CN212926278U - Intelligent modular fire hydrant - Google Patents

Intelligent modular fire hydrant Download PDF

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Publication number
CN212926278U
CN212926278U CN202021550820.5U CN202021550820U CN212926278U CN 212926278 U CN212926278 U CN 212926278U CN 202021550820 U CN202021550820 U CN 202021550820U CN 212926278 U CN212926278 U CN 212926278U
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China
Prior art keywords
fire hydrant
stifle
pressure gauge
shell
module
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CN202021550820.5U
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Chinese (zh)
Inventor
缪彩虹
黄学礼
修志芳
蒋荣金
朱建锋
沈凯明
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Hangzhou Zhibin Technology Co ltd
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Hangzhou Zhibin Technology Co ltd
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Priority to CN202021550820.5U priority Critical patent/CN212926278U/en
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Abstract

The utility model discloses a belong to fire hydrant technical field, specifically be an intelligent modular fire hydrant, including shell, stifle and pressure gauge, the preceding lateral wall threaded connection of shell the stifle, the preceding lateral wall of shell passes through screw fixed connection the pressure gauge, bolt fixedly connected with top cap is passed through at the top of shell, bolt fixedly connected with main flange and auxiliary flange are passed through to the bottom of shell, the inside reservation of stifle has stifle storehouse, and this kind of intelligent modular fire hydrant, through the combination application of accessory, the stifle intelligence stifle of fire hydrant is installed on the cock body, can be used for monitoring the water state of fire hydrant. The intelligent pressure gauge of the fire hydrant is installed at the valve clack of the lower portion of the fire hydrant body and can be used for monitoring the pipe network pressure of the fire hydrant, and the pipe network pressure measuring device is respectively provided with a carrying pairing module, so that the purpose of modularization installing is achieved, the intelligent pressure gauge is flexibly transformed, the modules are added according to needs, data are merged and sent as one device, and the cost can be reduced.

Description

Intelligent modular fire hydrant
Technical Field
The utility model relates to a fire hydrant technical field specifically is an intelligent modular fire hydrant.
Background
A fire hydrant, called fire hydrant formally, is a fixed fire-fighting equipment, and mainly has the functions of controlling combustible substances, isolating combustion-supporting substances and eliminating ignition sources. It is divided into indoor fire hydrant and outdoor fire hydrant.
The fire extinguishing system comprises an outdoor fire hydrant system, an indoor fire hydrant system and a fire extinguisher system, and some fire extinguishing systems also comprise an automatic spraying system, a water cannon system, a gas fire extinguishing system, a fire detection system, a water mist system and the like. The fire hydrant suit is generally formed by combining a fire box, a fire hose, a water gun, a connecting buckle, a bolt, a clamp and the like, and the fire hydrant is mainly used for a fire truck to take water from a municipal water supply network or an outdoor fire water supply network to put out a fire or can be directly connected with the water hose and the water gun to discharge water to put out a fire. Therefore, indoor and outdoor fire hydrant systems are also one of the important fire fighting devices for fighting fires.
The existing fire hydrant is lack of an intelligent control mode in use, the purpose of modular installation cannot be achieved in the face of accessory combination, the transformation mode is inflexible, and in the process of matching data transmission, the cost investment on sending equipment is large, and the existing fire hydrant is not beneficial to large-scale use and fund saving.
Disclosure of Invention
An object of the utility model is to provide an intelligent modular fire hydrant to solve the current fire hydrant in use who provides in the above-mentioned background art, self lacks intelligent control mode, can't reach the modular purpose of installing additional in facing the accessory combination, reforms transform the mode dumb, and in cooperation data transmission, to the cost input of sending equipment great, is unfavorable for using on a large scale and the problem of saving fund.
In order to achieve the above object, the utility model provides a following technical scheme: an intelligent modular fire hydrant comprises a shell, a blank cap and a pressure gauge, wherein the front side wall of the shell is in threaded connection with the blank cap, the front side wall of the shell is fixedly connected with the pressure gauge through screws, the top of the shell is fixedly connected with a top cover through bolts, the bottom of the shell is fixedly connected with a main flange and an auxiliary flange through bolts, a blank cap bin is reserved in the blank cap, the inner part of the cover closing bin is electrically connected with a main sensor, a main control module and a near-end wireless communication module, the main sensor, the main control module and the near-end wireless communication module are electrically connected in series, the interior of the pressure gauge is electrically connected with an auxiliary sensor, an auxiliary control module and a wireless remote transmission module, the auxiliary sensor, the auxiliary control module and the wireless remote transmission module are electrically connected in series, and the blank cap and the pressure gauge are both fixedly connected with a matching module through screws.
Preferably, the bottom of the auxiliary flange is fixedly connected with a bottom connecting pipe through a bolt, and a pipe hole is reserved in the front side wall of the bottom connecting pipe.
Preferably, the near-end wireless communication module includes ble, lora and zigbee.
Preferably, the wireless remote transmission module comprises lora, gprs, 3g, 4g and 5 g.
Preferably, the pairing module uses a pairing tool, and the pairing tool is a handheld device with a near-end wireless communicator.
Compared with the prior art, the beneficial effects of the utility model are that: the intelligent modular fire hydrant has the advantages that through the combined application of the accessories, the intelligent blank cap of the fire hydrant is installed on the hydrant body, and the water using state of the fire hydrant can be monitored. The intelligent pressure gauge of the fire hydrant is installed at the valve clack of the lower portion of the fire hydrant body and can be used for monitoring the pipe network pressure of the fire hydrant, and the pipe network pressure measuring device is respectively provided with a carrying pairing module, so that the purpose of modularization installing is achieved, the intelligent pressure gauge is flexibly transformed, the modules are added according to needs, data are merged and sent as one device, and the cost can be reduced.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
In the figure: 100 outer shell, 110 top cover, 120 main flange, 130 auxiliary flange, 140 bottom connecting pipe, 150 pipe holes, 200 blank cap, 210 blank cap bin and 300 pressure gauge.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model provides an intelligent modular fire hydrant, which is convenient for modular assembly and cost reduction through the combined application of accessories, please refer to fig. 1, comprising a shell 100, a blank cap 200 and a pressure gauge 300;
referring to fig. 1 again, the top of the housing 100 has a top cover 110, specifically, the top of the housing 100 is fixedly connected with the top cover 110 through bolts, and the bottom of the housing 100 is fixedly connected with a main flange 120 and an auxiliary flange 130 through bolts;
referring to fig. 1 again, the rear side wall of the blank cap 200 is connected with the front side wall of the housing 100, specifically, the front side wall of the housing 100 is in threaded connection with the blank cap 200, a blank cap bin 210 is reserved inside the blank cap 200, a main sensor, a main control module and a near-end wireless communication module are electrically connected inside the blank cap bin 210, the main sensor, the main control module and the near-end wireless communication module are electrically connected in series, wherein the blank cap 200 is provided with a low-power mcu, a near-end wireless communication (such as ble \ lora \ zigbee) module, a water outlet sensor, an MEMS sensor and a lithium battery in a matching manner;
referring to fig. 1 again, the pressure gauge 300 is connected with the housing 100, specifically, the front side wall of the housing 100 is fixedly connected with the pressure gauge 300 through screws, the inside of the pressure gauge 300 is electrically connected with an auxiliary sensor, an auxiliary control module and a wireless remote transmission module, the auxiliary sensor, the auxiliary control module and the wireless remote transmission module are electrically connected in series, the inner parts of the blank cap 200 and the pressure gauge 300 are both fixedly connected with a pairing module through screws, wherein the pressure gauge 300 is provided with a low power consumption mcu, a wireless remote transmission module (lora \3g \4g \5g), a near-end wireless communication (e.g. ble \ bee zigbee) module, a pressure sensor and a lithium battery in a matching manner;
when specific use, at first top cap 110 is connected at the top of shell 100, the preceding lateral wall combination stifle 200 and the pressure gauge 300 of shell 100, stifle storehouse 210 is reserved to the inside of stifle 200, the inside electric connection of stifle storehouse 210 has the main control sensor, main control module and near-end wireless communication module, the inside electric connection of pressure gauge 300 has vice sensor, vice control module and wireless teletransmission module, pair two equipment through pairing tools, pairing tools is the handheld device of taking near-end wireless communication module, such as the cell-phone, use near-end wireless communication mode to pair two equipment, pair the process: the pairing tool obtains the direct connection codes of the near-end wireless communication of the two devices from the background through the codes of the blank cap bin 210 and the pressure gauge 300 device, the two devices can be connected through the corresponding direct connection codes, the blank cap bin 210 and the pressure gauge 300 information are configured, the relation between the blank cap bin 210 and the pressure gauge 300 is respectively written into the blank cap bin 210 and the pressure gauge 300 device, the subsequent two devices can carry out corresponding communication according to the relation between the blank cap bin 210 and the pressure gauge 300, the pairing code is configured, the blank cap bin 210 and the pressure gauge 300 device are respectively provided with a pairing code which is respectively written into the blank cap bin 210 and the pressure gauge 300 device, the pairing code can be a pure software ID (ID) and can also be the hardware addresses of the blank cap bin 210 and the pressure gauge 300 device, a communication key is configured, and a communication key is burnt into the blank cap bin 210 and the pressure gauge 300 device, the two devices can use the key for encryption during communication, and the communication process is as follows: after the pairing is completed, the data interaction between the blank cap bin 210 and the pressure gauge 300 equipment can be performed through near-end wireless, the states of the blank cap bin 210 and the pressure gauge 300 equipment are reported to a background together through the pressure gauge 300 equipment, a communication key is used for encryption during the interaction, and the data interaction supports two modes: manometer 300 may actively query slave data; the blank cap bin 210 actively informs the pressure gauge 300 of data changes.
Referring to fig. 1 again, in order to facilitate the bottom connection, specifically, the bottom of the secondary flange 130 is fixedly connected to a bottom connection pipe 140 by bolts, and a pipe hole 150 is reserved on a front side wall of the bottom connection pipe 140.
Referring again to fig. 1, in order to increase the usage diversity of the near-end wireless communication module, in particular, the near-end wireless communication module includes ble, lora and zigbee.
Referring to fig. 1 again, in order to increase the diversity of the wireless remote transmission module, specifically, the wireless remote transmission module includes lora, gprs, 3g, 4g, and 5 g.
Referring to fig. 1 again, in order to facilitate the pairing, specifically, the pairing module needs to use a pairing tool, and the pairing tool is a handheld device with a near-end wireless communicator.
While the invention has been described above with reference to an embodiment, various modifications may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In particular, as long as there is no structural conflict, the various features of the disclosed embodiments of the present invention can be used in any combination with each other, and the description of such combinations is not exhaustive in the present specification only for the sake of brevity and resource conservation. Therefore, it is intended that the invention not be limited to the particular embodiments disclosed, but that the invention will include all embodiments falling within the scope of the appended claims.

Claims (5)

1. The utility model provides an intelligent modular fire hydrant which characterized in that: including shell (100), stifle (200) and pressure gauge (300), the preceding lateral wall threaded connection of shell (100) stifle (200), the preceding lateral wall of shell (100) passes through screw fixed connection pressure gauge (300), bolt fixedly connected with top cap (110) is passed through at the top of shell (100), bolt fixedly connected with main flange (120) and auxiliary flange (130) are passed through to the bottom of shell (100), the inside reservation of stifle (200) has stifle storehouse (210), the inside electric connection in stifle storehouse (210) has main sensor, main control module and near-end wireless communication module, the main sensor main control module with electric series connection between the near-end wireless communication module, the inside electric connection of pressure gauge (300) has vice sensor, vice control module and wireless teletransmission module, vice sensor, The auxiliary control module and the wireless remote transmission module are electrically connected in series, and the blank cap (200) and the pressure gauge (300) are both fixedly connected with a matching module through screws.
2. The intelligent modular fire hydrant in claim 1, wherein: the bottom of the auxiliary flange (130) is fixedly connected with a bottom connecting pipe (140) through bolts, and a pipe hole (150) is reserved in the front side wall of the bottom connecting pipe (140).
3. The intelligent modular fire hydrant in claim 2, wherein: the near-end wireless communication module includes ble, lora, and zigbee.
4. The intelligent modular fire hydrant in claim 3, wherein: the wireless remote transmission module comprises lora, gprs, 3g, 4g and 5 g.
5. The intelligent modular fire hydrant in claim 4, wherein: the pairing module needs to use a pairing tool, and the pairing tool is a handheld device with a near-end wireless communicator.
CN202021550820.5U 2020-07-30 2020-07-30 Intelligent modular fire hydrant Active CN212926278U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021550820.5U CN212926278U (en) 2020-07-30 2020-07-30 Intelligent modular fire hydrant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021550820.5U CN212926278U (en) 2020-07-30 2020-07-30 Intelligent modular fire hydrant

Publications (1)

Publication Number Publication Date
CN212926278U true CN212926278U (en) 2021-04-09

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Application Number Title Priority Date Filing Date
CN202021550820.5U Active CN212926278U (en) 2020-07-30 2020-07-30 Intelligent modular fire hydrant

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CN (1) CN212926278U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113237680A (en) * 2021-04-22 2021-08-10 武汉杰威信息技术有限公司 Water consumption state detection system and detection method for fire hydrant

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113237680A (en) * 2021-04-22 2021-08-10 武汉杰威信息技术有限公司 Water consumption state detection system and detection method for fire hydrant

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