CN216695111U - Monitoring station for monitoring water and electricity safety of modern community - Google Patents

Monitoring station for monitoring water and electricity safety of modern community Download PDF

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Publication number
CN216695111U
CN216695111U CN202220182287.4U CN202220182287U CN216695111U CN 216695111 U CN216695111 U CN 216695111U CN 202220182287 U CN202220182287 U CN 202220182287U CN 216695111 U CN216695111 U CN 216695111U
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module
intelligent
monitoring
heat dissipation
safety
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杨城
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Poly Property Services Co Ltd
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Poly Property Services Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/50Hydropower in dwellings

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Abstract

The utility model discloses a monitoring station for monitoring the hydropower safety of a modernized community, which belongs to the field of the hydropower safety monitoring, and comprises a shell, wherein a plurality of first mounting grooves which are relatively parallel are arranged on two sides in the shell, mounting frames are connected in the first mounting grooves on the two sides in a sliding manner, a plurality of partition plates are arranged on the mounting frames at equal intervals, heat dissipation frames and intelligent control terminals are inserted in the mounting frames, the intelligent control terminals are inserted between two adjacent partition plates, and heat insulation devices are arranged in the partition plates.

Description

Monitoring station for monitoring water and electricity safety of modern community
Technical Field
The utility model relates to the field of hydroelectric safety monitoring, in particular to a monitoring station for monitoring the hydroelectric safety of a modern community.
Background
In the current water and electricity safety inspection in-process, carry out the inspection maintenance to the safety monitoring device through the personnel to carry out centralized management and monitoring to water and electricity monitoring device through integrated device, ensure water and electricity safety in utilization.
The existing defects of the monitoring station for monitoring the water and electricity safety are as follows:
in the demonstration application process, after the water and electricity safety situation takes place, just can detect, and when a lot of residents were not at home, after taking place the dangerous situation, often discover to be not timely enough with the processing, and the non-resident family is handled and often need break the door and go into, cause certain economic loss, and cause certain influence to the resident family privacy, after the monitoring station is integrated, because the resident family is more, it is also more to need integrated cabinet, and then the radiating effect worsens, and the integration weakens.
SUMMERY OF THE UTILITY MODEL
1. Technical problem to be solved
Aiming at the problems in the prior art, the utility model aims to provide a monitoring station for monitoring the hydropower safety of a modern community, which can realize the timely discovery and treatment of the discovery of the hydropower safety dangerous case, has high treatment efficiency, reduces the invasion to the privacy of residents, protects an adjacent intelligent control terminal by an additionally arranged heat insulation device, and enhances the integration level of the monitoring station.
2. Technical scheme
In order to solve the above problems, the present invention adopts the following technical solutions.
A monitoring station for monitoring the hydroelectric safety of a modern community comprises a shell, wherein a plurality of first mounting grooves which are relatively parallel are formed in two sides of the interior of the shell, a mounting frame is connected to the interior of the first mounting grooves in the two sides in a sliding manner, a plurality of partition plates are arranged on the mounting frame at equal intervals, and a heat dissipation frame is inserted into the mounting frame;
the intelligent control terminal is inserted between the two adjacent partition plates, and the heat insulation devices are arranged inside the partition plates.
Furthermore, be located first mounting groove inside is equipped with a plurality of evenly distributed's second mounting groove, the second mounting groove is used for pegging graft with the tip of heat dissipation frame.
Furthermore, a fixing frame and a heat dissipation cover are sequentially arranged on one side of the shell, and a plurality of insertion holes are formed in the fixing frame and used for inserting and fixing the heat dissipation frame.
Furthermore, one end of the heat dissipation frame is provided with a plurality of communicated heat dissipation pipes.
Furthermore, a connection battery cell used for being electrically connected with the intelligent control terminal is arranged between the clapboards on the two sides.
Furthermore, the side of the mounting bracket, which deviates from one side of the connecting battery core, is provided with a U-shaped third mounting groove, and the third mounting groove is used for being clamped on the heat dissipation frame.
Furthermore, the intelligent control terminal is square, and a fourth mounting groove for clamping the mounting rack is formed in the middle of one side of the intelligent control terminal.
Furthermore, the intelligent control terminals form a data control center module, and the data control center module is in bidirectional radio connection with a user side;
the intelligent ammeter system comprises a user side, a single carrier communication module, an intelligent induction module, a contactor module and a power supply module, wherein the user side is respectively connected with the single carrier communication module and the intelligent induction module through electric signals, the single carrier communication module is electrically connected with the intelligent ammeter module in a bidirectional mode, the intelligent ammeter module is electrically connected with the contactor module in a bidirectional mode, and the single carrier communication module is electrically connected with the contactor module;
the intelligent sensing module is electrically connected with an intelligent water meter module in a bidirectional way, the intelligent water meter module is electrically connected with an electromagnetic control module in a bidirectional way, and the intelligent sensing module is electrically connected with the electromagnetic control module;
and the single carrier communication module and the intelligent sensing module are respectively in electric signal connection with the data control center module.
3. Advantageous effects
Compared with the prior art, the utility model has the advantages that:
(1) according to the scheme, the intelligent electric meter module and the intelligent water meter module respectively collect and transmit data to the data control center module through the single carrier communication and the intelligent sensing module, and the user side can control the switch of water and electricity through remote electric signal connection.
(2) The user side can be remotely controlled to switch on and off the hydropower station, maintenance personnel can be informed of maintenance according to the problem occurrence degree, the probability of dangerous case occurrence is avoided, the user side can be independently controlled to discover and solve the problems timely, and then the dangerous case occurrence is reduced, so that the danger is further avoided, the door breaking rescue caused by the rescue is avoided, and the privacy of the user side is protected.
(3) In the data processing process is carried out at data control center module, because user side quantity is more, for making things convenient for independent user to handle more accurately to data processing and easy maintenance set up intelligent control terminal alone to every family, for reducing a plurality of intelligent control terminal productions heat, dispel the heat to the inside heat dissipation frame that sets up of monitoring station casing for water and electricity safety monitoring.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an assembled view of the present invention;
FIG. 3 is an enlarged view of A in FIG. 1;
FIG. 4 is a schematic structural diagram of an installation rack and an intelligent control terminal in the utility model;
FIG. 5 is an enlarged view of B in FIG. 4;
fig. 6 is a flow chart of the operation of the present invention.
The numbering in the figures illustrates:
1. a housing; 2. a first mounting groove; 3. a mounting frame; 4. a partition plate; 5. a heat dissipation frame; 6. an intelligent control terminal; 7. a thermal insulation device; 8. a second mounting groove; 9. a fixed mount; 10. a heat dissipation cover; 11. a heat dissipation conduit; 12. connecting the battery cell; 13. a third mounting groove; 14. a fourth mounting groove; 15. a data control center module; 16. a user side; 17. a single carrier communication module; 18. an intelligent sensing module; 19. a smart meter module; 20. a contactor module; 21. an intelligent water meter module; 22. and an electromagnetic control module.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention; it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by those skilled in the art without any inventive work are within the scope of the present invention.
Example 1:
referring to fig. 1-5, a monitoring station for monitoring the safety of the hydroelectric power in a modern community comprises a casing 1, wherein a cover is hinged to an opening of the casing 1 through a hinge member for protecting the device.
A plurality of first mounting grooves 2 which are relatively parallel are formed in two sides in the shell 1, mounting frames 3 are connected in the first mounting grooves 2 which are relatively parallel in two sides in a sliding mode, a certain detachability can be achieved through the mounting frames 3 which can slide, and the intelligent control terminals 6 mounted on the mounting frames 3 are prevented from generating heat and affecting equipment;
referring to fig. 3, a plurality of second mounting grooves 8 are uniformly distributed inside the first mounting groove 2, and the second mounting grooves 8 are used for being inserted into the end of the heat dissipation frame 5 to fix the heat dissipation frame 5.
Referring to fig. 1, a fixing frame 9 and a heat dissipation cover 10 are sequentially arranged on one side of a housing 1, the fixing frame 9 is provided with a plurality of insertion holes for inserting and fixing the heat dissipation frame 5 and supporting the heat dissipation frame 5, the fixing frame 9 is detachably connected with the heat dissipation cover 10, and the heat dissipation cover 10 is used for carrying out heat exchange on the heat dissipation frame 5 and avoiding damages to heat dissipation caused by foreign matters.
Referring to fig. 1 and 2, the heat dissipation frame 5 is inserted into the other side of the fixing frame 9, and has a plurality of heat dissipation pipes 11 that are communicated with each other, and the heat dissipation pipes can be connected to heat dissipation refrigeration equipment such as a heat sink and a compressor through pipes, so as to perform heat exchange on the heat dissipation frame 5 through a circulation effect, and further perform heat dissipation inside the casing 1.
Referring to fig. 3 and 4, the mounting bracket 3 further includes a plurality of equally spaced partition boards 4, a connection battery core 12 for electrically connecting with the intelligent control terminal 6 is disposed between the partition boards 4 on both sides, the connection battery core 12 is electrically connected with the power supply module and the data control center module 15 through wires, wherein the data control center module 15 is used for reading data from the intelligent control terminal 6 and controlling the open/close circuit.
Referring to fig. 4, a side surface of the mounting frame 3, which is away from the side connected with the battery cell 12, is provided with a U-shaped third mounting groove 13, the third mounting groove 13 is used for being clamped on the heat dissipation frame 5 and is matched with the heat dissipation frame 5, the U-shaped third mounting groove 13 is convenient for the mounting frame 3 and the heat dissipation frame 5 to be detached independently, and the heat dissipation frame 5 is more convenient to detach when maintenance is required;
wherein mounting bracket 3 and baffle 4 are the better insulating material of thermal conductivity, and difficult emergence deformation, can be silicon board, pottery or other carry out inside and fill reinforced (rfd) mixed version, and here is prior art, no longer has too much repeated description.
Referring to fig. 4 and 5, in addition, the intelligent control terminal 6 is square, a fourth installation groove 14 is arranged in the middle of one side of the intelligent control terminal, the fourth installation groove 14 is sleeved outside the installation frame 3, and the intelligent control terminal 6 is located between the partition plates 4 on the two sides;
the battery cell is arranged at the joint of the fourth mounting groove 14 and the connecting battery cell 12 and is used for being connected with a main board arranged in the intelligent control terminal 6, the battery cell is arranged in the intelligent control terminal 6, a CPU and a communication module are arranged on the main board, and the main board is electrically connected with the data control center module 15 through the connecting battery cell 12;
after the intelligent control terminal 6 is connected with the mounting rack 3 through the fourth mounting groove 14, the heat dissipation rack 5 positioned inside the mounting rack 3 conducts heat conduction and heat dissipation on the mounting rack 3 and the intelligent control terminal 6;
in addition, the inside heat-proof device 7 that is equipped with of baffle 4 for to the intelligent control terminal 6 that is located the baffle 4 both sides dispel the heat, and promote the inside air flow of casing 1, can also dispel the heat to heat dissipation frame 5 in addition, and carry out the conduction to the heat that heat-proof device 7 produced through heat dissipation frame 5, accelerate heat cycle, promote the heat dissipation.
Referring to fig. 5, the middle portion of the heat insulation device 7 is a conventional heat insulation plate, the two sides of the heat insulation plate are conventional heat conduction plates, the heat insulation plate is fixedly connected to the heat conduction plates, the heat conduction material and the mounting frame 3 are integrally disposed, and the material is the same.
Referring to fig. 6, an intelligent electric meter module 19 and an intelligent water meter module 21 are respectively arranged at the individual terminals, wherein the intelligent electric meter module 19 is bidirectionally electrically connected with the single carrier communication module 17, the single carrier communication module 17 is in radio connection with the data control center module 15, and the closing of the circuit is controlled by controlling a contactor module 20 arranged between the single carrier communication module 17 and the intelligent electric meter module 19;
the data generated by the intelligent electric meter module 19 is transmitted to the data control center module 15 through the single carrier communication module 17, the data generated by the intelligent electric meter module 19 can be stored and intelligently analyzed in the data control center module 15, and in addition, the power supply can be controlled to be switched on and switched off according to the generated electric quantity and cost, so that the intelligent control of the circuit is realized;
the intelligent water meter module 21 is connected in series with the data control center module 15 through the arranged intelligent induction module 18, and the consumption and the cost of the water meter are calculated through the data control center module 15, so that the opening and closing of a water valve of a user are controlled through an electromagnetic control module 22 arranged on the intelligent water meter;
wherein, the data control center module 15 is set with a preset value, the user terminal 16 can pay fee and monitor the amount in real time by acquiring the data of the data control center module 15 through monitoring the intelligent electric meter module 19 and the intelligent water meter module 21, when leakage occurs, the user terminal sets the amount of a single user according to the preset value set by the data control center module 15, when the preset value is exceeded, the user terminal 16 is sent to inform to control the water and electricity switch, thereby avoiding the dangerous case and loss caused by leakage, after the leakage and leakage occur, the user terminal 16 can remotely transmit the instruction to the intelligent electric meter module 19 and the intelligent water meter module 21 through the data control center module 15, remotely turn off the power supply and the water source switch, avoiding the delay of handling the dangerous case caused by the fact that the door cannot be opened when no one occurs in the frame of the user terminal 16, and avoid the economic loss that takes place because produce the dangerous situation, also can avoid producing broken door because of rescuing the dangerous situation to a certain extent in addition to avoid user terminal 16 privacy to a certain extent to reveal the problem, behind user's model control switch, user terminal 16 can send the maintenance request to the maintainer and maintain, and maintenance response speed is fast.
When in use: firstly, when the water and electricity consumption, the circuit short circuit and the water pressure of the user side 16 are abnormal, the intelligent electric meter module 19 and the intelligent water meter module 21 respectively collect and transmit data to the data control center module 15 through the single carrier communication and intelligent sensing module 18 under the condition that no person is in the house of the user side 16 and a dangerous case occurs;
then, the data control center module 15 processes the data and sends a notification to the user terminal 16, and the user terminal 16 can remotely control the contactor module 20 and the electromagnetic control module 22 by sending an instruction, so as to turn off the water and electricity switch;
on the premise that potential safety hazards exist, the user side 16 can control the opening and closing of hydropower through remote control, maintenance personnel can be informed of maintenance according to the problem occurrence degree, the probability of dangerous case occurrence is avoided, problems are found and solved timely through autonomous control of the user side 16, and then the dangerous case occurrence is reduced, so that the door breaking rescue caused by rescue is further avoided, and the privacy of the user side 16 is protected;
in addition, in the data processing process of the data control center module 15, the number of the user terminals 16 is large, so that the processing of individual users is more accurate, the data processing and the maintenance are convenient, the intelligent control terminals 6 are independently arranged for each user, and the heat insulation device 7 and the heat dissipation frame 5 are arranged inside the monitoring platform shell 1 for the hydropower safety monitoring to dissipate heat for reducing the generated heat of the intelligent control terminals 6.
The foregoing is only a preferred embodiment of the present invention; the scope of the utility model is not limited thereto. Any person skilled in the art should be able to cover the technical scope of the present invention by equivalent or modified solutions and modifications within the technical scope of the present invention.

Claims (8)

1. A monitoring station for monitoring the safety of the water and electricity in a modern community is characterized by comprising:
the heat dissipation device comprises a shell (1), wherein a plurality of first mounting grooves (2) which are relatively parallel are formed in two sides of the interior of the shell (1), a mounting frame (3) is connected to the interior of each first mounting groove (2) in a sliding mode, a plurality of partition plates (4) are equidistantly arranged on the mounting frame (3), and a heat dissipation frame (5) is inserted into the mounting frame (3);
intelligent control terminal (6), intelligent control terminal (6) are pegged graft between two adjacent baffles (4), baffle (4) inside is equipped with heat-proof device (7).
2. The monitoring station for monitoring the water and electricity safety of the modern community according to claim 1, characterized in that: and the second mounting groove (8) is used for being connected with the end part of the heat dissipation frame (5) in an inserting mode.
3. The monitoring station for monitoring the water and electricity safety of the modern community according to claim 1, characterized in that: and a fixing frame (9) and a heat dissipation cover (10) are sequentially arranged on one side of the shell (1), and a plurality of jacks for inserting and fixing the heat dissipation frame (5) are formed in the fixing frame (9).
4. The monitoring station for monitoring the hydroelectric safety of the modern community according to claim 1, wherein: one end of the heat dissipation frame (5) is provided with a plurality of communicated heat dissipation pipes (11).
5. The monitoring station for monitoring the hydroelectric safety of the modern community according to claim 1, wherein: a connecting battery cell (12) which is electrically connected with the intelligent control terminal (6) is arranged between the clapboards (4) at the two sides.
6. The monitoring station for monitoring the hydroelectric safety of the modern community according to claim 5, wherein: the mounting bracket (3) is internally provided with a third mounting groove (13) in a penetrating manner, and the heat dissipation frame (5) is connected to the inside of the third mounting groove (13) in a clamping manner.
7. The monitoring station for monitoring the hydroelectric safety of the modern community according to claim 1, wherein: the intelligent control terminal (6) is square, and the middle of one side of the intelligent control terminal is provided with a fourth mounting groove (14) for clamping the mounting rack (3).
8. The monitoring station for monitoring the hydroelectric safety of the modern community according to claim 1, wherein: the intelligent control terminals (6) form a data control center module (15), and the data control center module (15) is in bidirectional radio connection with a user side (16);
the intelligent electricity meter system is characterized in that the user side (16) is respectively in electric signal connection with a single carrier communication module (17) and an intelligent induction module (18), the single carrier communication module (17) is in bidirectional electric connection with an intelligent electricity meter module (19), the intelligent electricity meter module (19) is in bidirectional electric connection with a contactor module (20), and the single carrier communication module (17) is in electric connection with the contactor module (20);
the intelligent sensing module (18) is electrically connected with an intelligent water meter module (21) in a bidirectional way, the intelligent water meter module (21) is electrically connected with an electromagnetic control module (22) in a bidirectional way, and the intelligent sensing module (18) is electrically connected with the electromagnetic control module (22);
the single carrier communication module (17) and the intelligent induction module (18) are respectively connected with the data control center module (15) through electric signals.
CN202220182287.4U 2022-01-24 2022-01-24 Monitoring station for monitoring water and electricity safety of modern community Active CN216695111U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220182287.4U CN216695111U (en) 2022-01-24 2022-01-24 Monitoring station for monitoring water and electricity safety of modern community

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220182287.4U CN216695111U (en) 2022-01-24 2022-01-24 Monitoring station for monitoring water and electricity safety of modern community

Publications (1)

Publication Number Publication Date
CN216695111U true CN216695111U (en) 2022-06-07

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ID=81824391

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220182287.4U Active CN216695111U (en) 2022-01-24 2022-01-24 Monitoring station for monitoring water and electricity safety of modern community

Country Status (1)

Country Link
CN (1) CN216695111U (en)

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