CN220046947U - Intelligent monitoring device for fire hydrant and intelligent fire hydrant - Google Patents

Intelligent monitoring device for fire hydrant and intelligent fire hydrant Download PDF

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Publication number
CN220046947U
CN220046947U CN202321475459.8U CN202321475459U CN220046947U CN 220046947 U CN220046947 U CN 220046947U CN 202321475459 U CN202321475459 U CN 202321475459U CN 220046947 U CN220046947 U CN 220046947U
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fire hydrant
module
core processor
monitoring device
intelligent
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CN202321475459.8U
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王春
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LIAONING GEOLOGY ENGINEERING VOCATIONAL COLLEGE
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LIAONING GEOLOGY ENGINEERING VOCATIONAL COLLEGE
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Abstract

The utility model provides an intelligent monitoring device of a fire hydrant and the intelligent fire hydrant, which relate to the field of the fire hydrant and comprise a closed connecting bin body, a core processor, a battery module, a pressure detection module, a gyroscope module, a GPS module and a communication module, wherein the intelligent monitoring device does not need to additionally run wires or change the design of the existing fire hydrant, when the pressure in the fire hydrant body exceeds the pressure of a set threshold value, the core processor can modulate alarm information through the communication module and then transmit the modulated alarm information to a cloud background so as to realize real-time monitoring of the fire hydrant; when the fire hydrant is accidentally moved by external force, the gyroscope module is used for sensing an activity signal of the fire hydrant and transmitting the activity signal to the core processor, when the activity signal exceeds a set threshold value, the core processor can modulate alarm information and then transmit the alarm information to the cloud background through the communication module, so that real-time protection of the fire hydrant is realized, and maintenance personnel are convenient to maintain and manage the fire hydrant.

Description

Intelligent monitoring device for fire hydrant and intelligent fire hydrant
Technical Field
The utility model relates to the field of fire hydrants, in particular to an intelligent monitoring device for a fire hydrant and the intelligent fire hydrant.
Background
An above-ground hydrant is an outdoor above-ground fire water supply facility. The fire-fighting water supply device is used for supplying water to the fire-fighting truck or directly connected with a water hose and a water gun to extinguish fire, and is a special facility for supplying water for the outdoor necessary fire-fighting. The upper part of the device is exposed out of the ground, the sign is obvious, and the device is convenient to use. The fire hydrant consists of a fire hydrant body, an elbow, a valve seat, a valve clack, a drain valve, a valve rod, an interface and other parts. The above-ground hydrant is a necessary fire-fighting equipment in cities, and especially needs to be installed in areas with less urban areas and river channels so as to ensure the fire-fighting water supply requirement.
At present, the fire hydrant is arranged outdoors, lacks supervision and protection, has the problems that after the fire hydrant is stolen or accidentally damaged, maintenance personnel are difficult to discover in time, and the like, and causes great difficulty to the maintenance and management of the fire hydrant.
Disclosure of Invention
The utility model aims to overcome the defects in the prior art, and provides an intelligent monitoring device for a fire hydrant and the intelligent fire hydrant.
The utility model is realized by the following technical scheme:
the intelligent monitoring device for the fire hydrant comprises a sealed connecting bin body, a core processor, a battery module, a pressure detection module, a gyroscope module, a GPS module and a communication module, wherein the connecting bin body is in threaded sealing connection with a water suction port or a water outlet of the fire hydrant, and the core processor, the battery module, the gyroscope module, the GPS module and the communication module are arranged in the connecting bin body;
the battery module, the gyroscope module, the GPS module and the communication module are electrically connected with the core processor;
the pressure detection module is arranged outside the connecting bin and is electrically connected with the core processor, the sensing end of the pressure detection module is arranged in the fire hydrant body, and the pressure detection module is used for sensing the pressure value in the fire hydrant body and transmitting the pressure value to the core processor;
the GPS module is used for positioning the position information of the detection device and transmitting the position information to the core processor;
the gyroscope module is used for sensing an activity signal of the fire hydrant and transmitting the activity signal to the core processor;
and the communication module modulates the alarm information of the core processor and transmits the alarm information to the cloud background.
According to the technical scheme, preferably, the temperature and humidity module is further arranged in the connecting bin body, and is electrically connected with the core processor, and is used for sensing the temperature value and the humidity value in the connecting bin body and transmitting the temperature value and the humidity value to the core processor.
According to the above technical scheme, preferably, the communication module is a 4G module, and the alarm signal of the core controller is transmitted to the cloud background through the 4G module.
The patent also discloses an intelligent fire hydrant, adopts foretell fire hydrant intelligent monitoring device, still includes the fire hydrant body, and fire hydrant intelligent monitoring device installs the water sucking mouth or the delivery port department at the fire hydrant body.
The beneficial effects of the utility model are as follows:
(1) The intelligent monitoring device does not need to additionally run wires or change the design of the existing fire hydrant, only needs to be installed on a water suction port or a water outlet of the fire hydrant, the pressure detection module can sense the pressure value change in the fire hydrant body in real time and transmit the pressure value to the core processor, and when the pressure in the fire hydrant body exceeds the pressure of a set threshold value, the core processor can modulate alarm information and transmit the modulated alarm information to the cloud background through the communication module to realize real-time monitoring of the fire hydrant;
(2) When the fire hydrant is accidentally moved by external force, the gyroscope module is used for sensing an activity signal of the fire hydrant and transmitting the activity signal to the core processor, when the activity signal exceeds a set threshold value, the core processor can modulate alarm information and then transmit the alarm information to the cloud background through the communication module, so that real-time protection of the fire hydrant is realized, and maintenance personnel are convenient to maintain and manage the fire hydrant.
Drawings
Fig. 1 shows a schematic diagram of a module connection according to the utility model;
fig. 2 shows a schematic view of a connection terminal according to the utility model;
Detailed Description
The present utility model will be described in further detail below with reference to the drawings and preferred embodiments, so that those skilled in the art can better understand the technical solutions of the present utility model. All other embodiments, based on the embodiments of the utility model, which would be apparent to one of ordinary skill in the art without making any inventive effort are intended to be within the scope of the utility model.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the utility model and simplifying the description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the utility model.
Example 1
As shown in the figure, the utility model provides an intelligent monitoring device for a fire hydrant, which comprises a closed connecting bin body, a core processor, a battery module, a temperature and humidity module, a pressure detection module, a gyroscope module, a GPS module and a communication module, wherein the connecting bin body is in threaded closed connection with a water suction port or a water outlet of the fire hydrant, and the core processor, the battery module, the temperature and humidity module, the gyroscope module, the GPS module and the communication module are arranged in the connecting bin body;
the battery module, the gyroscope module, the temperature and humidity module, the GPS module and the communication module are electrically connected with the core processor;
the intelligent monitoring device is not required to be additionally arranged or changed in the existing fire hydrant design, only the intelligent monitoring device is required to be arranged on a water suction port or a water outlet of the fire hydrant, the pressure detection module can sense the pressure value change in the fire hydrant body in real time and transmit the pressure value to the core processor, when the fire hydrant is opened, high-pressure fire water enters the fire hydrant body, at the moment, the pressure in the fire hydrant body exceeds the pressure of a set threshold value, and the core processor can modulate alarm information and transmit the alarm information to a cloud end background through the communication module to realize real-time monitoring of the fire hydrant;
the GPS module is used for positioning the position information of the detection device and transmitting the position information to the core processor;
the gyroscope module is used for sensing an activity signal of the fire hydrant and transmitting the activity signal to the core processor, when the fire hydrant is accidentally moved by external force, the gyroscope module is used for sensing the activity signal of the fire hydrant and transmitting the activity signal to the core processor, when the activity signal exceeds a set threshold value, the core processor can modulate alarm information through the communication module and then transmit the alarm information to the cloud background, so that real-time protection of the fire hydrant is realized, and maintenance personnel are convenient to maintain and manage the fire hydrant;
the temperature and humidity module is used for sensing the temperature value and the humidity value in the connecting bin body and transmitting the temperature value and the humidity value to the core processor for monitoring the sealing condition in the connecting bin body, the temperature and humidity module adopts a temperature and humidity sensor, when the detected temperature value and humidity value exceed a set threshold value, the situation that the connecting bin body is damaged is indicated, and the core processor can modulate alarm information through the communication module and then transmit the alarm information to the cloud background;
and the communication module modulates the alarm information of the core processor and transmits the alarm information to the cloud background.
Further, the communication module is a 4G module, and the alarm signal of the core controller is transmitted to the cloud background through the 4G module.
Example 2
The patent also discloses an intelligent fire hydrant, adopts foretell fire hydrant intelligent monitoring device, still includes the fire hydrant body, and fire hydrant intelligent monitoring device installs the water sucking mouth or the delivery port department at the fire hydrant body.
It is apparent that the above examples are given by way of illustration only and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. While still being apparent from variations or modifications that may be made by those skilled in the art are within the scope of the utility model.

Claims (4)

1. The intelligent monitoring device for the fire hydrant is characterized by comprising a closed connecting bin body, a core processor, a battery module, a pressure detection module, a gyroscope module, a GPS module and a communication module, wherein the connecting bin body is in threaded closed connection with a water suction port or a water outlet of the fire hydrant, and the core processor, the battery module, the gyroscope module, the GPS module and the communication module are arranged in the connecting bin body;
the battery module, the gyroscope module, the GPS module and the communication module are electrically connected with the core processor;
the pressure detection module is arranged outside the connecting bin and is electrically connected with the core processor, the sensing end of the pressure detection module is arranged in the fire hydrant body, and the pressure detection module is used for sensing the pressure value in the fire hydrant body and transmitting the pressure value to the core processor;
the GPS module is used for positioning the position information of the detection device and transmitting the position information to the core processor;
the gyroscope module is used for sensing an activity signal of the fire hydrant and transmitting the activity signal to the core processor;
and the communication module modulates the alarm information of the core processor and transmits the alarm information to the cloud background.
2. The intelligent fire hydrant monitoring device according to claim 1, further comprising a temperature and humidity module, wherein the temperature and humidity module is arranged in the connecting bin body and electrically connected with the core processor, and the temperature and humidity module is used for sensing the temperature value and the humidity value in the connecting bin body and transmitting the temperature value and the humidity value to the core processor.
3. The intelligent monitoring device of claim 1, wherein the communication module is a 4G module, and the alarm signal of the core processor is transmitted to the cloud background via the 4G module.
4. An intelligent fire hydrant, characterized in that the intelligent fire hydrant monitoring device according to any one of claims 1-3 is adopted, and the intelligent fire hydrant monitoring device further comprises a fire hydrant body, wherein the intelligent fire hydrant monitoring device is installed at a water suction port or a water outlet of the fire hydrant body.
CN202321475459.8U 2023-06-12 2023-06-12 Intelligent monitoring device for fire hydrant and intelligent fire hydrant Active CN220046947U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321475459.8U CN220046947U (en) 2023-06-12 2023-06-12 Intelligent monitoring device for fire hydrant and intelligent fire hydrant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321475459.8U CN220046947U (en) 2023-06-12 2023-06-12 Intelligent monitoring device for fire hydrant and intelligent fire hydrant

Publications (1)

Publication Number Publication Date
CN220046947U true CN220046947U (en) 2023-11-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321475459.8U Active CN220046947U (en) 2023-06-12 2023-06-12 Intelligent monitoring device for fire hydrant and intelligent fire hydrant

Country Status (1)

Country Link
CN (1) CN220046947U (en)

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