Intelligent management and pollution interception integrated device for paddy field drainage
By introducing components such as cameras, solar panels, and controllers into the paddy field drainage system, combined with a remote operating system, the problem of paddy field drainage equipment being unable to be remotely viewed and operated has been solved, realizing intelligent remote monitoring and convenient control, and improving the system's operational efficiency and emergency response capabilities.
Patent Information
- Application Number
- CN202510987471.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-17
- Publication Date
- 2025-12-05
AI Technical Summary
The existing integrated intelligent management and pollution interception equipment for paddy field drainage cannot be remotely viewed and operated, resulting in inconvenience in operation during severe weather or emergencies, and making it impossible to monitor and control in real time.
By using cameras, solar panels, controllers, and power supplies in conjunction with a remote operating system and operating mechanism, remote viewing and control can be achieved. This includes the wireless connection of support rods, connecting brackets, mounting rings, controllers, and power supplies. Combined with the control platform, computer, home appliances, and portable devices in the remote operating system, intelligent drainage regulation and farmland runoff purification functions are constructed.
It enables remote real-time monitoring and operation, improves operational convenience, reduces manual inspection costs, shortens emergency response time, reduces the risk of waterlogging, and enhances the intelligent management capabilities of paddy field drainage systems.
Smart Images

Figure CN121069871A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of wisdom management, and in particular to a water field drainage wisdom management and pollution interception integrated device. BACKGROUND
[0002] The water field drainage wisdom management and pollution interception integrated device is an integrated device combining intelligent drainage control and farmland drainage purification functions, and is mainly used to solve the problems of low efficiency of traditional water field drainage and poor pollution treatment effect.
[0003] At present, when the water field drainage wisdom management and pollution interception integrated device is operated in the water field, the opening and closing of the entire device are controlled by manual operation.
[0004] However, the current device needs personnel to regularly go to the water field for operation by manual control operation, but this method will cause inconvenience when encountering bad weather and unexpected situations, and also cannot monitor and check the situation in the water field in real time, and is not convenient for opening and closing the device in the water field at any time.
[0005] Therefore, it is necessary to provide a water field drainage wisdom management and pollution interception integrated device to solve the above technical problems. SUMMARY
[0006] The present application provides a water field drainage wisdom management and pollution interception integrated device, which solves the problem that the current water field equipment cannot be remotely viewed and operated by the operator.
[0007] To solve the above technical problems, the present application provides a water field drainage wisdom management and pollution interception integrated device, which comprises:
[0008] A control mechanism, a remote operation system and an operation mechanism;
[0009] The control mechanism is wirelessly connected to the remote operation system and the operation mechanism;
[0010] The control mechanism comprises a support rod, two connecting brackets, a camera, a solar panel, two mounting rings, a controller and a power supply, the two connecting brackets are respectively connected to the surface of the support rod, the camera and the solar panel are respectively connected to one end of the two connecting brackets, the two mounting rings are mounted on the surface of the support rod, and the controller and the power supply are respectively mounted on the surface of the two mounting rings;
[0011] The remote operation system comprises a control platform, a computer, a household device and a portable device, and the computer, the household device and the portable device are wirelessly connected to the conveying end of the control platform;
[0012] The operation mechanism comprises a ridge main body, a filter assembly, a T-shaped pipeline, a valve, an extension pipe, a lifting device, a grid, a drainage ditch and a drainage pipe;
[0013] The filter assembly is arranged on the ridge main body;
[0014] The T-shaped pipeline is connected to one side of the filter assembly, and the valve is installed on the T-shaped pipeline;
[0015] The extension pipe is arranged at the top of the T-shaped pipeline;
[0016] The lifting device is arranged on one side of the T-shaped pipeline;
[0017] The grid is installed on one side of the ridge main body;
[0018] The drainage ditch is arranged on the surface of the ridge main body;
[0019] The drainage pipe is arranged on one side of the filter assembly.
[0020] Preferably, the bottom of the support plate is connected with a mounting base.
[0021] Preferably, the filter assembly comprises a wetland pool, modified zeolite, steel slag particles and straw biochar, the wetland pool is installed on the ridge main body, and the modified zeolite, the steel slag particles and the straw biochar are sequentially installed in the interior of the wetland pool from right to left.
[0022] Preferably, the lifting device comprises a motor, a threaded rod, a threaded sleeve, a connecting bracket and a baffle, the motor is installed on one side of the wetland pool, one end of the threaded rod is connected to the motor through a shaft coupling, and the threaded sleeve is threadedly connected to the surface of the threaded rod.
[0023] Preferably, the connecting bracket is connected to one side of the threaded sleeve and connected with the extension pipe, and the stop block is connected to the top of the threaded rod.
[0024] Preferably, a cover plate is arranged on the wetland pool.
[0025] Preferably, the bottom of the mounting base is provided with a fixing assembly, the fixing assembly comprises a bottom plate, a fixing seat, a plurality of external thread blocks and a plurality of threaded sleeves, the bottom plate is connected to the bottom of the mounting base, and the fixing seat is connected to the bottom of the bottom plate.
[0026] Preferably, a plurality of the external thread blocks are respectively connected to the surface of the bottom plate, and a plurality of the threaded sleeves are respectively threadedly connected to the surface of a plurality of the external thread blocks.
[0027] Preferably, an adjustment assembly is provided between the support rod and the camera. The adjustment assembly includes a telescopic component, an extension frame, a fixed mounting plate, and a limiting bolt. The telescopic component is connected to one side of the support rod, the extension frame is connected to one end of the telescopic component, and the fixed mounting plate is connected to one end of the extension frame.
[0028] Preferably, the limiting bolt is disposed on the telescopic member.
[0029] Compared with related technologies, the integrated device for intelligent management and pollution interception of paddy field drainage provided by the present invention has the following beneficial effects:
[0030] This invention provides an integrated device for intelligent management and pollution interception of paddy field drainage. By installing a camera, solar panel, controller, and power supply on a support rod with two connecting brackets and two mounting rings, and using it in conjunction with a remote operating system and operating mechanism, it is convenient for operators to remotely view the situation in the paddy field and control the entire operating mechanism at any time, thereby increasing the convenience of the operator in operating the entire device. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the structure of a first embodiment of an integrated device for intelligent management and pollution interception of paddy field drainage provided by the present invention;
[0032] Figure 2 A three-dimensional structural diagram of the control mechanism from a first-person perspective;
[0033] Figure 3 for Figure 2 A three-dimensional structural diagram of the control mechanism from a second-view perspective;
[0034] Figure 4 This is a schematic diagram of the structure of a remote operating system;
[0035] Figure 5 A three-dimensional structural diagram of the operating mechanism from a first-person perspective;
[0036] Figure 6 for Figure 5 A three-dimensional structural diagram of the integrated drainage and pollution interception device is shown.
[0037] Figure 7 for Figure 6 The enlarged schematic diagram of section B is shown below;
[0038] Figure 8 This is a schematic diagram of the structure of a second embodiment of an integrated device for intelligent management and pollution interception of paddy field drainage provided by the present invention;
[0039] Figure 9A structural schematic view of a third embodiment of an integrated device for intelligent management of water field drainage and pollution interception provided by the present application.
[0040] Reference numerals in the figure: 1, field ridge main body;
[0041] 2, filter assembly; 21, wetland pool; 22, modified zeolite; 23, steel slag particles; 24, straw biochar;
[0042] 3, T-shaped pipeline; 4, valve; 5, telescopic pipe;
[0043] 6, lifting device; 61, motor; 62, threaded rod; 63, threaded sleeve; 64, connecting bracket; 65, baffle;
[0044] 7, grating; 8, cover plate; 9, drainage channel; 10, drainage pipe;
[0045] 11, positioning assembly; 111, positioning groove; 112, positioning block;
[0046] 12, fixing member;
[0047] 13, control mechanism; 131, support rod; 132, connecting bracket; 133, camera; 134, solar panel; 135, mounting ring; 136, controller; 137, power supply; 138, mounting base;
[0048] 14, remote operation system; 141, control platform; 142, computer; 143, household equipment; 144, portable equipment;
[0049] 15, fixing assembly; 151, bottom plate; 152, fixing seat; 153, external threaded block; 154, threaded sleeve;
[0050] 16, adjusting assembly; 161, telescopic member; 162, extension frame; 163, fixed mounting plate; 164, limiting pin. DETAILED DESCRIPTION
[0051] The present application will be further described below in conjunction with the drawings and embodiments.
[0052] First embodiment
[0053] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 , among which, Figure 1 A structural schematic view of a first embodiment of an integrated device for intelligent management of water field drainage and pollution interception provided by the present application; Figure 2A control mechanism first perspective view of the structure diagram; Figure 3 A control mechanism second perspective view of the structure diagram; Figure 2 A control mechanism second perspective view of the structure diagram; Figure 4 A control mechanism second perspective view of the structure diagram; Figure 5 A control mechanism first perspective view of the structure diagram; Figure 6 A control mechanism first perspective view of the structure diagram; Figure 5 A control mechanism first perspective view of the structure diagram; Figure 7 A control mechanism first perspective view of the structure diagram; Figure 6 A control mechanism first perspective view of the structure diagram;
[0054] A control mechanism first perspective view of the structure diagram;
[0055] A control mechanism first perspective view of the structure diagram;
[0056] The control mechanism 13 includes a support rod 131, two connecting brackets 132, a camera 133, a solar panel 134, two mounting rings 135, a controller 136, and a power supply 137. The two connecting brackets 132 are respectively connected to the surface of the support rod 131. The camera 133 and the solar panel 134 are respectively connected to one end of the two connecting brackets 132. The two mounting rings 135 are installed on the surface of the support rod 131. The controller 136 and the power supply 137 are respectively installed on the surface of the two mounting rings 135.
[0057] The remote operation system 14 includes a control platform 141, a computer 142, a household device 143, and a portable device 144. The computer 142, the household device 143, and the portable device 144 are wirelessly connected to the delivery end of the control platform 141.
[0058] The operation mechanism includes a dike main body 1, a filter assembly 2, a T-shaped pipeline 3, a valve 4, an extension tube 5, a lifting device 6, a grid net 7, a drainage channel 9, and a drainage pipe 10.
[0059] The filter assembly 2 is arranged on the dike main body 1.
[0060] The T-shaped pipeline 3 is connected to one side of the filter assembly 2, and the valve 4 is installed on the T-shaped pipeline 3.
[0061] The extension tube 5 is arranged on the top of the T-shaped pipeline 3.
[0062] The lifting device 6 is arranged on one side of the T-shaped pipeline 3.
[0063] The grid net 7 is installed on one side of the ridge main body 1;
[0064] The drainage ditch 9 is opened on the surface of the ridge main body 1;
[0065] The drain pipe 10 is arranged on one side of the filter assembly 2.
[0066] Camera 133:
[0067] Model: Hikvision DS-2CD3T47FWDV2-IS, 4 million pixel infrared waterproof camera, supports:
[0068] 1080P high-definition video capture, frame rate 25fps;
[0069] Infrared night vision and intelligent mobile detection;
[0070] Waterproof level IP66, suitable for storm environment.
[0071] Monitoring parameters: real-time acquisition of water level, water surface floating objects, equipment running state (such as L-shaped pipe 2 position), video data is transmitted to remote operation system 14 through 4G / 5G module.
[0072] Solar panel 134:
[0073] Specification: monocrystalline silicon solar panel, matched with 12V / 20Ah lithium battery (power supply 137).
[0074] Charging management: built-in MPPT controller, overcharge and overdischarge protection function.
[0075] Controller 136:
[0076] Hardware: industrial-grade PLC controller (Siemens S7-200 SMART);
[0077] Integration: four-way analog input (water level, water quality sensor signal);
[0078] Two-way relay output (control motor 52 forward and reverse);
[0079] 4G / 5G communication module (supports TCP / IP protocol).
[0080] Software: pre-installed customized control program, supports remote upgrade.
[0081] Power supply 137:
[0082] Composition: lithium battery pack + DC-DC converter (12V to 24V / 5V), power supply for controller 136 (24V), camera 133 (12V), motor 52 (24V), with over-temperature protection and short-circuit protection function.
[0083] Control platform 141:
[0084] Deployment: Cloud server (Ali Cloud ECS) + local server (optional), supports:
[0085] Data storage (historical water level, water quality data saved for ≥1 year);
[0086] Threshold alarm (SMS notification when water level exceeds upper limit / water quality exceeds standard);
[0087] Remote instruction issuance (control motor 52 start / stop, L-shaped pipe 2 lifting);
[0088] Communication protocol: MQTT protocol, data transmission delay ≤1 second, supports breakpoint resume.
[0089] Terminal device:
[0090] Computer 142: Windows 10 system, install special monitoring software, support large screen display real-time data and device state topology.
[0091] Home device 143: support Web access, login management platform through browser, suitable for home office scenario.
[0092] Portable device 144: Android / iOS mobile APP (UI interface as Figure 4 ), functions include:
[0093] Real-time video viewing (supports four-way split screen);
[0094] Manual control mode (click screen to adjust L-shaped pipe 2 height);
[0095] Data report generation (daily / weekly / monthly total drainage volume, water quality index trend).
[0096] 2. Intelligent control logic
[0097] Automatic mode:
[0098] Camera 133 monitors water level in real time, when water level ≥ alarm value (such as 20 cm above field surface), controller 136 triggers motor 52 forward rotation, L-shaped pipe 2 drops to 10 cm below water surface, starts drainage;
[0099] During the drainage process, if NH4 + >5 mg / L is detected by wetland pool 91 outlet water quality sensor, remote platform 141 automatically sends instructions to slow down motor 52 speed (drainage flow reduces by 30%), prolongs water body residence time in wetland pool.
[0100] Manual mode: The operator sets the target height of the L-shaped pipe 2 by dragging the screen slider with the portable device 144, the controller 136 drives the motor 52 to operate, and the camera 133 feeds back the position of the L-shaped pipe 2 in real time, forming a closed-loop control.
[0101] Control mechanism and remote system linkage process
[0102] Data acquisition: The camera 133 collects water level data every 10 minutes, which is uploaded to the control platform 141 through the 4G module, and the controller 136 reads the encoder signal of the motor 52 to confirm the current height of the L-shaped pipe 2.
[0103] Decision processing: The control platform 141 generates control instructions according to the water level data and the preset strategy.
[0104] Instruction execution: After receiving the instructions, the controller 136 drives the motor 52 to act, and the camera 133 records the operation process, and the video clips are stored in the cloud (retained for 7 days).
[0105] Feedback verification: After the operation is completed, the controller 136 returns the execution results (such as the actual height of the L-shaped pipe 2 and the drainage flow) to the remote system 14.
[0106] Unmanned monitoring capability: Through the camera 133 and the remote system 14, the water field drainage realizes "zero manual" monitoring, saving 80% of labor cost (traditional mode requires 2 people / 100 mu of inspection).
[0107] Emergency response advantage: In heavy rain, the system automatically starts drainage, and the response time is shortened from 2 hours of manual operation to 10 minutes, reducing the risk of waterlogging by 90%.
[0108] Data traceability: The control platform 141 stores operation data for more than 3 years, supports farmland drainage rule analysis, and provides basis for irrigation strategy optimization (such as finding that 10cm of water needs to be pre-drained 1 week before the rainy season to reduce waterlogging).
[0109] The bottom of the support plate 131 is connected with a mounting base 138.
[0110] The surface of the grid net 7 is coated with anticorrosive and antirust paint or made of anticorrosive and antirust material, and the grid net 7 is used to block the crop straw and other impurities in the farmland from entering the wetland.
[0111] The filter assembly 2 includes a wetland pool 21, modified zeolite 22, steel slag particles 23 and straw biochar 24, the wetland pool 21 is installed on the field ridge main body 1, and the modified zeolite 22, the steel slag particles 23 and the straw biochar 24 are installed in the inside of the wetland pool 21 from right to left.
[0112] The surface of the dike main body 1 is provided with an installation groove matched with the wetland pool 21, the wetland pool 21 is directly connected with the installation groove through the way of pulling and inserting, which is convenient for replacement in later period, and installation through grooves matched with the T-shaped pipeline 3 and the drain pipe 10 are respectively arranged on both sides of the surface of the wetland pool 21, which is convenient for water flow.
[0113] Modified zeolite 22, steel slag particles 23 and straw biochar 24 are used for nitrogen and phosphorus removal, pH buffering and water quality purification in farmland drainage, and the modified zeolite 22, steel slag particles 23 and straw biochar 24 are all adsorption fillers.
[0114] Modified zeolite 22 (denitrification):
[0115] Modification method: soak natural zeolite (particle size 2-5mm) in 3%-5% NaCl solution for 24 hours to enhance the cation exchange capacity;
[0116] Function: preferentially adsorbs ammonia nitrogen, and the adsorption capacity can reach 15-25mg / g.
[0117] Steel slag particles 23 (phosphorus removal):
[0118] Treatment method: crush the steel slag to 1-3mm particles, and wash with water to remove alkaline powder (to avoid high pH);
[0119] Function: form precipitate with phosphate by releasing calcium ions and iron ions, and the phosphorus adsorption capacity can reach 20-40mg / g.
[0120] Straw biochar 24 (synergistic buffering):
[0121] Preparation: pyrolyze rice straw at 400℃ for 2 hours, crush to 1-2mm, and directly mix (10%-20% share);
[0122] Function: adsorb organic nitrogen, buffer pH fluctuation, and enhance system stability.
[0123] The lifting device 6 comprises a motor 61, a threaded rod 62, a threaded sleeve 63, a connecting bracket 64 and a baffle 65, the motor 61 is installed on one side of the wetland pool 21, one end of the threaded rod 62 is connected to the motor 61 through a shaft coupling, and the threaded sleeve 63 is threadedly connected to the surface of the threaded rod 62.
[0124] The connecting bracket 64 is connected to one side of the threaded sleeve 63 and connected with the telescopic pipe 5, and the stop block 65 is connected to the top of the threaded rod 62.
[0125] The use of the motor 61, threaded rod 62, threaded sleeve 63 and connecting bracket 64 can adjust the up and down height of the telescopic pipe 5 during the flood season, the motor 61 is powered by an external power supply, and the motor 61 is a servo motor that can drive the threaded rod 62 to rotate forward and reverse, so that the telescopic pipe 5 can be moved up and down through the threaded sleeve 63 and the connecting bracket 64.
[0126] The wetland pool 21 is provided with a cover plate 8.
[0127] The filter assembly 2 and the drain pipe 10 are arranged on the dike body 1 with the drain channel 9, and the T-shaped pipe 3 with the valve 4 and the telescopic pipe 5, the lifting device 6 and the grid 7 are used, which can be adjusted according to the up and down height of the water level in the paddy field, and the grid facilitates the filtering operation of the large impurities carried in the paddy field, and the filter assembly facilitates the filtering of the impurities and chemical drugs carried in the water, and also facilitates the control of the water flow rate.
[0128] The working principle of the intelligent management and pollution interception integrated device for paddy field drainage provided by the application is as follows:
[0129] When the camera 133 on the supporting rod 131 installed on the dike monitors the water level in the paddy field and discharges the water in the paddy field, first, the signal transmission instrument on the camera 133 sends information to the control platform 141, then the control platform 141 sends the received information to the computer 142, household equipment 143 and portable equipment 144 respectively, and then the operator starts the information to the controller 136 according to the used computer 142, household equipment 143 or portable equipment 144, and then the power supply 137 starts to work when the signal is transmitted to the controller 136.
[0130] When the water in the field is discharged during the flood season, first, the motor 61 drives the threaded rod 62 to rotate, when the threaded rod 62 rotates, the threaded sleeve 63 on the surface moves, when the threaded sleeve 63 moves, the connecting bracket 64 drives the telescopic pipe 5 to adjust in the T-shaped pipe 3, when the telescopic pipe 5 is adjusted to be flush with the water surface, the motor 61 stops working, then the water in the field flows to the inside of the grid 7 through the grid 7, then the water flows to the inside of the wetland pool 21 through the telescopic pipe 5 and the T-shaped pipe 3, and then the water is filtered by the modified zeolite 22, steel slag particles 23 and straw biochar 24 in the inside, and then the water flows out through the drain pipe 10 after being filtered.
[0131] When it is dry season, directly open the valve 4 on the T-shaped pipe 3, then the water flows directly to the inside of the filter assembly 2 through the T-shaped pipe 3, and finally flows out to the inside of the drain channel 9 through the drain pipe 10.
[0132] Compared with the related art, the application provides a device for intelligent management of paddy field drainage and pollution interception, which has the following beneficial effects:
[0133] The application provides a device for intelligent management of paddy field drainage and pollution interception, which is provided with a camera 133, a solar panel 134, a controller 136 and a power supply 137 on a support rod 131 provided with two connecting supports 132 and two mounting rings 135, cooperates with a remote operation system 14 and an operation mechanism, and is convenient for an operator to remotely check the situation in the paddy field and control the whole operation mechanism at any time, thereby increasing the convenience of the operator in operating the whole device.
[0134] Second embodiment
[0135] Please refer to Figure 8 Based on the first embodiment of the application, the second embodiment of the application provides another device for intelligent management of paddy field drainage and pollution interception. The second embodiment is only a preferred mode of the first embodiment, and the implementation of the second embodiment does not affect the implementation of the first embodiment.
[0136] Specifically, the second embodiment of the application provides a device for intelligent management of paddy field drainage and pollution interception, which is different from the first embodiment in that the device for intelligent management of paddy field drainage and pollution interception is provided with a fixing assembly 15 at the bottom of a mounting base 138, the fixing assembly 15 comprises a bottom plate 151, a fixing seat 152, a plurality of external threaded blocks 153 and a plurality of threaded sleeves 154, the bottom plate 151 is connected to the bottom of the mounting base 138, and the fixing seat 152 is connected to the bottom of the bottom plate 151.
[0137] The plurality of external threaded blocks 153 are respectively connected to the surface of the bottom plate 151, and the plurality of threaded sleeves 154 are respectively threadedly connected to the surface of the plurality of external threaded blocks 153.
[0138] A plurality of mounting through holes matched with the plurality of external threaded blocks 153 are formed in the surface of the mounting base 138, and the plurality of external threaded blocks 153 and the plurality of threaded sleeves 154 can install the control mechanism 13.
[0139] The application provides a device for intelligent management of paddy field drainage and pollution interception, which has the following working principle:
[0140] When the control mechanism 13 is installed on the field ridge at the side of the paddy field, first, the bottom plate 151 with a plurality of external threaded blocks 153 is installed on the field ridge through the fixing seat 152, when the bottom plate 151 with a plurality of external threaded blocks 153 is installed through the fixing seat 152, the installation base 138 at the bottom of the supporting rod 131 is installed on the surface of the plurality of external threaded blocks 153, and finally the plurality of threaded sleeves 154 are screwed with the plurality of external threaded blocks 153 to fasten the installation base 138.
[0141] Compared with the related art, the application provides a kind of for paddy field drainage intelligent management and pollution interception integrated device with the following beneficial effects:
[0142] The application provides a kind of for paddy field drainage intelligent management and pollution interception integrated device, bottom plate 151, fixing seat 152, a plurality of external threaded blocks 153 and a plurality of threaded sleeves 154 are arranged at the bottom of installation base 138, to facilitate the installation of control mechanism 13 in paddy field.
[0143] Third embodiment
[0144] Please refer to Figure 9 Based on the first embodiment of the application, the third embodiment of the application provides another kind of for paddy field drainage intelligent management and pollution interception integrated device. The third embodiment is only a preferred mode of the first embodiment, and the implementation of the third embodiment does not affect the separate implementation of the first embodiment.
[0145] Specifically, the third embodiment of the application provides a kind of for paddy field drainage intelligent management and pollution interception integrated device, which is different from the first embodiment. A kind of for paddy field drainage intelligent management and pollution interception integrated device, the adjusting assembly 16 is arranged between the supporting rod 131 and the camera 133, the adjusting assembly 16 includes telescopic piece 161, extension frame 162, fixed mounting plate 163 and limit pin 164, the telescopic piece 161 is connected to one side of the supporting rod 131, the extension frame 162 is connected to one end of the telescopic piece 161, and the fixed mounting plate 163 is connected to one end of the extension frame 162.
[0146] The limit pin 164 is arranged on the telescopic piece 161.
[0147] The use of telescopic piece 161 can adjust the left and right positions of the camera 133, and the camera 133 is installed on the fixed mounting plate 163.
[0148] The working principle of the application is as follows:
[0149] When the camera 133 for monitoring the water field is installed on the control mechanism 13, the position of the camera 133 is adjusted first, the limiting pin 164 on the telescopic part 161 is taken out, then the telescopic part 161 is pulled to drive the extension frame 162 and the fixed mounting plate 163 to adjust the position of the camera 133, and finally the telescopic part 161 is connected by using the limiting pin 164.
[0150] Compared with the related art, the application has the following beneficial effects:
[0151] The application provides a device for intelligent management of water field drainage and pollution interception, which is characterized by the telescopic part 161, the extension frame 162, the fixed mounting plate 163 and the limiting pin 164 arranged between the supporting rod 131 and the camera 133, so that the position of the camera 133 can be adjusted according to the use condition after the whole control mechanism 13 is installed on the ridge of the water field.
[0152] The above description is only an embodiment of the application, and does not limit the patent scope of the application, and any equivalent structure or equivalent process transformation according to the content of the specification and the drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the application.
Claims
1. An integrated device for intelligent management of water field drainage and pollution interception, characterized in that, The utility model relates to a remote control system for farmland, including: Control mechanism, remote operation system and operating mechanism; The control mechanism is wirelessly connected to the remote operation system and the operating mechanism; The control mechanism includes a support rod, two connecting brackets, a camera, a solar panel, two mounting rings, a controller and a power supply, the two connecting brackets are respectively connected to the surface of the support rod, the camera and the solar panel are respectively connected to one end of the two connecting brackets, the two mounting rings are both mounted on the surface of the support rod, and the controller and the power supply are respectively mounted on the surface of the two mounting rings; The remote operation system includes a control platform, a computer, a household device and a portable device, and the computer, the household device and the portable device are wirelessly connected to the delivery end of the control platform; The operating mechanism includes a ridge main body, a filter assembly, a T-shaped pipeline, a valve, an extension tube, a lifting device, a grid, a drainage channel and a drainage pipe; The filter assembly is arranged on the ridge main body; The T-shaped pipeline is connected to one side of the filter assembly, and the valve is mounted on the T-shaped pipeline; The extension tube is arranged at the top of the T-shaped pipeline; The lifting device is arranged on one side of the T-shaped pipeline; The grid is mounted on one side of the ridge main body; The drainage channel is arranged on the surface of the ridge main body; The drainage pipe is arranged on one side of the filter assembly.
2. The device for intelligent management of drainage and interception of pollution in paddy fields according to claim 1, characterized in that, The bottom of the support plate is connected with a mounting base.
3. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 1, characterized in that, The filter assembly includes a wetland pool, modified zeolite, steel slag particles and straw biochar, the wetland pool is mounted on the ridge main body, and the modified zeolite, the steel slag particles and the straw biochar are sequentially mounted in the wetland pool from right to left.
4. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 1, characterized in that, The lifting device includes a motor, a threaded rod, a threaded sleeve, a connecting bracket and a baffle, the motor is mounted on one side of the wetland pool, the threaded rod is connected to one end of the motor through a shaft coupling, and the threaded sleeve is threadedly connected to the surface of the threaded rod.
5. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 4, characterized in that, The connecting bracket is connected to one side of the threaded sleeve and connected with the extension tube, and the baffle is connected to the top of the threaded rod.
6. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 1, characterized in that, A cover plate is arranged on the wetland pool.
7. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 2, characterized in that, The bottom of the mounting base is provided with a fixing assembly, the fixing assembly includes a bottom plate, a fixing seat, a plurality of external threaded blocks and a plurality of threaded sleeves, the bottom plate is connected to the bottom of the mounting base, and the fixing seat is connected to the bottom of the bottom plate.
8. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 7, characterized in that, A plurality of external threaded blocks are respectively connected to the surface of the bottom plate, and a plurality of threaded sleeves are respectively threadedly connected to the surface of the plurality of external threaded blocks.
9. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 1, characterized in that, An adjusting assembly is arranged between the support rod and the camera, the adjusting assembly includes a telescopic piece, an extension frame, a fixed mounting plate and a limiting pin, the telescopic piece is connected to one side of the support rod, the extension frame is connected to one end of the telescopic piece, and the fixed mounting plate is connected to one end of the extension frame.
10. The integrated device for intelligent management of drainage and pollution interception in paddy fields according to claim 9, characterized in that, The limiting pin is arranged on the telescopic piece.