CN205163995U - Intelligence fire hydrant - Google Patents

Intelligence fire hydrant Download PDF

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Publication number
CN205163995U
CN205163995U CN201520907298.4U CN201520907298U CN205163995U CN 205163995 U CN205163995 U CN 205163995U CN 201520907298 U CN201520907298 U CN 201520907298U CN 205163995 U CN205163995 U CN 205163995U
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China
Prior art keywords
fire hydrant
central controller
sensor
hydrant
valve
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Active
Application number
CN201520907298.4U
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Chinese (zh)
Inventor
尚昭琪
幸敏力
宛如意
李晓如
彭烨
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Shenzhen Water Technology Co., Ltd.
Original Assignee
Shenzhen Kaitianyuan Automation Engineering Co Ltd
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Priority to CN201520907298.4U priority Critical patent/CN205163995U/en
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Abstract

The utility model relates to a fire -fighting equipment technical field provides an intelligence fire hydrant, and this intelligence fire hydrant includes: fire hydrant valve, fire hydrant play water end (W. E. ), fire hydrant main part, fire hydrant bottom, fire hydrant block, the lantern ring, magnet, pressure transmitter, threading pipe and intelligent object, pressure transmitter are used for monitoring fire hydrant water pressure value size, and the intelligent object is used for monitoring the fire hydrant valve to be opened the valve time, and whether this intelligence fire hydrant can make the supervision department command the water pressure of fire hydrant, the time that the fire hydrant valve was opened in real time, also can leak or artificial illegal water intaking by effectual supervision fire hydrant.

Description

A kind of intelligent fire hydrant
Technical field
The utility model relates to fire-fighting equipment technical field, especially relates to a kind of intelligent fire hydrant.
Background technology
Fire hydrant is a kind of fixing fire-fighting instrument, is mainly used in controlling combustible, isolated oxidizer, eliminating ignition source.Fire hydrant mainly implements fire extinguishing for fire fighting truck from municipal water supply pipe network or the water intaking of outdoor fire fighting water supply network, and also directly can connect water-band, hydraulic giant goes out above-water method, be one of important fire fighting device fought a fire.But, in actual applications, many fire hydrants because of by people for enclosing, pile things on, damage and cisco unity malfunction, cause scene of fire without available fire hydrant, the window of opportunity incuring loss through delay fire extinguishing, affect urban fire control safety.Therefore people expect the state can grasping fire hydrant at any time, and when fire rises, each fire hydrant is available.
Prior art is carried out science and technology monitoring to fire hydrant and has all been come by installing monitoring device on fire hydrant, but existing supervising device monitoring function is limited, cannot time of being opened of the hydraulic pressure of Real-Time Monitoring fire hydrant and hydrant valve.
Utility model content
The purpose of this utility model is to provide a kind of intelligent fire hydrant and monitoring system thereof, the matter of time that the supervising device monitoring function being intended to solve existing fire hydrant is limited, the hydraulic pressure that cannot monitor fire hydrant and hydrant valve are opened.
The utility model additionally provides a kind of intelligent fire hydrant, comprises bottom hydrant valve, fire hydrant water side, fire hydrant main body, fire hydrant, it is characterized in that, also comprise: fire hydrant block, the collar, magnet, pressure transmitter, penetration pipe, intelligent object.
Fire hydrant block is arranged on the top of fire hydrant main body.
Collar lock stud is fixed on hose valve door pivot.
Magnet is embedded on the described collar.
Intelligent object is fixed in described fire hydrant block, comprises sensor assembly, central controller, communication module.
Sensor assembly comprises Miniature magnetic switch sensor, Miniature magnetic switch sensor is fixed on outside described collar same level, when the magnet transposition on the collar and Miniature magnetic open sensor relative position, trigger described Miniature magnetic switch sensor switch to close, and switch closure signals is flowed to central controller, central controller starts timing after receiving switch closure signals, monitoring hydrant valve duration of valve opening.
Pressure transmitter is installed on bottom fire hydrant, for monitoring fire hydrant hydraulic pressure value size, and gives described central controller by the signal that monitors by cable transfer.
Penetration pipe is arranged on the side of fire hydrant main body, for the cable between setting pressure transmitter and central controller.
Communication module is connected with described central controller, for the data after described central controller process are sent to client.
Further, sensor assembly also comprises microswitch sensor, and microswitch sensor contacts with fire hydrant body top, and signal is flowed to central controller by filter circuit, and whether central controller monitoring intelligent module moves.
Further, sensor assembly also comprises roller vibroswitch sensor, when fire hydrant angle of inclination is greater than the angle of roller vibroswitch sensor self setting, triggers filter circuit and sends signal to central controller.
Further, every 90 degree of Miniature magnetic switch sensor same level outside the described collar arranges one.
Further, intelligent object also comprises identification module, for IC-card authentication.
The utility model intelligence fire hydrant and the beneficial effect of monitoring system thereof: the time that supervision department can control the hydraulic pressure of fire hydrant in real time, hydrant valve is opened, also effectively can supervise fire hydrant and whether leak or artificial illegal water intaking.
Accompanying drawing explanation
The fractionation structural representation of the intelligent fire hydrant that Fig. 1 provides for the utility model embodiment;
The intelligent object structured flowchart that Fig. 2 provides for the utility model embodiment;
The sensor module structure block diagram that Fig. 3 provides for the utility model embodiment;
The Miniature magnetic switch sensor work structuring schematic diagram that Fig. 4 provides for the utility model embodiment.
Detailed description of the invention
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
The fractionation structure chart of the intelligent fire hydrant that Fig. 1 provides for the utility model embodiment, with reference to figure 1, the intelligent fire hydrant that the utility model embodiment provides, to comprise bottom hydrant valve 14, fire hydrant water side 15, fire hydrant main body 16, fire hydrant 17, fire hydrant block 13, the collar 12, magnet 11, pressure transmitter 18, penetration pipe 19, intelligent object 10.
Fire hydrant block 13 is arranged on the top of fire hydrant main body 16, for the protection of the element in fire hydrant block 13.
Intelligent object 10 is fixed in fire hydrant block 13, and with reference to figure 2, intelligent object 10 comprises identification module 102, sensor assembly 101, central controller 103, communication module 104.
With reference to figure 3, sensor assembly 101, comprise Miniature magnetic switch sensor 1011, microswitch sensor 1012, roller vibroswitch sensor 1013, whether Miniature magnetic switch sensor 1011 for monitoring, open by hydrant valve, whether microswitch sensor 1012 moves for monitoring intelligent module 10, whether roller vibroswitch sensor 1013 is toppled over for monitoring fire hydrant, and transmitted signal to central controller 103 respectively.
The collar 12 lock stud 9 is fixed in hydrant valve 14 rotating shaft, magnet 11 is embedded on the collar 12, magnet 11 and the synchronous rotation of hydrant valve 14 can be ensured like this, and same level is provided with Miniature magnetic switch sensor 1011 outside rotating shaft, Miniature magnetic switch sensor 1011 is connected with central controller 103, starting magnet 11 arranges not at the relative position of Miniature magnetic switch sensor 1011, when hydrant valve 14 rotating shaft does not have rotating opening, then Miniature magnetic switch sensor 1011 disconnects, when hydrant valve 14 rotating opening, the magnet 11 on the collar 12 is driven to rotate, when magnet 11 turns to Miniature magnetic switch sensor 1011 relative position, Miniature magnetic switch sensor 1011 closure state, and the signal of closure state is flowed to central controller 103, trigger central controller 103 and start timing, thus central controller 103 can monitor hydrant valve 14 duration of valve opening T.
With reference to figure 4, preferably, outside hydrant valve 14 rotating shaft, same level is every 90 degree of installations, 1 Miniature magnetic switch sensor 1011, when such hydrant valve 14 rotates maximum 90 degree, magnet 11 just can forward the relative position of Miniature magnetic switch sensor 1011 to, trigger Miniature magnetic switch sensor 1011 to close, start timing when central controller 103 receives closure signal, thus central controller 103 can monitor hydrant valve 14 duration of valve opening T more accurately.
Pressure transmitter 18 to be arranged on bottom fire hydrant on 17, pressure transmitter 18 is connected with central controller 103 by cable, wherein cable is arranged in penetration pipe 19, and penetration pipe 19 is arranged on the side of fire hydrant main body 16, pressure transmitter 18 the signal of the hydraulic pressure P monitored by cable transfer to central controller 103, when pressure transmitter 18 monitors fire hydrant hydraulic pressure P lower than national minimum standard 0.14MPA, hydraulic pressure P information is sent to central controller 103 by pressure transmitter 18 cable, and central controller 103 will send the not enough warning message of hydraulic pressure.
Once hydrant valve 14 is opened, central controller 103 is according to monitoring the fire hydrant hydraulic pressure P signal and hydrant valve duration of valve opening T that obtain, fire hydrant water yield is calculated: Q=T* (71.446P+24.198) by conventional fitting formula, wherein T is hydrant valve 14 duration of valve opening, P is that fire hydrant hydraulic pressure is strong, and Q is fire hydrant water yield, and wherein the unit of T is h, the unit of P is the unit of MPa, Q is m 3, two constant amounts 71.446,24.198 are the empirical value that comprehensive a large amount of statistics draws.
Microswitch sensor 1012 is fixed in fire hydrant block 13, and with the tight contact therewith of fire hydrant main body 16, microswitch sensor 1012 is also connected with central controller 103, normal condition microswitch sensor 1012 disconnects, when microswitch sensor 1012 and fire hydrant main body 16 top portion from, trigger microswitch sensor 1012 and be in closure state, and the signal of closure state is flowed to central controller 103 by filter circuit, trigger central controller 103 and send warning message, central controller 103 produces false alarm to prevent microswitch sensor 1012 slight fluctuations, being provided with a threshold time is 10 seconds, after microswitch sensor 1012 and fire hydrant main body 16 top disengaging time are greater than 10 seconds, central controller 103 just sends warning message.
Roller vibroswitch sensor 1013 is provided with 30 degree, 45 degree, etc. different models, roller vibroswitch sensor 1013 is installed in fire hydrant block 13, when fire hydrant angle of inclination is greater than the degree angle of model setting own, roller vibroswitch sensor 1013 can be triggered send signal and flow to central controller 103 by filter circuit, thus central controller 103 reaches the object whether monitoring fire hydrant topples over, such as we select model to arrange is the roller vibroswitch sensor 1013 of 45 degree, when fire hydrant angle of inclination is greater than 45 degree, roller vibroswitch sensor 1013 can be triggered and flow to central controller 103 by filter circuit, thus central controller 103 confirms that fire hydrant is toppled over, send corresponding alarm signal and notify that relevant staff arrives on-site maintenance in time.Can fire hydrant be caused to topple over due to human factor or other accidents etc. by Real-Time Monitoring like this, the personnel that such as steal steal fire hydrant and cause fire hydrant to be toppled over.
Identification module 102, comprise RFID identifier, for judging IC-card authentication, by at embedded main board integrated rfid identifier, and be the corresponding IC-card of each maintenance management staffing, can judge whether the opening and closing of fire hydrant belongs to conventional maintenance fast, realize the intelligent management of fire hydrant, before attendant safeguards fire hydrant, first will brush IC-card, judge next whether conventional maintenance is belonged to the operation of fire hydrant by this operation, if not brush IC-card before safeguarding, then thinking following is all illegal to the every operation of fire hydrant, system can be reported to the police, and go before notifying related personnel to process illegal event.
Communication module 104 is connected with central controller 103, comprises GPRS module, for direct, signal after process is sent to client.
One or more technical schemes that the utility model embodiment provides, have following technique effect at least:
1) owing to have employed Miniature magnetic switch sensor 1011, whether intelligent fire hydrant can be opened by Real-Time Monitoring hydrant valve 14, flows to central controller 103 by signal, and central controller 103 can also monitor hydrant valve duration of valve opening T.
2) owing to have employed pressure transmitter 18, intelligence fire hydrant can the hydraulic pressure P value of Real-Time Monitoring fire hydrant, central controller 103 is believed according to monitoring the fire hydrant hydraulic pressure P that obtains and hydrant valve duration of valve opening T, fire hydrant water yield can be calculated by conventional fitting formula, fire hydrant is leaked or artificial illegal water intaking, can Data support be provided.
3) owing to have employed microswitch sensor 1012, whether intelligent fire hydrant can leave fire hydrant main body 16 by Real-Time Monitoring intelligent object 10, and intelligent object 10 also namely can be prevented stolen.
4) owing to have employed roller vibroswitch sensor 1013, whether intelligent fire hydrant can topple over by Real-Time Monitoring fire hydrant.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., all should be included within protection domain of the present utility model.

Claims (5)

1. an intelligent fire hydrant, comprises bottom hydrant valve, fire hydrant water side, fire hydrant main body, fire hydrant, it is characterized in that, also comprise: fire hydrant block, the collar, magnet, pressure transmitter, penetration pipe, intelligent object;
Described fire hydrant block is arranged on the top of fire hydrant main body;
Described collar lock stud is fixed on hose valve door pivot;
Described magnet is embedded on the described collar;
Described intelligent object is fixed in described fire hydrant block, comprises sensor assembly, central controller, communication module;
Described sensor assembly comprises Miniature magnetic switch sensor, Miniature magnetic switch sensor is fixed on outside described collar same level, when the magnet transposition on the collar and Miniature magnetic open sensor relative position, trigger described Miniature magnetic switch sensor switch to close, and switch closure signals is flowed to central controller, central controller starts timing after receiving switch closure signals, monitoring hydrant valve duration of valve opening;
Described pressure transmitter is installed on bottom fire hydrant, for monitoring fire hydrant hydraulic pressure value size, and gives described central controller by the signal that monitors by cable transfer;
Described penetration pipe is arranged on the side of fire hydrant main body, for the cable between setting pressure transmitter and central controller;
Described communication module is connected with described central controller, for the data after described central controller process are sent to client.
2. the intelligent fire hydrant of one according to claim 1, it is characterized in that: described sensor assembly also comprises microswitch sensor, microswitch sensor contacts with fire hydrant body top, and signal is flowed to central controller by filter circuit, whether central controller monitoring intelligent module moves.
3. the intelligent fire hydrant of one according to claim 1, it is characterized in that: described sensor assembly also comprises roller vibroswitch sensor, when fire hydrant angle of inclination is greater than the angle of roller vibroswitch sensor self setting, triggers filter circuit and send signal to central controller.
4. the one intelligence fire hydrant according to any one of claims 1 to 3, is characterized in that: every 90 degree of described Miniature magnetic switch sensor same level outside the described collar arranges one.
5. the one intelligence fire hydrant according to any one of claims 1 to 3, it is characterized in that, described intelligent object also comprises identification module, for IC-card authentication.
CN201520907298.4U 2015-11-13 2015-11-13 Intelligence fire hydrant Active CN205163995U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520907298.4U CN205163995U (en) 2015-11-13 2015-11-13 Intelligence fire hydrant

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106193194A (en) * 2016-09-22 2016-12-07 赵永军 A kind of intelligent integral remotely detects water pressure fire hydrant
CN106669086A (en) * 2016-11-25 2017-05-17 王小月 Intelligent fire hydrant
CN107503399A (en) * 2017-07-28 2017-12-22 福建天广消防有限公司 A kind of antitheft water monitoring system of outdoor fire hydrant
CN107866022A (en) * 2017-11-08 2018-04-03 麦克传感器股份有限公司西安分公司 A kind of integral and intelligent fire hydrant
CN109157789A (en) * 2018-09-13 2019-01-08 福建东方物联信息科技有限公司 A kind of intelligence fire hydrant
CN111298347A (en) * 2020-04-02 2020-06-19 合肥科大立安安全技术有限责任公司 Intelligent fire hydrant
CN112791339A (en) * 2021-01-11 2021-05-14 深圳市水务科技有限公司 Intelligent fire hydrant and fire hydrant monitoring method

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106193194A (en) * 2016-09-22 2016-12-07 赵永军 A kind of intelligent integral remotely detects water pressure fire hydrant
CN106193194B (en) * 2016-09-22 2018-07-06 赵永军 A kind of intelligent integral remote detection water pressure fire hydrant
CN106669086A (en) * 2016-11-25 2017-05-17 王小月 Intelligent fire hydrant
CN106669086B (en) * 2016-11-25 2018-08-24 温州中盟智能科技有限公司 A kind of intelligent fire bolt
CN107503399A (en) * 2017-07-28 2017-12-22 福建天广消防有限公司 A kind of antitheft water monitoring system of outdoor fire hydrant
CN107866022A (en) * 2017-11-08 2018-04-03 麦克传感器股份有限公司西安分公司 A kind of integral and intelligent fire hydrant
CN109157789A (en) * 2018-09-13 2019-01-08 福建东方物联信息科技有限公司 A kind of intelligence fire hydrant
CN111298347A (en) * 2020-04-02 2020-06-19 合肥科大立安安全技术有限责任公司 Intelligent fire hydrant
CN112791339A (en) * 2021-01-11 2021-05-14 深圳市水务科技有限公司 Intelligent fire hydrant and fire hydrant monitoring method

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GR01 Patent grant
CP01 Change in the name or title of a patent holder
CP01 Change in the name or title of a patent holder

Address after: Futian District Shennan Road Shenzhen city Guangdong province 518000 No. 1019 Wande building room 705

Patentee after: Shenzhen Water Technology Co., Ltd.

Address before: Futian District Shennan Road Shenzhen city Guangdong province 518000 No. 1019 Wande building room 705

Patentee before: Shenzhen Kaitianyuan Automation Engineering Co., Ltd.