CN217483613U - Hydraulic engineering liquid level monitoring device - Google Patents

Hydraulic engineering liquid level monitoring device Download PDF

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Publication number
CN217483613U
CN217483613U CN202122291001.4U CN202122291001U CN217483613U CN 217483613 U CN217483613 U CN 217483613U CN 202122291001 U CN202122291001 U CN 202122291001U CN 217483613 U CN217483613 U CN 217483613U
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China
Prior art keywords
monitoring
rod
liquid level
hydraulic engineering
box
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CN202122291001.4U
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Chinese (zh)
Inventor
姚琪
奚昊
徐铖
陈超
黄金桥
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Suzhou Hengzheng Engineering Quality Inspection Co ltd
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Suzhou Hengzheng Engineering Quality Inspection Co ltd
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Abstract

The utility model discloses a hydraulic engineering liquid level monitoring device, including dykes and dams and monitoring rod, the monitoring rod lower extreme is installed at the bottom through the installation base, the firm bracing piece is installed through the connecting seat to the monitoring rod upside, the cover is equipped with the slide outside the monitoring rod upper end, the monitoring box is installed outside the slide, the gasbag floating collar is installed outside the monitoring box, the monitoring hole has been seted up at the slide middle part, the camera is installed to monitoring box inside, controller, battery and wireless communication module are installed to monitoring box internally mounted, the scale mark is installed to the monitoring rod upside, the utility model discloses an installation base and firm bracing piece that are equipped with are convenient for install the monitoring rod vertically at the bottom for installation positioning stability is higher, and through installing camera, controller, battery and wireless communication module inside the monitoring box, the gasbag floating collar is installed to the monitoring box outside, be convenient for float the monitoring box on the horizontal plane, and monitoring the water level condition in real time through the camera.

Description

Hydraulic engineering liquid level monitoring device
Technical Field
The utility model relates to a hydraulic engineering technical field specifically is a hydraulic engineering liquid level monitoring device.
Background
Hydraulic engineering is an engineering built for controlling and allocating surface water and underground water in the nature to meet the requirements of people on water resources in life and production, and achieving the purposes of removing harm and benefiting, and is also called water engineering. It is usually necessary to build different types of hydraulic structures such as dams, dikes, spillways, water gates, water inlets, channels, transition troughs, rafts, fishways, etc., and to monitor the water level to achieve its goal.
Application number is CN202022914490.X's a liquid level monitoring device for hydraulic engineering among the prior art, it is not convenient for the monitoring pole to install fixedly, and installation positioning stability is relatively poor moreover, and the inefficiency of monitoring is difficult to satisfy water level monitoring well and uses needs.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a hydraulic engineering liquid level monitoring device to it is relatively poor to solve installation positioning stability among the prior art, and the inefficiency of monitoring is difficult to satisfy water level monitoring well and uses required problem.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a hydraulic engineering liquid level monitoring device, includes dykes and dams and monitoring rod, the monitoring rod lower extreme is through installing pedestal mounting at the bottom, the monitoring rod upside is installed firm bracing piece through the connecting seat, monitoring rod upper end outside cover is equipped with the slide, the monitoring box is installed in the slide outside, the gasbag floating collar is installed in the monitoring box outside, the monitoring hole has been seted up at the slide middle part, the camera is installed to monitoring box internally mounted, monitoring box internally mounted has controller, battery and wireless communication module, the scale mark is installed to monitoring rod upside.
Furthermore, branch is installed to monitoring rod upper end, solar panel is installed to branch one end.
Furthermore, firm backup pad is installed to firm bracing piece one end, firm backup pad one end is connected fixedly through first location nail.
Further, the air inlet and outlet is installed on the upper side of the air bag floating ring, an electromagnetic valve is installed on the air inlet and outlet, and an air pump is installed at one end of the air inlet and outlet.
Furthermore, a groove is arranged on the upper side of the sliding seat, and a concave photoelectric sensor is arranged on the inner side of the groove.
Furthermore, a second positioning nail is installed on the lower side of the installation base, and the connecting seat is fixedly connected with the monitoring rod through a bolt.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses an installation base and firm bracing piece that are equipped with, firm bracing piece one end is installed firm backup pad, and firm backup pad one end is connected fixedly through first location nail, is convenient for install monitoring rod at the bottom perpendicularly for installation positional stability is higher.
2. The utility model discloses an inside camera, controller, battery and the wireless communication module of installing of monitoring box, the gasbag floating collar is installed in the monitoring box outside, and the gasbag floating collar is convenient for float the monitoring box on the horizontal plane, then carries out the real-time supervision water level condition through the camera, can transmit information for distant place terminal in addition, has improved the efficiency of monitoring.
3. The utility model discloses a side-mounting recess on the slide, concave type photoelectric sensor is installed to the recess inboard, and when the recess poured into the water, it is less to explain the gas in the gasbag floating collar, and buoyancy is difficult to make the monitoring box float on the surface of water, and concave type photoelectric sensor gives the signal transmission this moment, and the controller is opened control solenoid valve to control the air pump to the inside inflation of gasbag floating collar, thereby realize the automatic inflation purpose.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the principles of the invention. In the drawings:
FIG. 1 is a front view of the overall structure of the present invention;
FIG. 2 is an enlarged schematic view of the structure at the position A of the present invention;
fig. 3 is an enlarged schematic view of the structure at the position B of the present invention.
In the figure: 1. a dam; 2. a monitoring lever; 3. installing a base; 4. a second positioning pin; 5. the supporting rod is stabilized; 6. stabilizing the support plate; 7. a first positioning pin; 8. a connecting seat; 9. a strut; 10. a solar power panel; 11. scale lines; 12. an air bag floating ring; 13. a slide base; 14. a monitoring box; 15. an air inlet and outlet; 16. an electromagnetic valve; 17. an air pump; 18. a controller; 19. a camera; 20. a wireless communication module; 21. a groove; 22. a concave photosensor; 23. a monitoring hole; 24. and (4) a storage battery.
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, 2 and 3, in an embodiment of the present invention, a hydraulic engineering liquid level monitoring device includes a dam 1 and a monitoring rod 2, a lower end of the monitoring rod 2 is installed at the bottom through an installation base 3, a fixing support rod 5 is installed at an upper side of the monitoring rod 2 through a connection seat 8, so as to vertically install the monitoring rod 2 at the bottom in the dam 1, so that the installation positioning stability is high, a slide base 13 is sleeved at an outer side of an upper end of the monitoring rod 2, a monitoring box 14 is installed at an outer side of the slide base 13, an air bag floating ring 12 is installed at an outer side of the monitoring box 14, a monitoring hole 23 is formed in a middle portion of the slide base 13, a transparent glass baffle is installed inside the monitoring hole 23, a camera 19 is installed inside the monitoring box 14, a controller 18, a storage battery 24 and a wireless communication module 20 are installed inside the monitoring box 14, a scale 11 is installed at an upper side of the monitoring rod 2, the air bag floating ring 12 is convenient for floating the monitoring box 14 on a horizontal plane, then, the water level condition is monitored in real time through the camera 19, and information can be transmitted to a remote terminal, so that the monitoring efficiency is improved.
Preferably, branch 9 is installed to monitoring pole 2 upper end, and solar panel 10 is installed to branch 9 one end, is convenient for carry out solar energy power generation and stores and supply power and use in battery 24.
Preferably, firm backup pad 6 is installed to 5 one ends of firm bracing piece, and 6 one ends of firm backup pad are connected fixedly through first location nail 7, are convenient for stabilize the support to 2 lower parts of monitoring pole and handle.
Preferably, air inlet and outlet 15 is installed to gasbag floating collar 12 upside, install solenoid valve 16 on the air inlet and outlet 15, air pump 17 is installed to air inlet and outlet 15 one end, slide 13 upside is installed with recess 21, concave type photoelectric sensor 22 is installed to recess 21 inboard, solenoid valve 16, air pump 17 and concave type photoelectric sensor 22 all with controller 18, make when recess 21 pours into the water into, it is less to explain the gas in the gasbag floating collar 12, buoyancy is difficult to make monitoring box 14 float on the surface of water, concave type photoelectric sensor 22 gives controller 18 with signal transmission this moment, controller 18 opens control solenoid valve 16, and control air pump 17 is inside aerifys to gasbag floating collar 12, thereby realize automatic inflatable purpose.
Preferably, second location nail 4 is installed to 3 downside of installation base, and connecting seat 8 is connected fixedly through bolt and monitoring pole 2, is convenient for improve the stability of monitoring pole 2 installation location.
The utility model discloses a theory of operation and use flow: through the arrangement of the installation base 3 and the stable support rod 5, one end of the stable support rod 5 is provided with the stable support plate 6, so that the monitoring rod 2 is conveniently and vertically installed at the water bottom in the dam 1, and the installation and positioning stability is higher; through monitoring box 14 internally mounted with camera 19, 14 internally mounted with controller 18 of monitoring box, battery 24 and wireless communication module 20, scale mark 11 is installed to 2 upsides of monitoring pole, gasbag floating collar 12 is installed in the 14 outsides of monitoring box, gasbag floating collar 12 is convenient for float monitoring box 14 on the horizontal plane, then carry out the real-time supervision water level condition through camera 19, can give far away terminal with information transfer in addition, improved the efficiency of monitoring.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a hydraulic engineering liquid level monitoring device, includes dykes and dams (1) and monitoring rod (2), its characterized in that: monitoring rod (2) lower extreme is installed at the bottom through installation base (3), firm bracing piece (5) are installed through connecting seat (8) to monitoring rod (2) upside, monitoring rod (2) upper end outside cover is equipped with slide (13), monitoring box (14) are installed in the slide (13) outside, gasbag floating collar (12) are installed in the monitoring box (14) outside, monitoring hole (23) have been seted up at slide (13) middle part, monitoring box (14) internally mounted has camera (19), monitoring box (14) internally mounted has controller (18), battery (24) and wireless communication module (20), scale mark (11) are installed to monitoring rod (2) upside.
2. The hydraulic engineering liquid level monitoring device of claim 1, characterized in that: branch (9) are installed to monitoring rod (2) upper end, solar panel (10) are installed to branch (9) one end.
3. The hydraulic engineering liquid level monitoring device of claim 1, characterized in that: firm backup pad (6) is installed to firm bracing piece (5) one end, firm backup pad (6) one end is connected fixedly through first location nail (7).
4. The hydraulic engineering liquid level monitoring device of claim 1, characterized in that: air inlet and outlet (15) are installed to gasbag floating collar (12) upside, install solenoid valve (16) on air inlet and outlet (15), air pump (17) are installed to air inlet and outlet (15) one end.
5. The hydraulic engineering liquid level monitoring device of claim 1, characterized in that: recess (21) are installed to slide (13) upside, concave type photoelectric sensor (22) are installed to recess (21) inboard.
6. The hydraulic engineering liquid level monitoring device of claim 1, characterized in that: second location nail (4) are installed to installation base (3) downside, connecting seat (8) are connected fixedly through bolt and monitoring lever (2).
CN202122291001.4U 2021-09-22 2021-09-22 Hydraulic engineering liquid level monitoring device Active CN217483613U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122291001.4U CN217483613U (en) 2021-09-22 2021-09-22 Hydraulic engineering liquid level monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122291001.4U CN217483613U (en) 2021-09-22 2021-09-22 Hydraulic engineering liquid level monitoring device

Publications (1)

Publication Number Publication Date
CN217483613U true CN217483613U (en) 2022-09-23

Family

ID=83303471

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122291001.4U Active CN217483613U (en) 2021-09-22 2021-09-22 Hydraulic engineering liquid level monitoring device

Country Status (1)

Country Link
CN (1) CN217483613U (en)

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