CN220303453U - Wisdom heat supply monitoring device - Google Patents

Wisdom heat supply monitoring device Download PDF

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Publication number
CN220303453U
CN220303453U CN202322021120.7U CN202322021120U CN220303453U CN 220303453 U CN220303453 U CN 220303453U CN 202322021120 U CN202322021120 U CN 202322021120U CN 220303453 U CN220303453 U CN 220303453U
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CN
China
Prior art keywords
heat supply
monitoring device
stand
fixedly connected
supply monitoring
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CN202322021120.7U
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Chinese (zh)
Inventor
张孝纯
迟健渤
王楠
邹士杰
隋庆丰
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Harbin Thermal Planning And Design Institute Co ltd
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Harbin Thermal Planning And Design Institute Co ltd
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Abstract

The utility model discloses an intelligent heat supply monitoring device, which relates to the technical field of heat supply monitoring and aims at solving the technical problem that the traditional monitoring equipment cannot quickly find leakage of a peripheral hot water heat supply pipeline.

Description

Wisdom heat supply monitoring device
Technical Field
The utility model belongs to the technical field of heat supply monitoring, and particularly relates to an intelligent heat supply monitoring device.
Background
The existing heating system generally has two heat supply modes of hot water and hot steam, for a heating pipe network with hot water as a medium, once the pipeline leaks, the influence on the environment around the pipeline is larger, particularly for the heating pipeline arranged in the open air or a factory building in a large factory, although the peripheral pipeline is usually not long, the pipeline body is greatly influenced by environmental corrosion because of direct exposure to the air, the possibility of leakage is also large, once the medium leaks, the pipeline can be directly contacted by people, personal injury is even likely to occur, the response speed of the traditional monitoring equipment is slow, and the pipeline leakage is not easy to be found in time, so that an effective monitoring device is required to be arranged on the part of the heating pipe network, and the monitoring response can be quickly obtained when the pipeline leaks.
The utility model provides a china patent of present bulletin number is CN216431902U, it discloses a wisdom heat supply monitoring device, including device body and protecgulum, the protecgulum sets up in the front side of device body, the both sides of protecgulum rear side all fixedly connected with locating piece, the constant head tank that uses with the locating piece cooperation is all seted up to the both sides of device body front side, the movable groove has all been seted up at the top and the bottom of protecgulum both sides, the inner chamber of movable groove is provided with fixed establishment, the fixed slot that uses with fixed establishment cooperation is all seted up in the four corners of device body front side, the problem that current heat supply monitoring device is inconvenient for installing the protecgulum, when installing the protecgulum, mostly fix through the screw appears the smooth silk easily in the installation, influence protecgulum installation fixed effect is solved.
Therefore, leakage of the peripheral hot water heating pipeline easily causes great influence on surrounding people and the environment, the current heat supply monitoring cannot discover the leakage condition of the pipeline in time, an intelligent heat supply monitoring device is developed, the existing wireless communication technology and the dynamic image recognition technology are utilized to cooperate with the monitoring device connected with the heat supply pipeline in an assembling mode, dangerous situations are rapidly recognized when leakage occurs in the heat supply pipeline, and damage to the surrounding environment and personnel caused by a heating medium is prevented.
Disclosure of Invention
(1) Technical problem to be solved
Aiming at the defects of the prior art, the utility model aims to provide an intelligent heat supply monitoring device which aims at solving the technical problem that the traditional monitoring equipment cannot quickly find leakage of a peripheral hot water heat supply pipeline.
(2) Technical proposal
In order to solve the technical problems, the utility model provides the intelligent heat supply monitoring device which comprises a diversion trench, a collection trench and a monitoring machine, wherein the diversion trench is arranged below a heat supply pipeline in parallel, the collection trench is fixedly connected to the left end of the diversion trench, the monitoring machine is arranged above the collection trench, the bottom wall of the diversion trench is inclined from two sides to the middle, the collection trench is communicated with the middle of the diversion trench, two groups of triangular supports are arranged at the upper end of the diversion trench, the supports can slide along the axial direction of the collection trench, a buckle is arranged at the upper end of each support and connected to the outer side of the heat supply pipeline, the buckle consists of two movably connected semicircular rings, two groups of first stand frames are arranged at the upper end of each collection trench, a base is arranged between the upper ends of the first stand frames, and the monitoring machine is arranged at the lower end of the base.
When the intelligent heat supply monitoring device of the technical scheme is used, a user firstly installs the retaining ring on the support through the insertion connection of the inserting rod and the inserting hole, then turns over the retaining ring to open the retaining ring through the hinge, then passes through the guide groove from the lower part of the heat supply pipeline, stably places the retaining ring on the ground through the telescopic adjusting foot support, enables the bottom wall of the heat supply pipeline to enter the retaining ring, then turns over and fixes the retaining ring, stably fixes the guide groove below the heat supply pipeline, then passes through the clamping rod to be connected into the clamping ring, fixes the monitoring machine at the upper end of the second stand, adjusts the installation height of the monitoring machine through the telescopic adjusting mechanism between the first stand and the second stand, connects the monitoring machine with a background monitoring system, and after the monitoring machine is connected with the mobile terminal of the user through a wireless technology, the heat supply pipeline leaks, hot water flows into the guide groove below along the pipe wall and finally flows into the guide groove in a centralized manner, and once the middle part of the monitoring machine synchronously monitors the guide groove and the image dynamic change in the guide groove is detected, and the mobile terminal of the user is immediately reported to the user.
Furthermore, the heel brace is all installed to the downside at both ends around the guiding gutter, the heel brace comprises two sets of round bars that cup joint vertically, the heel brace lower extreme is provided with flexible gasket, cup joints the heel brace of constituteing by two sets of round bars and can carry out vertical flexible to twist through conventional bolt and connect its height, be used for adjusting the distance between guiding gutter and the heating pipeline.
Further, the support lower extreme left and right sides all fixedly connected with extension board, the extension board set up in inner wall one side of guiding gutter, the support upper end be provided with the support groove of the arc indent of buckle outer wall looks adaptation, the support is through the structure of hugging closely of extension board and guiding gutter inner wall, can follow the stable removal of guiding gutter, can not be horizontal to disconnect from the guiding gutter, and it utilizes the support groove restriction buckle to take place horizontal rotation.
Further, the jack has been seted up to the bracket bottom wall, buckle lower extreme fixedly connected with inserted bar, the inserted bar peg graft in the jack is inboard, and the buckle forms horizontal locking through the vertical grafting of inserted bar and jack to the longitudinal support structure that constitutes through heel brace, guiding gutter, support and buckle provides stable support for the heating pipeline.
Further, install the hinge between the semicircle ring left end of buckle, semicircle ring right-hand member fixedly connected with anchor board of buckle, twist through the bolt between the anchor board and connect fixedly, the buckle adopts the swing joint structure of two sets of semicircle rings and hinge, and the convenience is opened and shut, and is more convenient quick with the installation of heating pipeline.
Further, the expansion tank has been seted up to the grudging post inboard, no. two grudging post lower extreme fixedly connected with is at the inboard vertical movable's of expansion tank expansion sheet, no. one grudging post lateral wall is connected with the fastening bolt, and the expansion sheet is at the vertical movable in expansion tank in order to adjust the height of No. two grudging posts, and the installation height of control monitor is in suitable position.
Further, no. two grudging post upper end fixedly connected with joint ring, base left end fixedly connected with clamping rod, clamping rod cross-under in joint ring and another the joint ring is inboard, and the clamping rod is fixed the supervisor on No. two grudging posts with the cup joint of clamping ring, through the mode of taking off No. two grudging posts, can pull down clamping rod and supervisor fast.
(3) Advantageous effects
Compared with the prior art, the utility model has the beneficial effects that: according to the intelligent heat supply monitoring device, the hot water diversion mechanism assembled on the heat supply pipeline is matched with the monitoring machine with the dynamic image monitoring alarm function, when the pipeline leaks and obvious water flow change occurs in the diversion mechanism, the monitoring network where the monitoring machine is located can timely alarm a user through the mobile terminal, so that the function of intelligent monitoring of heat supply equipment is realized, and the monitoring response is quicker; the diversion trench, the support and the retaining ring structure assembled with the heat supply pipeline have a longitudinal supporting effect on the pipeline, and the stability of the pipeline in use is further improved on the premise that the pipeline is fixed through a conventional bracket.
Drawings
FIG. 1 is a schematic diagram of an assembled structure of an embodiment of an intelligent heat supply monitoring device according to the present utility model;
FIG. 2 is a schematic diagram of a flow guiding groove in an embodiment of an intelligent heat supply monitoring device according to the present utility model;
FIG. 3 is a schematic view showing the mounting structure of the support and the buckle in an embodiment of the intelligent heat supply monitoring apparatus according to the present utility model;
fig. 4 is a schematic diagram of a monitoring device installation structure of an embodiment of the intelligent heat supply monitoring device according to the present utility model.
The marks in the drawings are: 1. a diversion trench; 2. a collection trough; 3. a support; 4. a clasp ring; 5. a first vertical frame; 6. a second stand; 7. a base; 8. a monitor; 9. a foot support; 10. a support plate; 11. a bracket; 12. a jack; 13. a rod; 14. a hinge; 15. an anchor plate; 16. a telescopic slot; 17. a telescoping piece; 18. a fastening bolt; 19. a clamping ring; 20. and (5) clamping the connecting rod.
Detailed Description
This embodiment is for wisdom heat supply monitoring device, and its package structure schematic diagram is shown as fig. 1, and guiding gutter 1 structure schematic diagram is shown as fig. 2, and support 3 and buckle 4 mounting structure schematic diagram is shown as fig. 3, and supervisory equipment mounting structure schematic diagram is shown as fig. 4, this heat supply monitoring device including parallel arrangement in guiding gutter 1, fixed connection in guiding gutter 1 left end collect groove 2, set up in collect the supervisor 8 of groove 2 top, guiding gutter 1 diapire inclines from both sides to the centre, collect groove 2 with communicate in the middle of guiding gutter 1, guiding gutter 1 installs two sets of triangle form support 3 in the upper end, support 3 can be followed collect groove 2 axial slip, support 3 upper end is provided with buckle connection in the buckle 4 in the heating pipeline outside, buckle 4 comprises two swing joint's semicircle ring, collect groove 2 upper end install two sets of first grudging post 5, but first grudging post 5 upper end installs vertical movement's No. 6, no. 6 is provided with between the grudging post 7 in the base of monitor 8.
For this embodiment, the heating monitoring network in this scheme is made up of mobile intelligent terminal, wireless communication module (such as the existing bluetooth technology, WIFI technology), monitor 8 and intelligent processor, the intelligent processor can be carried through PAS6100 background monitoring system, be connected with monitoring equipment in the prior art, monitoring equipment is fed back to the background monitoring system through collecting and processing image data, monitor 8 that this scheme used is the usual monitoring equipment with dynamic image monitoring function in the prior art at present, can make the warning and the record of mobile terminal to the image dynamic change of the region being monitored, can adopt the DKS-4X intelligent ball machine of Haikang vision brand or the SSD-rifle ball linkage D15 of sound vision safety brand or other similar products, these products all have the detection alarm function of image change, monitor network is interconnected with terminals such as computer, cell-phone through wireless technology, can look over the monitor image at mobile terminal, and reach the purpose of intelligent monitoring through the detection alarm of image change.
The lower sides of the front end and the rear end of the diversion trench 1 are respectively provided with a heel brace 9, each heel brace 9 consists of two groups of round bars which are longitudinally sleeved, the lower end of each heel brace 9 is provided with a flexible gasket, each heel brace 9 which consists of two groups of round bars in sleeved mode can longitudinally stretch and retract, the height of each heel brace 9 is fixed through conventional bolt screwing, and the height of each heel brace is used for adjusting the distance between the diversion trench 1 and a heat supply pipeline.
Simultaneously, the equal fixedly connected with extension board 10 of support 3 lower extreme left and right sides, the extension board 10 set up in inner wall one side of guiding gutter 1, support 3 upper end be provided with the support groove 11 of the arc indent of guiding gutter 1 outer wall looks adaptation, jack 12 has been seted up to support groove 11 diapire, buckle 4 lower extreme fixedly connected with inserted bar 13, inserted bar 13 peg graft in jack 12 inboard, install hinge 14 between the semicircle ring left end of buckle 4, semicircle ring right-hand member fixedly connected with anchor plate 15 of buckle 4, screw up fixedly through the bolt between the anchor plate 15, support 3 can follow the removal of guiding gutter 1 stable, can not be horizontal to disconnect from guiding gutter 1, it utilizes support groove 11 to restrict buckle 4 and takes place the horizontal rotation, and buckle 4 forms horizontal locking through the vertical grafting of inserted bar 13 and jack 12 to support structure through foot rest 9, guiding gutter 1, support 3 and buckle 4 constitutes for the heat supply pipeline provides two sets of support and two stable hinge 14 through the screw, and the convenient and quick-up connection that supports two sets of support structures and two heat supply pipeline and more.
In addition, the expansion tank 16 has been seted up to the vertical frame 5 inboard, no. two vertical frame 6 lower extreme fixedly connected with is at the expansion sheet 17 of the inboard vertical removal of expansion tank 16, no. one vertical frame 5 lateral wall is connected with the fastening bolt 18, no. two vertical frame 6 upper end fixedly connected with joint ring 19, base 7 left end fixedly connected with clamping rod 20, clamping rod 20 cross-under in joint ring 19 and another the joint ring 19 is inboard, expansion sheet 17 longitudinal movement is in expansion tank 16 thereby the height of adjusting No. two vertical frames 6, and the installation height of control monitor 8 is in suitable position, and the cup joint of clamping rod 20 and joint ring 19 is fixed monitor 8 on No. two vertical frames 6, through the mode of taking down No. two vertical frames 6, can dismantle clamping rod 20 and monitor 8 fast.
When the intelligent heat supply monitoring device of the technical scheme is used, a user firstly installs the retaining ring 4 on the support 3 through the insertion connection of the inserting rod 13 and the inserting hole 12, then turns over and opens the retaining ring 4 through the hinge 14, then passes the guide groove 1 from the lower part of the heat supply pipeline, stably places the bottom wall of the heat supply pipeline on the ground through the telescopic adjusting foot support 9, enables the bottom wall of the heat supply pipeline to enter the retaining ring 4, then turns over and closes the retaining ring 4 to be fixed, stably fixes the guide groove 1 below the heat supply pipeline, then passes the monitor 8 through the clamping rod 20 to be connected into the clamping ring 19, fixes the monitor 8 at the upper end of the second stand 6, adjusts the installation height of the monitor 8 through the telescopic adjusting mechanism between the first stand 5 and the second stand 6, connects the monitor 8 with a background monitoring system, and after the heat supply pipeline is connected with a mobile terminal of a user through a wireless technology, hot water flows into the guide groove 1 below along the pipe wall and finally flows into the collecting groove 2, the monitor 8 synchronously monitors the middle part of the guide groove 1 and the dynamic change in the collecting groove 2, and the image of the monitor 8 is detected to be increased, and the user moves to the alarm terminal once the user has moved.

Claims (7)

1. The intelligent heat supply monitoring device comprises a diversion trench (1) which is arranged below a heat supply pipeline in parallel, a collection trench (2) which is fixedly connected to the left end of the diversion trench (1), and a monitoring machine (8) which is arranged above the collection trench (2); the heat supply pipe is characterized in that the bottom wall of the diversion trench (1) inclines from two sides to the middle, the collection trench (2) is communicated with the middle of the diversion trench (1), two groups of triangular supports (3) are arranged at the upper end of the diversion trench (1), the supports (3) can axially slide along the collection trench (2), the upper ends of the supports (3) are provided with buckles which are connected to the buckles (4) at the outer side of the heat supply pipe, the buckles (4) are composed of two movably connected semicircular rings, two groups of first stand (5) are arranged at the upper end of the collection trench (2), a second stand (6) capable of longitudinally extending and retracting is arranged at the upper end of the first stand (5), a base (7) is arranged between the upper ends of the second stand (6), and the monitor (8) is arranged at the lower end of the base (7).
2. The intelligent heat supply monitoring device according to claim 1, wherein the lower sides of the front end and the rear end of the diversion trench (1) are provided with the foot support (9), the foot support (9) is composed of two groups of round bars which are longitudinally sleeved, and the lower end of the foot support (9) is provided with a flexible gasket.
3. The intelligent heat supply monitoring device according to claim 1, wherein the support (3) is fixedly connected with a support plate (10) on the left side and the right side of the lower end of the support (3), the support plate (10) is arranged on one side of the inner wall of the diversion trench (1), and the upper end of the support (3) is provided with an arc-shaped concave bracket (11) matched with the outer wall of the retaining ring (4).
4. An intelligent heat supply monitoring device according to claim 3, characterized in that the bottom wall of the bracket (11) is provided with a jack (12), the lower end of the retaining ring (4) is fixedly connected with a plug rod (13), and the plug rod (13) is inserted into the inner side of the jack (12).
5. The intelligent heat supply monitoring device according to claim 1, wherein a hinge (14) is arranged between the left ends of the semicircular rings of the retaining ring (4), the right ends of the semicircular rings of the retaining ring (4) are fixedly connected with anchor plates (15), and the anchor plates (15) are fixed through screwing.
6. An intelligent heat supply monitoring device according to claim 1, characterized in that the inner side of the first stand (5) is provided with a telescopic slot (16), the lower end of the second stand (6) is fixedly connected with a telescopic sheet (17) vertically moving inside the telescopic slot (16), and the side wall of the first stand (5) is connected with a fastening bolt (18).
7. An intelligent heat supply monitoring device according to claim 1, characterized in that the upper end of the second stand (6) is fixedly connected with a clamping ring (19), the left end of the base (7) is fixedly connected with a clamping rod (20), and the clamping rod (20) is connected with the inner sides of the clamping ring (19) and the other clamping ring (19) in a penetrating way.
CN202322021120.7U 2023-07-28 2023-07-28 Wisdom heat supply monitoring device Active CN220303453U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322021120.7U CN220303453U (en) 2023-07-28 2023-07-28 Wisdom heat supply monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322021120.7U CN220303453U (en) 2023-07-28 2023-07-28 Wisdom heat supply monitoring device

Publications (1)

Publication Number Publication Date
CN220303453U true CN220303453U (en) 2024-01-05

Family

ID=89375775

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322021120.7U Active CN220303453U (en) 2023-07-28 2023-07-28 Wisdom heat supply monitoring device

Country Status (1)

Country Link
CN (1) CN220303453U (en)

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