Energy-saving mist condensation water collection device capable of automatically calculating dew point
By using a dew point calculation module and a wind-solar hybrid power supply module, combined with a fan and a condenser plate, the system automatically calculates the dew point and adjusts the temperature, solving the problems of high energy consumption and poor water collection effect of existing equipment, and achieving efficient and energy-saving mist condensation and water collection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN XINLUWU ECOLOGICAL ENVIRONMENT ENG CO LTD
- Filing Date
- 2025-04-17
- Publication Date
- 2026-04-10
AI Technical Summary
Existing portable devices struggle to accurately calculate dew point, resulting in poor fog condensation and water collection or high energy consumption.
By employing a dew point calculation module and combining it with a wind-solar hybrid power supply module, fog is collected through a fan and a condenser plate. The temperature of the condenser plate is regulated by a semiconductor chip, and the dew point is automatically calculated by an Arduino microcontroller and sensors, achieving efficient and energy-saving water collection.
It achieves efficient and energy-saving automatic calculation of dew point, improving the efficiency of mist condensation and water collection and energy utilization.
Smart Images

Figure CN224108670U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air condensation water collection field, concretely is a kind of energy-saving fog condensation water collection device of automatic dew point calculation. BACKGROUND
[0002] Condensation water collection technology is an important technology for collecting and utilizing water vapor in fog to help irrigation of forest and grass in arid regions in the field of ecological restoration. Condensation water collection technology requires condensation module to condense fog into water body. However, existing portable devices cannot accurately calculate dew point, resulting in poor water collection effect or high energy consumption. Therefore, we provide an energy-saving fog condensation water collection device capable of automatically calculating dew point. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model provides an energy-saving fog condensation water collection device capable of automatically calculating dew point, which solves the problems raised in the above background technology.
[0004] To achieve the above purpose, the utility model provides an energy-saving fog condensation water collection device capable of automatically calculating dew point, which includes a condensation module, a wind-solar complementary power supply module and a dew point calculation module. The condensation module, wind-solar complementary power supply module and dew point calculation module are fixed on a support platform. The condensation module is used to collect and store water. The dew point calculation module monitors the ambient temperature and humidity and controls the temperature of the condensation module to be lower than the dew point temperature according to the ambient temperature and humidity, thereby realizing efficient and energy-saving water collection function. The wind-solar complementary power supply module is used to collect wind energy and solar energy to provide power for the condensation module and the dew point calculation module.
[0005] Preferably, the condensation module includes a fan, a fan motor, a condensation plate, a water collection tank, a flow guide pipe, a storage tank and a semiconductor sheet. The fan is fixed on one side above the water collection tank. The condensation plate is fixed on the other side of the water collection tank at an angle. The fan motor drives the fan to rotate and blows the fog in the air onto the condensation plate. The semiconductor sheet is arranged on the condensation plate and used to adjust the temperature of the condensation plate. The flow guide pipe connects the water collection tank and the storage tank. The fan blows the fog towards the condensation plate, so that the fog quickly condenses into water droplets on the condensation plate and flows into the water collection tank along the inclined angle of the condensation plate, and then flows into the storage tank through the flow guide pipe.
[0006] Preferably, the fan and fan motor are fixed on the water collection tank through a motor support, and the condensation plate is fixed on the water collection tank through screws.
[0007] Preferably, the inclined angle of the condensation plate is 60°.
[0008] Preferably, the dew point calculation module comprises an Arduino single-chip microcomputer, an electronic temperature sensor and an electronic humidity sensor; the electronic temperature sensor is used to collect air temperature, the electronic humidity sensor is used to collect air humidity, and the Arduino single-chip microcomputer automatically calculates the dew point by using the collected temperature and humidity data and controls the semiconductor sheet according to the temperature to adjust the temperature of the condensing plate to be lower than the dew point temperature.
[0009] Preferably, the dew point calculation module comprises an electronic temperature sensor, an electronic humidity sensor and an Arduino single-chip microcomputer, the electronic temperature sensor and the electronic humidity sensor are fixed below the support platform, and the metal needle is exposed to collect real-time air temperature and humidity.
[0010] Preferably, the dew point calculation module adjusts the temperature of the condensing plate to be 2℃ lower than the dew point temperature by controlling the semiconductor sheet according to the ambient temperature.
[0011] Preferably, the wind-solar complementary power supply module comprises a wind wheel, a wind wheel motor, a solar panel, a solar panel support, a storage battery and an energy control module; the solar panel is installed on the support platform through the solar panel support, the wind wheel collects wind energy and transmits the energy to the wind wheel motor, the wind wheel motor converts the wind energy into electric energy, the energy control module stores the electric energy collected and converted by the solar panel and the wind wheel into the storage battery, and the energy control module controls the storage battery to provide energy for the condensing module and the dew point calculation module. BRIEF DESCRIPTION OF DRAWINGS
[0012] Fig. 1 is a schematic view of the front structure of the utility model
[0013] Among them: 1, fan; 2, fan motor; 3, condensing plate; 4, water collecting tank; 5, flow guide pipe; 6, storage tank; 7, Arduino single-chip microcomputer; 8, electronic temperature sensor; 9, electronic humidity sensor; 10, wind wheel; 11, wind wheel motor; 12, solar panel; 13, solar panel support; 14, storage battery; 15, energy control module; 16, semiconductor No. 1; 16, semiconductor No. 2; 17, support platform. DETAILED DESCRIPTION
[0014] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0015] As shown in FIG. 1, the utility model provides a kind of energy-saving fog condensation water collecting device of dew point can be automatically calculated, including condensing module, dew point calculation module and wind light complementary power supply module, the condensing module, dew point calculation module and wind light complementary power supply module are fixed on support platform 17. The condensing module is used to collect and store water, the dew point calculation module monitors ambient temperature and humidity, and according to ambient temperature and humidity, the temperature of the condensing module is controlled to be lower than dew point temperature, to realize efficient energy-saving water collecting function;The wind light complementary power supply module is used to collect wind energy and solar energy, to provide power for the condensing module and the dew point calculation module.
[0016] In the embodiment of the application, the condensing module includes fan 1, fan motor 2, condensing plate 3, water collecting tank 4, flow guide pipe 5, storage tank 6 and semiconductor sheet, the fan 1 is fixed on the left side above the water collecting tank 4 by screw, the condensing plate 3 is fixed on the right side above the water collecting tank 4 by screw and inclined to fan 60 ° angle, the fan motor 2 drives the fan 1 to rotate, and the fog in the air is blown to the condensing plate 3;Semiconductor No. 1 16 and semiconductor No. 2 17 are arranged on the upper part of the condensing plate 3, for adjusting the temperature of the condensing plate;The flow guide pipe 5 connects the water collecting tank 4 and the storage tank 6. The fan 1 blows fog to the condensing plate 3, so that the fog quickly condenses into water droplets on the condensing plate 3, flows into the water collecting tank 4 along the inclined angle of the condensing plate 3, and converges in the storage tank 5 through the flow guide pipe.
[0017] In the embodiment of the application, the semiconductor sheet includes semiconductor sheet No. 1 and semiconductor sheet No. 2.
[0018] In the embodiment of the application, the fan 1 and fan motor 2 are fixed on the water collecting tank 4 by motor support, and the condensing plate 3 is fixed on the water collecting tank 4 by screw.
[0019] In the embodiment of the application, the dew point calculation module monitors ambient temperature and humidity, and controls the temperature of the condensing plate 2 in the condensing module according to ambient temperature and humidity, to realize efficient energy-saving water collecting function. The dew point calculation module includes Arduino single-chip microcomputer 7, electronic temperature sensor 8 and electronic humidity sensor 9;The electronic temperature sensor 8 and electronic humidity sensor 9 are fixed below the platform, respectively used for collecting real-time temperature and humidity of air, the Arduino single-chip microcomputer 7 automatically calculates dew point using collected temperature and humidity data, controls semiconductor No. 1 16 and semiconductor No. 2 17 to adjust the temperature of the condensing plate, to realize efficient energy-saving water collecting function.
[0020] In the embodiment of the present application, after the dew point calculation module automatically calculates the dew point, the condensing plate 4 is adjusted to be 2℃ below the dew point temperature by the semiconductor No. 1 15 and the semiconductor No. 2 16, the fog blown by the fan 1 is condensed into water droplets flowing into the water collecting tank 4, and then flows into the storage tank 6 through the flow guide pipe 5, thereby realizing the efficient and energy-saving water collecting function.
[0021] In the embodiment of the present application, the electronic temperature sensor and the electronic humidity sensor are fixed below the support platform.
[0022] In the embodiment of the present application, the wind-solar complementary power supply module is used to collect wind energy and solar energy, and convert the wind energy and the solar energy into electrical energy for storage, thereby providing electrical energy for the condensing module and the dew point calculation module. The wind-solar complementary power supply module comprises a wind wheel 10, a wind wheel motor 11, a solar panel 12, a solar panel support 13, a storage battery 14 and an energy control module 15. The solar panel 11 is installed on the support platform 17 through the solar panel support 12, and is used to collect solar energy. The wind wheel 10 collects wind energy and transmits the energy to the wind wheel motor 11. The wind wheel motor 11 converts the wind energy into electrical energy. The energy control module 15 stores the electrical energy collected and converted by the solar panel 12 and the wind wheel 10 into the storage battery 14. At the same time, the energy control module 15 controls the storage battery 13 to provide energy for the condensing plate 3, the fan 1 and the Arduino single-chip microcomputer 7.
[0023] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An energy saving fog condensation water collecting device capable of automatically calculating dew point, characterized in that, The condensation module, the wind-solar complementary power supply module and the dew point calculation module are fixed on the support platform; The condensation module is used for collecting and storing water, the dew point calculation module monitors the ambient temperature and humidity, and controls the temperature of the condensation module to be lower than the dew point temperature according to the ambient temperature and humidity, so as to realize efficient and energy-saving water collection. The wind-solar complementary power supply module is used for collecting wind energy and solar energy, and providing electric energy for the condensation module and the dew point calculation module.
2. The energy-saving fog condensing water trap capable of automatically calculating dew point according to claim 1, characterized in that, The condensation module comprises a fan, a fan motor, a condensation plate, a water collecting tank, a flow guide pipe, a storage tank and a semiconductor sheet, the fan is fixed on one side above the water collecting tank, the condensation plate is fixed on the other side of the water collecting tank, the fan motor drives the fan to rotate, and the fog in the air is blown to the condensation plate. The semiconductor sheet is arranged on the condensation plate and is used for adjusting the temperature of the condensation plate to be lower than the dew point temperature, and the flow guide pipe connects the water collecting tank and the storage tank.
3. The energy-saving fog condensing water trap of claim 2, wherein, The semiconductor sheet comprises semiconductor sheet No. 1 and semiconductor sheet No.
2.
4. The energy-saving fog condensing water trap of claim 2, wherein, The fan and the fan motor are fixed on the water collecting tank through a motor support, and the condensation plate is fixed on the water collecting tank through screws.
5. The energy-saving fog condensing water trap of claim 2, wherein, The inclination angle of the condensation plate is 60°.
6. The energy efficient fog condensing water trap of claim 2, wherein, The dew point calculation module comprises an Arduino single-chip microcomputer, an electronic temperature sensor and an electronic humidity sensor. The electronic temperature sensor is used for collecting air temperature, the electronic humidity sensor is used for collecting air humidity, and the Arduino single-chip microcomputer automatically calculates the dew point by using the collected temperature and humidity data, and adjusts the temperature of the condensation plate to be lower than the dew point temperature by controlling the semiconductor sheet according to the temperature.
7. The energy efficient fog condensing water trap of claim 6, wherein, The electronic temperature sensor and the electronic humidity sensor are fixed below the support platform.
8. The energy efficient fog condensing water trap of claim 6, wherein, The dew point calculation module adjusts the temperature of the condensation plate to be lower than the dew point temperature by 2℃ by controlling the semiconductor sheet according to the ambient temperature.
9. The energy efficient fog condensing water trap of claim 1, wherein, The wind-solar complementary power supply module comprises a wind wheel, a wind wheel motor, a solar panel, a solar panel support, a storage battery and an energy control module. The solar panel is installed on the support platform through the solar panel support, the wind wheel collects wind energy and transmits the energy to the wind wheel motor, the wind wheel motor converts the wind energy into electric energy, and the energy control module stores the electric energy collected and converted by the solar panel and the wind wheel into the storage battery. The energy control module controls the storage battery to provide energy for the condensation module and the dew point calculation module.