Wetland ecological restoration monitoring device
By designing and installing floating plates, lifting mechanisms and solar-powered wetland ecological restoration monitoring devices, the stability and endurance of wetland ecological restoration devices are solved, and dual monitoring of land and water bodies is realized, especially real-time monitoring of water turbidity, and the structure is stable and reasonable.
Patent Information
- Application Number
- CN202422433856.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing wetland ecological restoration monitoring devices have shortcomings in stability, endurance and land and water monitoring, especially the monitoring of turbidity of water bodies has not been effectively solved.
A wetland ecological restoration monitoring device including mounting floating plates, lifting mechanisms, monitoring cameras, solar panels, battery modules, water turbidity monitors and control communication components is designed. It is fixed to the wetland through a fixed plate, and the lifting mechanism adjusts the monitoring height, solar power supply, cameras and water turbidity monitors achieve full-range monitoring.
It has achieved stable and fixed wetland ecosystems, all-round monitoring without blind spots, taking into account land and water monitoring, especially real-time monitoring of water turbidity, with reasonable structure and self-sufficiency in energy.
Smart Images

Figure CN223121049U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wetland ecological restoration, in particular to a wetland ecological restoration monitoring device. Background Art
[0002] In the prior art, the wetland ecosystem has high research value for environmental research and environmental protection work. However, with the development of technology, the wetland ecosystem has been damaged to a certain extent. Therefore, it is necessary to repair the wetland ecosystem, and the repair of the wetland ecosystem in the prior art needs to be monitored in real time.
[0003] The wetland ecological restoration monitoring devices in the prior art usually monitor and process through camera devices. For example, in the technical solution of the authorized publication number: CN221684081U, "an ecological wetland restoration monitoring device" is disclosed, which includes a bottom plate, a turntable, a camera body, and a first mounting plate. The turntable is rotatably connected to the upper surface of the bottom plate. The camera body is arranged on one side of the turntable. The first mounting plate is fixed on the side surface of the camera body. A protective cover is sleeved on the surface of the camera body. The protective cover is a transparent plate. Installation blocks are fixedly connected to both sides of the protective cover. Through the mutual cooperation of the protective cover, the installation blocks, the driving motor, the rotating rod, the support plate, and the cleaning cotton, the camera body can be conveniently cleaned during use. The protective cover cooperates with the installation blocks to protect the camera body. At this time, the driving motor can make the rotating rod drive the support plate and the cleaning cotton to wipe the surface of the protective cover, achieving the effect of convenient cleaning, preventing dust from accumulating on the surface of the camera body during use and being inconvenient to handle, and affecting the use effect of the camera body.
[0004] In the above technical solution, the cleaning and protection problem of the monitoring camera is mainly realized, and the camera can be cleaned to avoid affecting the use of the camera. However, the existing wetland ecological restoration monitoring devices still have many other disadvantages in specific use.
[0005] For example, the battery life problem of the monitoring system. Most monitoring devices need to be set in the wetland ecosystem area, and the supply of energy is a big problem. In addition, there are the stability and firmness problems of the monitoring device. In the above technical solution, only the bottom plate is used to stabilize the whole device, and the stability is poor.
[0006] In addition, the wetland ecosystem not only needs to monitor the land conditions, but also needs to detect the water conditions of the wetland ecosystem. The water body repair problem is also very important. However, the monitoring devices in the prior art cannot take into account both land monitoring and water body monitoring. In particular, the turbidity of the water body seriously affects the repair of the water body and needs to be monitored in real time.
[0007] Therefore, to solve the above problems, it is necessary to develop a wetland ecological restoration monitoring device with a reasonable and stable structure that can monitor both land conditions and water conditions. Summary of the Invention
[0008] The purpose of the present utility model is to provide a wetland ecological restoration monitoring device in view of the deficiencies existing in the prior art; the technical solution is as follows:
[0009] A wetland ecological restoration monitoring device includes a two-purpose installation floating board. A plurality of L-shaped detachable fixing plates are correspondingly arranged at the lower end of the installation floating board. The lower end of the fixing plate is provided with a pointed end, and the fixing plate is inserted into the soil of the wetland ecological area to be monitored through the pointed end, thereby fixing the installation floating board.
[0010] An elevating mechanism is further arranged on the installation floating board. An installation chamber is fixed on the main shaft of the elevating mechanism. A plurality of monitoring cameras are installed in the installation chamber and are arranged at equal intervals in the circumferential direction. The head of the monitoring camera is embedded in the side wall of the installation chamber and is aligned with the external area outside the installation chamber.
[0011] A flat platform is further installed at the upper end of the installation chamber. The flat platform extends outward, and a solar panel is also arranged on the flat platform. A battery assembly corresponding to the solar panel is also arranged at the middle position of the installation chamber. The elevating mechanism and the monitoring cameras are both powered by the battery assembly.
[0012] Further, a total of six monitoring cameras are installed in the installation chamber, and a glass cover for protecting the monitoring cameras is also arranged at the side wall of the installation chamber.
[0013] Further, a total of four fixing plates with uniform intervals are arranged at the lower end of the installation floating board; and the fixing plates are detachably fixed on the installation floating board through screw assemblies.
[0014] Further, a control component and a communication component are also arranged on the installation floating board. The control component is used to control the working conditions of the monitoring elevating mechanism, the monitoring cameras, and the solar panel, and the information is transmitted to an external intelligent device through the communication component accordingly.
[0015] Further, water turbidity monitors are correspondingly installed on two fixing plates symmetrically arranged at the lower end of the installation floating board. The area between the two relatively symmetric fixing plates is set as the monitoring area for water turbidity.
[0016] When the installation floating board is placed in the water area of the wetland ecological restoration to be monitored, the water turbidity monitors on the two fixing plates monitor the water turbidity.
[0017] Furthermore, mounting holes are provided on the vertical plate body of the fixed plate, the head of the water turbidity monitor is correspondingly arranged in the mounting holes, and a circumferential mounting plate is arranged on the water turbidity monitor, and the mounting plate is detachably fixed to the vertical plate body correspondingly.
[0018] Furthermore, the mounting plate is detachably mounted correspondingly through a screw assembly; and a circumferential fence is further provided at the upper outer side of the mounting floating plate.
[0019] Furthermore, the water turbidity monitor is powered by a battery assembly, and the water turbidity monitor is connected to the control assembly, and the monitoring information is transmitted to an external intelligent device through the communication assembly.
[0020] Beneficial effects: The utility model has the following beneficial effects:
[0021] 1) The device is provided with a mounting floating plate, and an L-shaped fixed plate is arranged at the bottom of the mounting floating plate. The overall monitoring device can be stably and firmly fixed through the fixed plate, and the structure is very stable and reliable;
[0022] 2) A lifting mechanism is arranged in the device, the monitoring height can be adjusted correspondingly, and a plurality of monitoring cameras are arranged in the installation room at evenly spaced intervals, and the wetland can be monitored all-round and without dead angles correspondingly;
[0023] 3) A solar panel is installed on the upper end surface of the installation room of the device through a flat platform, and a battery assembly is arranged at the middle position in the installation room, and electric energy can be provided for each component through the solar panel;
[0024] 4) The water turbidity monitor can be correspondingly installed through the fixed plate in the device, and the water turbidity can be monitored correspondingly through the water turbidity monitor, and dual monitoring of the land surface and water body can be realized in cooperation with the monitoring camera arranged at the upper end, and the structure is very ingenious and reasonable;
[0025] 5) A control assembly and a communication assembly are also arranged in the device. The opening and closing of each component can be controlled correspondingly through the control assembly, and the monitoring information can be transmitted to an external intelligent device through the communication assembly, and the structure is reasonable. Description of the drawings
[0026] Figure 1 is the structure diagram of Embodiment 1 of the utility model;
[0027] Figure 2 is Figure 1 the A-A cross-sectional view in
[0028] Figure 3 is Figure 1 the B-B cross-sectional view in
[0029] Figure 4 Structural diagram of Embodiment 2 of the present utility model;
[0030] Figure 5 is Figure 4 the C-C cross-sectional view in Specific implementation manners
[0031] The present utility model will be further illustrated below in conjunction with the accompanying drawings and specific embodiments. These embodiments are implemented on the premise of the technical solution of the present utility model. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model.
[0032] Embodiment 1
[0033] As Figure 1 , Figure 2 and Figure 3 shown, a wetland ecological restoration monitoring device in this embodiment includes a dual-purpose installation floating plate 1. A plurality of L-shaped detachable fixing plates 2 are correspondingly arranged at the lower end of the installation floating plate 1. A pointed end 3 is arranged at the lower end of the fixing plate 2 in this embodiment. The fixing plate 2 is inserted into the soil of the wetland ecological area to be monitored through the pointed end 3, thereby fixing the installation floating plate 1;
[0034] A lifting mechanism 4 is further arranged on the installation floating plate 1 in this embodiment. An installation chamber 6 is fixed on the main shaft 5 of the lifting mechanism 4. A plurality of monitoring cameras 7 arranged at equal intervals in the circumferential direction are installed in the installation chamber 6. The head of the monitoring camera 7 is embedded in the side wall of the installation chamber 6 and is aligned with the external area outside the installation chamber 6;
[0035] A flat platform 8 is further installed at the upper end of the installation chamber 6 in this embodiment. The flat platform 8 extends outward, and a solar panel 9 is further arranged on the flat platform. A battery assembly 10 corresponding to and connected to the solar panel 9 is arranged at the middle position of the installation chamber 6. The lifting mechanism 4 and the monitoring camera 7 in this embodiment are both powered by the battery assembly 10.
[0036] A total of six monitoring cameras 7 are installed in the installation chamber 6 in this embodiment, and a glass cover 71 for protecting the monitoring camera 7 is further arranged at the side wall of the installation chamber 6 in this embodiment.
[0037] A total of four fixing plates 2 are arranged at equal intervals at the lower end of the installation floating plate 1 in this embodiment; and the fixing plate 2 in this embodiment is detachably fixed to the installation floating plate 1 through a screw assembly 11 provided.
[0038] On the installation floating board 1 of this embodiment, a control component 12 and a communication component 13 are further provided. The control component 12 is used to control the working conditions of the monitoring lifting mechanism 4, the monitoring camera 7, and the solar panel 9, and accordingly transmits information to an external intelligent device through the communication component 13.
[0039] When the technical solution of this embodiment is specifically used, the overall device is fixed in the monitoring area of the ecological wetland through the L-shaped fixing plates at the bottom of the installation floating board. There are four fixing plates, and the bottom is provided with pointed ends, which can be more conveniently inserted and fixed in the ecological humidity, and the structure is relatively stable.
[0040] A lifting mechanism is further provided on the installation floating board. The height of the installation chamber can be adjusted through the lifting mechanism. Six monitoring cameras are evenly arranged at intervals in the installation chamber, and the surrounding environment changes can be monitored without dead angles. In addition, a solar panel is installed on the upper end of the installation chamber through a flat platform. The solar panel is used for power generation. Moreover, not only monitoring cameras are installed in the installation chamber, but also a battery component is installed at the middle position, which can store electric energy and be used as the power for the monitoring cameras and the lifting mechanism. The overall structure is very reasonable and stable.
[0041] Embodiment 2
[0042] As Figure 4 and Figure 5 shown, a wetland ecological restoration monitoring device of this embodiment includes a two-purpose installation floating board 1. A plurality of L-shaped detachable fixing plates 2 are correspondingly provided at the lower end of the installation floating board 1. The lower end of the fixing plate 2 of this embodiment is provided with a pointed end 3. The fixing plate 2 is inserted into the soil of the wetland ecological area to be monitored through the pointed end 3, so as to fix the installation floating board 1.
[0043] A lifting mechanism 4 is further provided on the installation floating board 1 of this embodiment. A main shaft 5 of the lifting mechanism 4 is fixed with an installation chamber 6. A plurality of monitoring cameras 7 are installed in the installation chamber 6 and are evenly arranged at intervals in the circumferential direction. The head of the monitoring camera 7 is embedded in the side wall of the installation chamber 6 and is aligned with the external area outside the installation chamber 6.
[0044] A flat platform 8 is further installed at the upper end of the installation chamber 6 of this embodiment. The flat platform 8 extends outwards, and a solar panel 9 is further provided on the flat platform. A battery component 10 corresponding to the solar panel 9 is also provided at the middle position of the installation chamber 6. The lifting mechanism 4 and the monitoring camera 7 of this embodiment are both powered by the battery component 10.
[0045] A total of six monitoring cameras 7 are installed in the installation chamber 6 of this embodiment, and a glass cover 71 for protecting the monitoring camera 7 is also provided at the side wall of the installation chamber 6 of this embodiment.
[0046] There are a total of four fixing plates 2 at the lower end of the installation floating plate 1 in this embodiment, which are evenly spaced; and the fixing plate 2 in this embodiment is detachably fixed on the installation floating plate 1 through the provided screw assembly 11.
[0047] In this embodiment, a control component 12 and a communication component 13 are further provided on the installation floating plate 1. The control component 12 is used to control the working conditions of the monitoring lifting mechanism 4, the monitoring camera 7, and the solar panel 9, and the information is transmitted to an external intelligent device through the communication component 13 accordingly.
[0048] On two fixing plates 2 symmetrically located at the lower end of the installation floating plate 1 in this embodiment, water turbidity monitors 14 are correspondingly installed. The area between the two relatively symmetric fixing plates 2 is set as the monitoring area of water turbidity;
[0049] When the installation floating plate 1 is placed in the water area of the wetland ecological restoration to be monitored, the water turbidity monitors 14 on the two fixing plates 2 monitor the turbidity of the water.
[0050] An installation hole 15 is provided on the vertical plate body of the fixing plate 2 in this embodiment. The head of the water turbidity monitor 14 is correspondingly arranged in the installation hole 15, and a circumferential installation plate 16 is provided on the water turbidity monitor 14, and it is detachably fixed on the vertical plate body correspondingly through the installation plate 16.
[0051] The installation plate 16 in this embodiment is detachably installed correspondingly through the screw assembly 11; and a surrounding plate 101 is further provided at the upper outer side of the installation floating plate 1 in this embodiment.
[0052] The water turbidity monitor 14 in this embodiment is powered by the battery assembly 10, and the water turbidity monitor 14 in this embodiment is connected to the control component 12, and transmits the monitoring information to an external intelligent device through the communication component 13.
[0053] The technical solution of this embodiment can not only monitor the land conditions of the ecological wetland through the monitoring camera, but also monitor the water conditions of the ecological wetland through the provided water turbidity monitor.
[0054] The installation floating plate in this embodiment itself has two functions. One is that it can be fixed on the wetland through the fixing plate, and the other is that the installation floating plate also has a floating function; after the installation floating plate is placed in the water, the installation floating plate floats naturally, and water turbidity monitors can be correspondingly installed on the fixing plate. There are four fixing plates that are evenly spaced, and the area between two relatively symmetric fixing plates is the monitoring area of the water.
[0055] After placing the installation floating board in the water body, the fixing plates on both sides are immersed in the water body. The principle of the water turbidity monitor is that one side of the monitor emits light, and the corresponding monitor on the other side receives the light. The particulate impurities in the water body will refract the emitted light accordingly, and the amount of light received by the monitor on the other side will decrease accordingly. Therefore, the turbidity of the water body can be judged by the data difference of the received light source to monitor the water body; the monitoring camera on the installation floating board still has the function of video monitoring, and can realize the dual monitoring of the water body and the ecological wetland.
[0056] Moreover, both the water turbidity monitor and the fixing plate itself are detachable structures. When only the wetland land surface needs to be monitored, the water turbidity monitor can be directly removed. When the water body needs to be monitored, the water turbidity monitor can be installed on the fixing plate correspondingly. The structure is very reasonable.
[0057] The above specific implementation manner is only a preferred embodiment of the present invention, and is not used to limit the implementation and the scope of the claims of the present invention. Any equivalent changes and modifications made according to the content of the patent protection scope of the present invention should be included in the scope of the patent application of the present invention.
Claims
1. A wetland ecological restoration monitoring device, characterized in that: It includes a dual-purpose installation floating board (1). At the lower end of the installation floating board (1), several L-shaped detachable fixing plates (2) are correspondingly arranged. At the lower end of the fixing plate (2), a pointed end (3) is provided. The fixing plate (2) is inserted into the soil of the wetland ecological area to be monitored through the pointed end (3), so as to fix the installation floating board (1). A lifting mechanism (4) is also arranged on the installation floating board (1). A mounting chamber (6) is fixed on the main shaft (5) of the lifting mechanism (4). Several monitoring cameras (7) are evenly arranged at circumferential intervals in the mounting chamber (6). The head of the monitoring camera (7) is embedded in the side wall of the mounting chamber (6) and is aligned with the external area outside the mounting chamber (6). A flat platform (8) is also installed at the upper end of the mounting chamber (6). The flat platform (8) extends outwards. A solar panel (9) is also arranged on the flat platform. A battery assembly (10) corresponding to the solar panel (9) is also arranged at the middle position of the mounting chamber (6). The lifting mechanism (4) and the monitoring camera (7) are both powered by the battery assembly (10).
2. The wetland ecological restoration monitoring device according to claim 1, characterized in that: A total of six monitoring cameras (7) are installed in the mounting chamber (6). A glass cover (71) for protecting the monitoring camera (7) is also arranged at the side wall of the mounting chamber (6).
3. The wetland ecological restoration monitoring device according to claim 1, characterized in that: A total of four fixing plates (2) with uniform intervals are arranged at the lower end of the installation floating board (1). The fixing plate (2) is detachably fixed on the installation floating board (1) through a screw assembly (11).
4. The wetland ecological restoration monitoring device according to claim 3, wherein: A control component (12) and a communication component (13) are also arranged on the installation floating board (1). The control component (12) is used to control the working conditions of the monitoring lifting mechanism (4), the monitoring camera (7) and the solar panel (9), and the information is transmitted to an external intelligent device through the communication component (13).
5. The wetland ecological restoration monitoring device according to claim 4, wherein: Water turbidity monitors (14) are correspondingly installed on two fixing plates (2) symmetrically located at the lower end of the installation floating board (1). The area between the two relatively symmetric fixing plates (2) is set as the monitoring area of water turbidity. When the installation floating board (1) is placed in the water area of the wetland ecological restoration to be monitored, the water turbidity monitors (14) on the two fixing plates (2) monitor the water turbidity.
6. The wetland ecological restoration monitoring device according to claim 5, wherein: An installation hole (15) is arranged on the vertical plate body of the fixing plate (2). The head of the water turbidity monitor (14) is correspondingly arranged in the installation hole (15). A circumferential installation plate (16) is arranged on the water turbidity monitor (14). The water turbidity monitor (14) is detachably fixed on the vertical plate body through the installation plate (16).
7. The wetland ecological restoration monitoring device according to claim 6, characterized in that: The installation plate (16) is detachably installed through a screw assembly (11). A surrounding plate (101) is also arranged at the upper outer side of the installation floating board (1).
8. The wetland ecological restoration monitoring device according to claim 5, characterized in that: The described water turbidity monitor (14) is powered by a battery assembly (10), and the water turbidity monitor (14) is connected to a control assembly (12), and transmits the monitoring information to an external intelligent device through a communication assembly (13).
Citation Information
Patent Citations
Ecological wetland restoration monitoring device
CN221684081U