corresponding function means, and which facilities comprise:
√ at least, one pressure group (1) equipped with a pressure gauge (2) provided with
a LED light (3) and means of communication via radio (4) or wiring;
√ at least, one equipped fire hydrant (7) equipped with a pressure gauge (2') provided
with a LED light (3') and means of communication via radio (4') or wiring;
√ at least, one fire extinguisher (8) equipped with a pressure gauge (2") provided
with a LED light (3") and means of communication via radio (4") or wiring;
√ a control centre (11) with, at least, one monitoring station (12) responsible for
receiving the warning signal from the various components of the facility;
√ a warning receiving centre (18) equipped with, at least, one computer (13) receiving
information about the components of the facility from the monitoring station (12)
of the control centre (11) via SMS, e-mail or telephone and is connected to the mobile
or land telephone network, and the warning receiving centre (18) may be in the facilities
of the client or in the maintenance company, and;
√ a storage database (14) of the plane of the facility to be controlled with the location
of the different components of the same,
characterized in that:
➢ the pressure gauge (2), (2') and (2") of all the components of the facility relating
to pressure group (1), equipped fire hydrant (7) and fire extinguisher (8), are provided
with a power supply battery (5), (5') and (5") and include Bluetooth transmission
(6), (6') and (6"), respectively, and;
➢ the safety pin (15) of the fire extinguishers or similar (8) is associated with
the corresponding pressure gauge (2") of the same.
2. Control system of fire protection facilities, according to claim 1, characterized in that the safety pin (15), associated with the pressure gauge (2") is inserted, by one
of its ends, in a small hole (19) of the pressure gauge itself in contact with the
means of communication (4").
3. Control system of fire protection facilities, according to claim 1, characterized in that the safety pin (15), associated with the pressure gauge (2"), is connected to the
same by means of an element, inserted in a small hole (19) of the pressure gauge itself
(2") in contact with the means of communication (4").