CN206532380U - A kind of smokescope monitoring system for structural fire protection - Google Patents
A kind of smokescope monitoring system for structural fire protection Download PDFInfo
- Publication number
- CN206532380U CN206532380U CN201720129665.1U CN201720129665U CN206532380U CN 206532380 U CN206532380 U CN 206532380U CN 201720129665 U CN201720129665 U CN 201720129665U CN 206532380 U CN206532380 U CN 206532380U
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- CN
- China
- Prior art keywords
- smokescope
- monitoring system
- fire protection
- central controller
- structural fire
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Abstract
The utility model discloses a kind of smokescope monitoring system for structural fire protection, including central controller, data comparator, data processor and three smokescope sensor groups, the central controller is bi-directionally connected by network communication module with Internet of Things, and the output end of central controller and the input of data comparator are connected, and the input of data comparator and the output end of data processor are connected.This is used for the smokescope monitoring system of structural fire protection, using three kinds of different smokescope sensor groups, smokescope data in building everywhere are gathered in real time, may be such that the system has the effect that detection range is wide, detection fault rate is low, meet the large-range monitoring requirement of construction area;Secondly, in the Real-time Smoke excessive concentration that some smokescope sensor group is gathered, audible and visible alarm can be sent automatically so that the smokescope monitoring system for being used for structural fire protection has the function of intelligent alarm.
Description
Technical field
The utility model is related to structural fire protection technical field, and specially a kind of smokescope for structural fire protection monitors system
System.
Background technology
Building Fire Fighting System mainly has indoor and outdoor hydrant system and water sprinkler system, and its design considerations is advised and height to build
Rule, go back water sprinkler system design specification, and according to building property, area, building height and building occupancy etc., it defines setting field
Institute, setting requirements etc. are provided.Its system mainly has fire cistern, fire pump, fire hydrant, wet alarm valve group, shower nozzle, current to refer to
Show device, pressure switch, warning water system and corresponding automatic alarm system composition.
However, traditional smokescope monitoring system, detection range is small, the large-range monitoring for not meeting construction area will
Ask;Secondly, in the Real-time Smoke excessive concentration that some smokescope sensor group is gathered, traditional smokescope monitoring system
Function without intelligent alarm.Therefore, a kind of it is proposed that smokescope monitoring system for structural fire protection.
Utility model content
The purpose of this utility model is to provide a kind of smokescope monitoring system for structural fire protection, above-mentioned to solve
Traditional smokescope monitoring system is proposed in background technology, detection range is small, the large-range monitoring for not meeting construction area will
Ask;Secondly, in the Real-time Smoke excessive concentration that some smokescope sensor group is gathered, traditional smokescope monitoring system
The problem of without intelligent alarm function.
To achieve the above object, the utility model provides following technical scheme:A kind of smokescope for structural fire protection
Monitoring system, including central controller, data comparator, data processor and three smokescope sensor groups, it is described in
Centre controller be bi-directionally connected by network communication module with Internet of Things, and central controller output end and data comparator it is defeated
Enter end connection, and the input of data comparator and the output end of data processor are connected, the input of the data processor leads to
A/D converter is crossed to pass with the first smokescope sensor group, the second smokescope sensor group and the 3rd smokescope respectively
The output end connection of sensor group.
The input of the output end of the data processor and central controller is connected, the output end of the central controller with
The input of the input connection of display module, the feedback output end of the data processor and central controller is connected, in this
Entreat input of two output ends respectively with buzzer siren and flash alarm of controller be connected, the central controller and
Memory module is bi-directionally connected.
The input of the central controller and the output end of power module are connected, and the output end of the power module is also distinguished
Connect with the input of the first smokescope sensor group, the second smokescope sensor group and the 3rd smokescope sensor group
Connect.
It is preferred that, the first smokescope sensor group is separately positioned on the NIS-09 in building everywhere including several
Type ion type smog concentration sensor.
It is preferred that, the second smokescope sensor group is separately positioned on the MQ-2 types in building everywhere including several
Semiconductor Smoke Sensor.
It is preferred that, the 3rd smokescope sensor group is separately positioned on the GB2588 in building everywhere including several
Type photoelectric smoke detector.
It is preferred that, the central controller uses model Pentium E2210 integrated CPU, and the central controller is set
There are multiple Wiring ports.
It is preferred that, the data processor uses model SW-800 injection data processor.
It is preferred that, the memory module uses model 24AA01T-I/OT eeprom memory.
It is preferred that, the display module uses digital display screen.
It is preferred that, the network communication module is logical using 3G network communication module or 4G network communication modules or wireless network
Believe module.
It is preferred that, the power module uses utility grid.
Compared with prior art, the beneficial effects of the utility model are:This is used for the smokescope monitoring system of structural fire protection
Smokescope data in building everywhere, using three kinds of different smokescope sensor groups, are gathered, can made by system in real time
Obtaining the system has the effect that detection range is wide, detection fault rate is low, meets the large-range monitoring requirement of construction area;Secondly,
In the Real-time Smoke excessive concentration that some smokescope sensor group is gathered, pass through A/D converter, data processor, data
The cooperation of comparator and central controller, can drive buzzer siren and flash alarm to be operated automatically, send sound
Light alarm so that the smokescope monitoring system for being used for structural fire protection has the function of intelligent alarm.
Brief description of the drawings
Fig. 1 is the utility model system principle schematic diagram.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is carried out
Clearly and completely describe, it is clear that described embodiment is only a part of embodiment of the utility model, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belongs to the scope of the utility model protection.
Referring to Fig. 1, the utility model provides a kind of technical scheme:A kind of smokescope for structural fire protection monitors system
System, including central controller, data comparator, data processor and three smokescope sensor groups, central controller lead to
Network communication module is crossed to be bi-directionally connected with Internet of Things, and the output end of central controller and the input of data comparator are connected,
And the input of data comparator and the output end of data processor are connected, the input of the data processor is changed by A/D
Device is defeated with the first smokescope sensor group, the second smokescope sensor group and the 3rd smokescope sensor group respectively
Go out end connection.
The output end of data processor and the input of central controller are connected, the output end of the central controller and display
The input connection of module, the feedback output end of data processor and the input of central controller are connected, the central controller
Input of two output ends respectively with buzzer siren and flash alarm be connected, the central controller and memory module
It is bi-directionally connected.
The output end of the input of central controller and power module is connected, and the output end of the power module is also respectively with the
The input connection of one smokescope sensor group, the second smokescope sensor group and the 3rd smokescope sensor group.
In the utility model:First smokescope sensor group is separately positioned on the NIS- in building everywhere including several
09 type ion type smog concentration sensor.
In the utility model:Second smokescope sensor group is separately positioned on the MQ-2 in building everywhere including several
Type semiconductor Smoke Sensor.
In the utility model:3rd smokescope sensor group includes several and is separately positioned in building everywhere
GB2588 type photoelectric smoke detectors.
In the utility model:Central controller uses model Pentium E2210 integrated CPU, the central controller
Provided with multiple Wiring ports.
In the utility model:Data processor uses model SW-800 injection data processor.
In the utility model:Memory module uses model 24AA01T-I/OT eeprom memory.
In the utility model:Display module uses digital display screen.
In the utility model:Network communication module uses 3G network communication module or 4G network communication modules or wireless network
Communication module.
In the utility model:Power module uses utility grid.
Operation principle:The utility model is before use, staff is at central controller, by network communication module from mutual
Transfer the interval of acceptance of smokescope in networking, and using the maximum in interval of acceptance as smokescope alarm threshold value send to
In data comparator, the default comparison value of smokescope is used as.
The utility model is in use, pass through the first smokescope sensor group, the second smokescope sensor group and
Three smokescope sensor groups are gathered in real time to smokescope everywhere in building, and by the smokescope mould gathered in real time
Intend information to send to A/D converter progress analog-to-digital conversion, the smokescope digital information after analog-to-digital conversion is sent to data
Signal transacting is carried out in reason device, is sent in the smokescope data after by processing into data comparator, and in data comparator
Default comparison value be compared, if showing more afterwards, the smokescope value that gathers in real time is less than default comparison value, center control
Device processed receives relevant information, and drives display module to carry out numerical monitor to smokescope data, while by smokescope data
Transmission carries out data storage into memory module;If data comparator shows the smokescope value gathered in real time higher than pre- more afterwards
If comparison value, then data comparator is sent in relevant information to central controller by feedback output end, and central controller is received
After feedback information, driving buzzer siren and flash alarm carry out sound and light alarm, so as to reach the function of intelligent alarm.
In summary:This is used for the smokescope monitoring system of structural fire protection, is sensed using three kinds of different smokescopes
Smokescope data everywhere in building are gathered by device group in real time, may be such that the system has that detection range is wide, detect former
The low effect of barrier rate, meets the large-range monitoring requirement of construction area;Secondly, the reality gathered in some smokescope sensor group
When smokescope it is too high when, by the cooperation of A/D converter, data processor, data comparator and central controller, can from
It is dynamic to drive buzzer siren and flash alarm to be operated, send audible and visible alarm so that this is used for the smog of structural fire protection
Concentration monitoring system has the function of intelligent alarm.
It should be noted that herein, such as first and second or the like relational terms are used merely to a reality
Body or operation make a distinction with another entity or operation, and not necessarily require or imply these entities or deposited between operating
In any this actual relation or order.Moreover, term " comprising ", "comprising" or its any other variant are intended to
Nonexcludability is included, so that process, method, article or equipment including a series of key elements not only will including those
Element, but also other key elements including being not expressly set out, or also include being this process, method, article or equipment
Intrinsic key element.In the absence of more restrictions.By sentence " including one ... the key element limited, it is not excluded that
Also there is other identical element in the process including the key element, method, article or equipment ".
The correlation module being related in the system is hardware system module or is prior art Computer Software journey
The functional module that sequence or agreement are combined with hardware, computer software programs or agreement involved by the functional module itself
The technology being well known to those skilled in the art, it is not the improvements of the system;The system is improved between each module
Interaction relationship or annexation, be that the overall construction of system is improved, to be solved with solving the system
Relevant art problem.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out in the case where not departing from principle of the present utility model and spirit a variety of changes, repaiies
Change, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.
Claims (10)
1. a kind of smokescope monitoring system for structural fire protection, including central controller, data comparator, data processor
And three smokescope sensor groups, it is characterised in that:The central controller is double by network communication module and Internet of Things
To connection, and the output end of central controller and the input of data comparator are connected, and the input and number of data comparator
Connected according to the output end of processor, the input of the data processor is sensed with the first smokescope respectively by A/D converter
The output end connection of device group, the second smokescope sensor group and the 3rd smokescope sensor group;
The output end of the data processor and the input of central controller are connected, the output end of the central controller and display
The input connection of module, the feedback output end of the data processor and the input of central controller are connected, center control
Input of two output ends of device processed respectively with buzzer siren and flash alarm is connected, the central controller and storage
Module is bi-directionally connected;
The output end of the input of the central controller and power module is connected, and the output end of the power module is also respectively with the
The input connection of one smokescope sensor group, the second smokescope sensor group and the 3rd smokescope sensor group.
2. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:Described
One smokescope sensor group includes several NIS-09 type ion type smogs concentration being separately positioned in building everywhere and sensed
Device.
3. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:Described
Two smokescope sensor groups are separately positioned on the MQ-2 type semiconductor Smoke Sensors in building everywhere including several.
4. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:Described
Three smokescope sensor groups are separately positioned on the GB2588 type photoelectric smoke detectors in building everywhere including several.
5. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:In described
Controller is entreated to use model Pentium E2210 integrated CPU, the central controller is provided with multiple Wiring ports.
6. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:The number
Model SW-800 injection data processor is used according to processor.
7. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:It is described to deposit
Store up the eeprom memory that module uses model 24AA01T-I/OT.
8. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:It is described aobvious
Show that module uses digital display screen.
9. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:The net
Network communication module uses 3G network communication module or 4G network communication modules or wireless network communication module.
10. a kind of smokescope monitoring system for structural fire protection according to claim 1, it is characterised in that:It is described
Power module uses utility grid.
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CN201720129665.1U CN206532380U (en) | 2017-02-14 | 2017-02-14 | A kind of smokescope monitoring system for structural fire protection |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108597171A (en) * | 2018-08-08 | 2018-09-28 | 阜阳力佳门业有限公司 | A kind of smokescope monitoring and alarming system facilitating estate management |
CN110608982A (en) * | 2018-06-15 | 2019-12-24 | 北京京东尚科信息技术有限公司 | Detection method, detection device, mobile equipment, electronic equipment and storage medium |
-
2017
- 2017-02-14 CN CN201720129665.1U patent/CN206532380U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110608982A (en) * | 2018-06-15 | 2019-12-24 | 北京京东尚科信息技术有限公司 | Detection method, detection device, mobile equipment, electronic equipment and storage medium |
CN108597171A (en) * | 2018-08-08 | 2018-09-28 | 阜阳力佳门业有限公司 | A kind of smokescope monitoring and alarming system facilitating estate management |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170929 Termination date: 20180214 |