CN209779840U - Intelligent well lid monitoring devices - Google Patents

Intelligent well lid monitoring devices Download PDF

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Publication number
CN209779840U
CN209779840U CN201920328398.XU CN201920328398U CN209779840U CN 209779840 U CN209779840 U CN 209779840U CN 201920328398 U CN201920328398 U CN 201920328398U CN 209779840 U CN209779840 U CN 209779840U
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Prior art keywords
well lid
fixed
manhole cover
well
intelligent
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CN201920328398.XU
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Chinese (zh)
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成明
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Tibet Intelligent Water Service Ltd By Share Ltd
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Tibet Intelligent Water Service Ltd By Share Ltd
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Abstract

The utility model discloses an intelligent well lid monitoring devices, including last well lid and guiding subassembly, the inside of going up the well lid is provided with the through-hole, and goes up the middle part top of well lid and be fixed with the stiffener, one side of going up the well lid is fixed with the mounting bracket, and the inside of mounting bracket is provided with the loose axle, the outside of going up the well lid is fixed with the reinforcing plate, and for the welding between reinforcing plate and the last well lid, guiding subassembly sets up between the adjacent reinforcing plate, the downside welding of going up the well lid has first fixed plate, and the inboard of first fixed plate is fixed with the second fixed plate, the inboard of second fixed plate is provided with well cavity, and well cavity internally mounted has the monitoring subassembly, the below of going up the well lid is fixed with well lid down, and the inboard top welding of well lid has buffer spring down. This intelligent well lid monitoring devices is provided with the monitoring subassembly and can monitors the liquid level of well lid below to have the effect of fixing a position and preventing burglary the well lid.

Description

intelligent well lid monitoring devices
Technical Field
the utility model relates to a well lid technical field specifically is an intelligent well lid monitoring devices.
Background
The well cover is used for covering the defensive objects on the road or deep wells in home and preventing people or objects from falling down. Generally, the well cover is divided into a round well cover and a square well cover, and generally, the well cover is round in the aspect of road administration in urban areas, and the round well cover is not prone to tilting, so that safety of pedestrians and vehicles can be well protected. The well lid monitoring device is equipment for monitoring information of the well lid.
the general structure of current intelligent well lid is comparatively simple, does not have monitoring devices, can't carry out accurate intelligent location and theftproof to the well lid, and the water conservancy diversion area is less, and ponding is difficult for the drainage under the rainstorm condition to do not have good resistance to compression shock-absorbing capacity, for this reason, we provide an intelligent well lid monitoring devices.
SUMMERY OF THE UTILITY MODEL
an object of the utility model is to provide an intelligent well lid monitoring devices to solve the intelligent well lid general structure that proposes in the above-mentioned background art comparatively simple, do not have monitoring devices, can't carry out accurate intelligent location and theftproof to the well lid, and the water conservancy diversion area is less, and ponding is difficult for the drainage under the rainstorm condition, and do not possess good resistance to compression shock-absorbing capacity's problem.
In order to achieve the above object, the utility model provides a following technical scheme: an intelligent well lid monitoring device comprises an upper well lid and a flow guide assembly, wherein a through hole is formed in the upper well lid, a reinforcing rod is fixed above the middle of the upper well lid, a mounting frame is fixed on one side of the upper well lid, a movable shaft is arranged in the mounting frame, a reinforcing plate is fixed on the outer side of the upper well lid, the reinforcing plate and the upper well lid are welded, the flow guide assembly is arranged between the adjacent reinforcing plates, a first fixing plate is welded on the lower side surface of the upper well lid, a second fixing plate is fixed on the inner side of the first fixing plate, a hollow cavity is arranged on the inner side of the second fixing plate, a monitoring assembly is arranged in the hollow cavity, a lower well lid is fixed below the upper well lid, a buffer spring is welded above the inner side of the lower well lid, a connecting rod is fixed on the outer side of the buffer spring, and the connecting rod is fixedly connected with the lower well lid, and a water seepage port is arranged in the lower well cover.
Preferably, be parallel column structure between well lid and the lower well lid, and go up the well lid and pass through to constitute the integrated structure between connecting rod and the lower well lid.
Preferably, the water conservancy diversion subassembly is including water inlet, interception grid, filter screen and runner, the water inlet sets up in the outside of last well lid, and installs the interception grid above the water inlet is inside, the below of interception grid is fixed with the filter screen, and the below of filter screen is provided with the runner.
Preferably, be the symmetric form evenly distributed in the outside of last well lid between the water inlet, and the water inlet is linked together through the infiltration mouth of runner with well lid down.
Preferably, the monitoring component is including well lid alarm, miniature GPS locator, baffle, level sensor, thing networking chip and dampproofing visor, well lid alarm is installed to the inside below of cavity, and the both sides of well lid alarm are provided with miniature GPS locator, the below of well lid alarm is fixed with the baffle, level sensor is installed to the below both sides of baffle, and the below middle part of baffle is provided with the thing networking chip, and the dampproofing visor is installed in the outside of thing networking chip.
Preferably, buffer spring equidistance distributes in the upside of well lid down, and is symmetrical about the axis of well lid down between the buffer spring.
Compared with the prior art, the beneficial effects of the utility model are that: the intelligent well lid monitoring device is provided with a monitoring component which can monitor the liquid level below the well lid and has the functions of positioning and preventing the well lid from being stolen, a liquid level sensor can monitor the water level below the well lid, a well lid alarm can automatically alarm under the condition that the well lid is maliciously moved, and a miniature GPS (global positioning system) positioner can realize the automatic positioning of the well lid and prevent the well lid from being stolen;
The chip of the Internet of things can collect data information of liquid level and transmit the data information remotely, the moisture-proof protective cover is convenient to protect the chip of the Internet of things, the through holes can uniformly drain accumulated water on the road surface to the lower part and flow into a sewer along the water seepage port, the water inlet is also convenient for draining the accumulated water, the drainage area of the well cover can be increased by using the through holes and the water inlet together, the accumulated water on the road surface can be prevented during rainstorm, and the mounting frame and the movable shaft are convenient for opening and closing the well;
The interception grid of the inside top of water inlet can be to the tight interception of great impurity in the rivers, the filter screen can filter less impurity, buffer spring can play the effect of buffering, the resistance to compression degree of well lid in the reinforcing, the double-deck setting of well lid and well lid down can prevent that the well lid from buckling, the structural strength of well lid in first fixed plate can the reinforcing, the inner space that the second fixed plate formed is convenient for set up the monitoring subassembly to can protect the monitoring subassembly.
Drawings
Fig. 1 is a schematic top view of the present invention;
FIG. 2 is a schematic view of the bottom structure of the manhole cover of the present invention;
Fig. 3 is a schematic side view of the present invention.
In the figure: 1. putting a well cover; 2. a through hole; 3. a reinforcing bar; 4. a mounting frame; 5. a movable shaft; 6. a reinforcing plate; 7. a flow guide assembly; 701. a water inlet; 702. intercepting a grating; 703. filtering with a screen; 704. a flow channel; 8. a first fixing plate; 9. a second fixing plate; 10. a hollow cavity; 11. a monitoring component; 1101. a well lid alarm; 1102. a miniature GPS locator; 1103. a partition plate; 1104. a liquid level sensor; 1105. an Internet of things chip; 1106. a moisture-proof protective cover; 12. a well cover is arranged; 13. a buffer spring; 14. a connecting rod; 15. a water seepage port.
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.
Referring to fig. 1-3, the present invention provides a technical solution: an intelligent well lid monitoring device comprises an upper well lid 1, a through hole 2, a reinforcing rod 3, an installation frame 4, a movable shaft 5, a reinforcing plate 6, a flow guide assembly 7, a water inlet 701, an interception grid 702, a filter screen 703, a flow channel 704, a first fixing plate 8, a second fixing plate 9, a hollow cavity 10, a monitoring assembly 11, a well lid alarm 1101, a miniature GPS locator 1102, a partition plate 1103, a liquid level sensor 1104, an Internet of things chip 1105, a moisture-proof protection cover 1106, a lower well lid 12, a buffer spring 13, a connecting rod 14 and a water seepage hole 15, wherein the through hole 2 is arranged inside the upper well lid 1, and the reinforcing rod 3 is fixed above the middle part of the upper well lid 1;
The upper well cover 1 and the lower well cover 12 are in a parallel structure, the upper well cover 1 and the lower well cover 12 form an integrated structure through a connecting rod 14, the upper well cover 1 and the lower well cover 12 are in a parallel structure, so that the structural strength and the impact resistance of the well cover are improved through the arrangement of double-layer well covers, and the upper well cover 1 and the lower well cover 12 form an integrated structure through the connecting rod 14 so that the upper well cover 1 and the lower well cover 12 are combined into a whole through the connecting rod 14;
the manhole cover comprises an upper manhole cover 1, a mounting frame 4 is fixed on one side of the upper manhole cover 1, a movable shaft 5 is arranged inside the mounting frame 4, reinforcing plates 6 are fixed on the outer side of the upper manhole cover 1, the reinforcing plates 6 and the upper manhole cover 1 are welded, a flow guide assembly 7 is arranged between the adjacent reinforcing plates 6, the flow guide assembly 7 comprises a water inlet 701, an interception grid 702, a filter screen 703 and a flow channel 704, the water inlet 701 is arranged on the outer side of the upper manhole cover 1, the interception grid 702 is arranged above the inner portion of the water inlet 701, the filter screen 703 is fixed below the interception grid 702, and the flow channel 704 is arranged below the filter screen 703;
The water inlets 701 are symmetrically and uniformly distributed on the outer side of the upper well cover 1, the water inlets 701 are communicated with the water seepage port 15 of the lower well cover 12 through the flow passage 704, the water inlets 701 are symmetrically and uniformly distributed on the outer side of the upper well cover 1, so that the accumulated water on the road surface can be uniformly drained to a sewer through the water inlets 701, the water inlets 701 are communicated with the water seepage port 15 of the lower well cover 12 through the flow passage 704, and the accumulated water entering the water inlets 701 can directly flow downwards through the water seepage port 15 through the flow guiding effect of the flow passage 704;
a first fixing plate 8 is welded on the lower side surface of the upper well lid 1, a second fixing plate 9 is fixed on the inner side of the first fixing plate 8, a hollow cavity 10 is arranged on the inner side of the second fixing plate 9, a monitoring assembly 11 is installed inside the hollow cavity 10, the monitoring assembly 11 comprises a well lid alarm 1101, a micro GPS locator 1102, a partition plate 1103, a liquid level sensor 1104, an Internet of things chip 1105 and a moisture-proof protection cover 1106, the well lid alarm 1101 is installed below the inner portion of the hollow cavity 10, the micro GPS locators 1102 are arranged on two sides of the well lid alarm 1101, the partition plate 1103 is fixed below the well lid alarm 1101, the liquid level sensor 1104 is installed on two sides below the partition plate 1103, the Internet of things chip 1105 is arranged in the middle portion below the partition plate 1103, and the moisture-proof protection cover 1106;
Go up the below of well lid 1 and be fixed with well lid 12 down, and the inboard top welding of well lid 12 has buffer spring 13 down, buffer spring 13 equidistance distributes in the upside of well lid 12 down, and the axis symmetry about well lid 12 down between buffer spring 13, buffer spring 13 equidistance distributes in the upside of well lid 12 down and is convenient for go up the pressure between well lid 1 and the well lid 12 down through the buffer spring 13 buffering of equidistance distribution, the resistance to compression degree of well lid 1 in the reinforcing, the axis symmetry about well lid 12 down makes buffer spring 13's cushioning effect more even between buffer spring 13, buffer spring 13's the outside is fixed with connecting rod 14, and be fixed connection between connecting rod 14 and the well lid 12 down, the inside of well lid 12 down is provided with infiltration mouth 15.
the working principle is as follows: for the intelligent well cover monitoring device, firstly, an upper well cover 1 and a lower well cover 12 can be welded into a whole through a connecting rod 14, and a buffer spring 13 is uniformly arranged between the upper well cover 1 and the lower well cover 12, once the upper well cover 1 on the road has larger pressure bearing, the buffer spring 13 can play a role of buffering, the compression resistance degree of the upper well cover 1 is enhanced, the upper well cover 1 can be covered on a sewer opening of the road when in use, and the mounting frame 4 can be fixed with the ground through a screw, only the upper well cover 1 and the lower well cover 12 need to be movably lifted through a movable shaft 5 when the well cover needs to be opened, in the using process, a liquid level sensor 1104 can monitor the water level below, the model of the liquid level sensor 1104 is WH311, and an internet of things chip 1105 can collect and remotely transmit the data information of the liquid level, once the upper well cover 1 is maliciously moved, the well lid alarm 1101 can give an alarm automatically, the model of the well lid alarm 1101 is SH _ BJ100, meanwhile, the miniature GPS positioner 1102 can achieve automatic positioning of the upper well lid 1, the model of the miniature GPS positioner 1102 is HL-DW111, in use, the through hole 2 can uniformly drain accumulated water on the road surface to the lower part and flow into a sewer along the water seepage port 15, meanwhile, the accumulated water entering from the water inlet 701 can directly flow downwards through the water seepage port 15 under the flow guiding effect of the flow channel 704, in the flow guiding process, the intercepting grid 702 above the inner part of the water inlet 701 can tightly intercept larger impurities in water flow, the filter screen 703 below the intercepting grid 702 can filter smaller impurities, and the using process of the whole intelligent well lid monitoring device is completed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. An intelligent well lid monitoring device, includes well lid (1) and water conservancy diversion subassembly (7), its characterized in that: the manhole cover comprises a manhole cover body and is characterized in that a through hole (2) is formed in the upper manhole cover body (1), a reinforcing rod (3) is fixed above the middle of the upper manhole cover body (1), a mounting frame (4) is fixed on one side of the upper manhole cover body (1), a movable shaft (5) is arranged in the mounting frame (4), a reinforcing plate (6) is fixed on the outer side of the upper manhole cover body (1), the reinforcing plate (6) and the upper manhole cover body (1) are welded, a flow guide assembly (7) is arranged between the adjacent reinforcing plates (6), a first fixing plate (8) is welded on the lower side face of the upper manhole cover body (1), a second fixing plate (9) is fixed on the inner side of the first fixing plate (8), a hollow cavity (10) is arranged on the inner side of the second fixing plate (9), a monitoring assembly (11) is arranged inside the hollow cavity (10), a lower manhole cover (12) is fixed below the, and the inboard top welding of well lid (12) has buffer spring (13) down, the outside of buffer spring (13) is fixed with connecting rod (14), and is fixed connection between connecting rod (14) and well lid (12) down, the inside of well lid (12) is provided with infiltration mouth (15) down.
2. An intelligent manhole cover monitoring device according to claim 1, wherein: go up and be parallel column structure between well lid (1) and well lid (12) down, and go up well lid (1) and pass through to constitute integrated structure between connecting rod (14) and well lid (12) down.
3. An intelligent manhole cover monitoring device according to claim 1, wherein: the water conservancy diversion subassembly (7) is including water inlet (701), interception grid (702), filter screen (703) and runner (704), water inlet (701) set up in the outside of last well lid (1), and the inside top of water inlet (701) installs interception grid (702), the below of interception grid (702) is fixed with filter screen (703), and the below of filter screen (703) is provided with runner (704).
4. An intelligent manhole cover monitoring device according to claim 3, wherein: the water inlets (701) are symmetrically and uniformly distributed on the outer side of the upper well cover (1), and the water inlets (701) are communicated with the water seepage port (15) of the lower well cover (12) through the flow channel (704).
5. An intelligent manhole cover monitoring device according to claim 1, wherein: monitoring subassembly (11) is including well lid alarm (1101), miniature GPS locator (1102), baffle (1103), level sensor (1104), thing networking chip (1105) and dampproofing visor (1106), well lid alarm (1101) are installed to the inside below of well cavity (10), and the both sides of well lid alarm (1101) are provided with miniature GPS locator (1102), the below of well lid alarm (1101) is fixed with baffle (1103), level sensor (1104) are installed to the below both sides of baffle (1103), and the below middle part of baffle (1103) is provided with thing networking chip (1105), and dampproofing visor (1106) are installed in the outside of thing networking chip (1105).
6. An intelligent manhole cover monitoring device according to claim 1, wherein: buffer spring (13) equidistance distributes in the upside of well lid (12) down, and is symmetrical about the axis of well lid (12) down between buffer spring (13).
CN201920328398.XU 2019-03-15 2019-03-15 Intelligent well lid monitoring devices Active CN209779840U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920328398.XU CN209779840U (en) 2019-03-15 2019-03-15 Intelligent well lid monitoring devices

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Application Number Priority Date Filing Date Title
CN201920328398.XU CN209779840U (en) 2019-03-15 2019-03-15 Intelligent well lid monitoring devices

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CN209779840U true CN209779840U (en) 2019-12-13

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113174847A (en) * 2021-06-02 2021-07-27 青海省交通规划设计研究院有限公司 Highway bridge drainage structures

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113174847A (en) * 2021-06-02 2021-07-27 青海省交通规划设计研究院有限公司 Highway bridge drainage structures
CN113174847B (en) * 2021-06-02 2022-07-22 青海省交通规划设计研究院有限公司 Highway bridge drainage structures

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