A wind-solar complementary new energy groundwater pumping device

CN224692771UActive Publication Date: 2026-08-28孙德华
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520926297.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-08-28
Estimated Expiration
2035-05-13

AI Technical Summary

Technical Problem

[0004](1)水泵需要如电动机、燃油机等动力系统进行驱动,对于铺设电力或者交通不便的地区,难以使用水泵进行取水;

Benefits of technology

[0020]所述风光互补的新能源地下水抽取装置包括支撑装置、风能驱动装置、太阳能驱动装置和取水装置,所述风能驱动装置和所述太阳能驱动装置均设置在支撑装置上,支撑装置用于风能驱动装置、太阳能驱动装置的支撑及安装,风能驱动装置和太阳能驱动装置均为取水装置动作提供动力,取水装置为取水的执行装置,用于水井地下水的提取。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224692771U_ABST
    Figure CN224692771U_ABST
Patent Text Reader

Abstract

The utility model provides a kind of new energy underground water pumping device of wind and light complement, it is related to underground water pumping device technical field, including supporting device, wind energy driving device, solar energy driving device and water taking device, wind energy driving device is set on supporting device, and is connected with water taking device transmission, solar energy driving device is set on supporting device, and is connected with water taking device transmission;Wind energy driving device and solar energy driving device can drive water taking device action to extract groundwater in water well;The utility model cooperates by wind energy driving device and solar energy driving device, uses wind energy and solar energy as the power source of driving water taking device action, not only is not influenced by topography, widely applicable, and solar energy and wind energy are green energy, and use cost is low, energy saving and environmental protection, while using the way of solar energy and wind energy complement, water taking device long time continuous work can be realized, and working process is safe and reliable.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A wind-solar hybrid new energy groundwater extraction device, characterized in that, It includes a support structure, a wind-powered drive system, a solar-powered drive system, and a water intake system, wherein: The wind power drive device is mounted on the support device and is connected to the water intake device via a transmission connection; the solar power drive device is mounted on the support device and is connected to the water intake device via a transmission connection. Both the wind-powered drive device and the solar-powered drive device can drive the water intake device to extract groundwater from the well.

2. The wind-solar hybrid new energy groundwater extraction device according to claim 1, characterized in that, The support device includes a multi-section tower body and a building foundation. The bottom of the multi-section tower body is provided with a ground connection component, which is connected to the building foundation. The multi-section tower body is connected by a grounding electrode.

3. The wind-solar hybrid new energy groundwater extraction device according to claim 2, characterized in that, The anchor connection assembly includes an anchor plate, a positioning plate, and anchor bolts, wherein: The foundation steel plate is installed at the bottom of the multi-section tower body; The positioning steel plate is embedded in the building foundation; The anchor bolts pass through the anchor plate and the positioning plate and are connected to the building foundation.

4. The wind-solar hybrid new energy groundwater extraction device according to claim 2, characterized in that, The wind power drive device includes a wind turbine head assembly and a drive shaft assembly, wherein: The wind turbine head assembly is located at the top of the multi-section tower body; The drive shaft assembly is vertically installed inside the multi-section tower body, and the fan head assembly is connected to the water intake device via the drive shaft assembly.

5. The wind-solar hybrid new energy groundwater extraction device according to claim 4, characterized in that, The fan head assembly includes a central shaft, a fan casing, a tie structure, fan blades, a head base, and a brake assembly, wherein: The machine head base is fixedly installed on the top of the multi-section tower body; The central shaft is rotatably mounted on the machine head base, and the bottom end of the central shaft passes through the machine head base and is connected to the transmission shaft assembly. The central shaft and the transmission shaft assembly rotate synchronously. The air duct is fixedly sleeved onto the central shaft; The tie structure is connected to the central axis; The fan blades are mounted on the tie structure, and there are multiple fan blades, all of which are evenly arranged circumferentially. The braking assembly includes a brake drive assembly and a brake actuation assembly. The brake drive assembly is mounted on the building foundation, and the brake actuation assembly is mounted on the machine head base. The brake drive assembly is connected to the brake actuation assembly and can drive the brake actuation assembly to brake the central shaft.

6. The wind-solar hybrid new energy groundwater extraction device according to claim 2, characterized in that, The solar-powered device includes a solar photovoltaic panel, a control box, a battery, and a DC motor. The solar photovoltaic panel is installed on the multi-section tower body, and the battery and the DC motor are both installed on the building foundation. The solar photovoltaic panel is electrically connected to the battery, and the DC motor is electrically connected to the battery. The output end of the DC motor is connected to the water intake device. The solar photovoltaic panel, the battery, and the DC motor are all electrically connected to the control box.

7. The wind-solar hybrid new energy groundwater extraction device according to claim 6, characterized in that, The wind-solar hybrid renewable energy groundwater extraction device also includes a lighting device, which comprises a lamp and a light sensor, wherein: Both the lighting lamp and the light sensor are electrically connected to the storage battery; The lighting fixtures are installed on the multi-section tower body; The light sensor is connected to the lighting lamp, and the light sensor can sense natural light and control the lighting lamp to turn on and off.

8. The wind-solar hybrid new energy groundwater extraction device according to claim 1, characterized in that, The water intake device includes a transmission mechanism, a crank mechanism, and a water lifting mechanism, wherein: The transmission mechanism includes a bracket, a corner actuator, and a linkage shaft assembly. The corner actuator is mounted on the bracket. The wind-powered drive device is connected to the first input end of the corner actuator, and the solar-powered drive device is connected to the second input end of the corner actuator. The output end of the corner actuator is connected to the crank mechanism via the linkage shaft assembly. The crank mechanism is connected to the water-lifting mechanism, which extends into the well.

9. The wind-solar hybrid new energy groundwater extraction device according to claim 8, characterized in that, The crank mechanism includes a crank-connecting rod assembly, and the linkage shaft assembly includes a driving shaft and a driven shaft, wherein: The crank-connecting rod assembly is connected between the drive shaft and the driven shaft. The drive shaft is connected to the output end of the angler, and the driven shaft is rotatably mounted on the bracket. The crank-connecting rod assembly includes a crankshaft and a connecting rod fixedly sleeved on the drive shaft, the connecting rod being connected to the water-lifting mechanism.

10. The wind-solar hybrid new energy groundwater extraction device according to claim 8, characterized in that, The water lifting mechanism includes a casing assembly, a lifting rod, a piston valve, and a bottom valve, wherein: The casing assembly is fixedly installed inside the water well; The top end of the water-lifting rod is connected to the crank mechanism, and the bottom end of the water-lifting rod is movably inserted into the sleeve assembly in the vertical direction and connected to the piston valve. The bottom valve is disposed on the sleeve assembly and located below the piston valve; When the lifting rod moves upward, the piston valve closes and the bottom valve opens; When the lifting rod moves downward, the piston valve opens and the bottom valve closes.