Movable solar drying equipment with energy storage function

By designing mobile solar drying equipment with energy storage, using solar photovoltaic power generation panels and batteries to store electricity, the problem of existing equipment not easy to move and the need for supporting power supply systems is solved, and the efficient drying effect can be used in remote areas without additional power.

CN222881544UActive Publication Date: 2025-05-16ACME AGRI EQUIP HUBEI CO LTD
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Patent Information

Application Number
CN202421860368.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-16
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing grain drying equipment is not easy to move and cannot be easily moved to the gravel collection site. It also requires a supporting power supply system, which makes it unavailable in remote areas and has a high power cost, which increases the burden on farmers.

Method used

A mobile solar drying device with energy storage is designed, using solar photovoltaic panels and batteries to store electricity, equipped with a triangular assembled drying room and a mobile mesh metal drying tray, which can be used in remote areas without additional power, and is equipped with a 220V AC power socket for rainy days or at night.

Benefits of technology

The device can quickly heat up and dry grains, purely utilize solar energy, no other energy required, save energy costs, is suitable for remote areas with lack of or no electricity, and is easy to move to the site for harvesting.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222881544U_ABST
Patent Text Reader

Abstract

The utility model discloses a movable solar drying device with an energy storage function. The movable solar drying device is composed of a base. The photovoltaic power generation panel supporting stand column is connected with the base, and a solar photovoltaic power generation panel is arranged at the top of the photovoltaic power generation panel supporting stand column; the triangular assembled drying chamber is arranged on the top side of the base, and a polycarbonate plate is arranged on each of the two sides of the triangular assembled drying chamber; the drying chamber front / rear panel is arranged on the front / rear side of the triangular assembly type drying chamber; the drying chamber door is arranged on the front side of the base and located below the drying chamber front panel; the dehumidifying fan is arranged on the top side of the rear panel of the drying chamber; the solar charging controller is arranged in the middle of the outer side of the rear panel of the drying chamber and is connected with the solar photovoltaic power generation panel; the storage battery is electrically connected with the solar charging controller; the power switch is electrically connected with the moisture removal fan and the storage battery respectively; and the movable net-shaped metal drying disc is arranged on a bottom plate of the base.
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Description

Technical Field

[0001] The utility model relates to drying equipment, in particular to mobile solar energy drying equipment with energy storage. Background Art

[0002] Food is a necessary substance for human survival. With the continuous growth of population and the reduction of arable land, cherishing and storing food is an issue that people cannot ignore.

[0003] For thousands of years, the drying and preservation of grains has been mainly based on artificial drying and dehydration. Modern developments have included fixed furnace hot air drying devices, natural air drying and storage devices for grains, and other new devices. For example, Chinese utility model patent CN205052717U discloses a self-circulating airflow grain dryer, including an airflow conveying system, a separator, a storage box, and a drying box. The airflow conveying system includes an air inlet pipe, an air outlet pipe, an airflow channel, and a circulation pipe. The air inlet pipe and the air outlet pipe are both connected to the drying box for gas circulation for drying grains. The airflow channel is respectively connected to the air outlet pipe and the circulation pipe. A valve for controlling the circulation of grains and gas is provided at the connection between the circulation pipe and the airflow channel. The separator is arranged at one end of the circulation pipe away from the airflow channel. The storage box is arranged below the separator for storing grains separated by the separator. The drying box is connected to the storage box for drying grains flowing out of the storage box. The drying box is connected to the airflow channel. However, the farmlands of farmers are relatively scattered at present, and the above-mentioned self-circulating airflow grain dryer has the following shortcomings: 1. It is not easy to move, and it is not convenient to move it to the grain harvesting site to continuously dry the newly harvested grains for scattered farmers in time; 2. It requires a corresponding supporting power supply system, which makes it impossible to use the above-mentioned self-circulating airflow grain dryer in remote areas; 3. Using the supporting power supply system as the energy source for drying, the electricity cost is relatively high, which will increase the burden on farmers accordingly. Utility Model Content

[0004] Purpose of the utility model: The utility model makes improvements to the problems existing in the above-mentioned prior art, that is, the utility model discloses a mobile solar drying equipment with energy storage.

[0005] Technical solution: A mobile solar drying equipment with energy storage, consisting of the following components:

[0006] A base, wherein the four corners thereof are respectively provided with first casters, the top side of the base is provided with a bottom plate, and the bottom plate is provided with a plurality of air inlet holes;

[0007] The photovoltaic panel support column is fixedly connected to the base by bolts, and the top of the photovoltaic panel support column is provided with a solar photovoltaic panel;

[0008] A triangular assembled drying chamber is arranged on the top side of the base, and a polycarbonate plate is provided on each side of the triangular assembled drying chamber;

[0009] A drying chamber front panel, arranged at the front side of the triangular assembled drying chamber;

[0010] A drying chamber door is arranged on the front side of the base and below the front panel of the drying chamber, one side of the drying chamber door is connected to the base by a hinge, a drying chamber door handle is arranged in the middle of the drying chamber door, the drying chamber door handle is connected to one end of a connecting shaft, a snap plate is arranged at the other end of the connecting shaft, the snap plate and the drying chamber door handle are located on both sides of the front panel of the drying chamber, and a slot adapted to the snap plate is arranged on the front panel of the drying chamber;

[0011] A drying chamber rear panel, arranged at the rear side of the triangular assembled drying chamber;

[0012] A dehumidification fan is arranged on the top side of the rear panel of the drying chamber;

[0013] A solar charging controller is arranged in the middle of the outer side of the rear panel of the drying chamber, and the solar photovoltaic power generation panel is connected to the solar charging controller;

[0014] A storage battery, electrically connected to the solar charge controller;

[0015] A power switch is arranged on the rear panel of the drying chamber, one end of the power switch is electrically connected to the dehumidification fan, and the other end of the power switch is electrically connected to the battery;

[0016] The movable mesh metal drying tray has a plurality of second casters at the bottom, the movable mesh metal drying tray is provided with a screen, and the movable mesh metal drying tray is arranged on the bottom plate of the base.

[0017] Furthermore, a plurality of air inlet holes are evenly arranged on the bottom plate, and the air inlet holes are circular air inlets.

[0018] Furthermore, 32 air inlet holes are evenly arranged on the bottom plate, and the inner diameter of the air inlet holes is 10 mm.

[0019] Furthermore, a plurality of moisture-discharging holes are provided directly above the front panel of the drying chamber.

[0020] Furthermore, a dryer handle is provided at the upper middle portion of the outer side of the rear panel of the drying chamber.

[0021] Furthermore, the battery is a lithium battery.

[0022] Furthermore, a battery box for protecting the battery is provided on the periphery of the battery.

[0023] Furthermore, a drying tray handle is provided on one side of the movable mesh metal drying tray, and the height of the movable mesh metal drying tray is matched with the height of the drying chamber door.

[0024] Furthermore, the aperture of the screen of the movable mesh metal drying tray is 5 mm.

[0025] Furthermore, it also includes a 220V AC power socket, which is arranged on the rear panel of the drying chamber and is electrically connected to a power switch.

[0026] Furthermore, it also includes a power adapter, one end of which is electrically connected to the mains, and the other end of which is electrically connected to the 220V AC power socket.

[0027] Beneficial effects: The mobile solar drying equipment with energy storage disclosed in the utility model has the following beneficial effects:

[0028] 1. The high-transmittance polycarbonate plate absorbs heat efficiently to quickly heat up the drying equipment for grain drying;

[0029] 2. Solar photovoltaic panels directly supply power and use batteries to store electricity at the same time. They purely use solar energy and do not require any other additional electricity and energy, which greatly saves energy;

[0030] 3. The bottom of the base is equipped with a first caster, which can be easily moved to the grain harvesting site. It is especially suitable for drying agricultural products of farmers in remote areas where there is a lack of or no electricity.

[0031] 4. In addition, the device is also equipped with a 220V AC power socket, which works with a power adapter to facilitate continuous drying on rainy days or at night. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 The utility model discloses a three-dimensional schematic diagram of a mobile solar drying device with energy storage.

[0033] Figure 2 This is a three-dimensional schematic diagram from another angle of a mobile solar drying device with energy storage disclosed in the utility model.

[0034] Figure 3 It is a side schematic diagram of a mobile solar drying equipment with energy storage disclosed by the utility model.

[0035] Figure 4 for Figure 3 A local enlarged view of point III.

[0036] Figure 5This is a front view of a mobile solar drying device with energy storage disclosed in the utility model.

[0037] Figure 6 The utility model discloses a top view of a mobile solar drying device with energy storage.

[0038] Figure 7 Schematic diagram of a mobile mesh metal drying tray.

[0039] Figure 8 for Figure 7 A partial enlarged view of point II.

[0040] Fig. 9 A top view of a mobile mesh metal drying tray.

[0041] in:

[0042] 1-Triangular assembled drying room 2-Polycarbonate sheet 3-Mobile mesh metal drying tray 4- Drying room front panel 5-Drying room door 6-Drying room door handle 7-Drying room rear panel 8-Dehumidification fan 9-Dryer handle 10-Solar Charge Controller 11-First caster 12-Battery 13-Solar Photovoltaic Panels 14- Photovoltaic panel support column 15-Power switch 16-220V AC power socket 17-Drying tray handle 18- Second caster 19-Air Inlet DETAILED DESCRIPTION

[0043] The specific implementation modes of the present utility model are described in detail below.

[0044] The "range" disclosed in the utility model is defined in the form of a lower limit and an upper limit. A given range is defined by selecting a lower limit and an upper limit, and the selected lower limit and upper limit define the boundaries of a particular range. The range defined in this way can be inclusive or exclusive of the end values, and can be arbitrarily combined, that is, any lower limit can be combined with any upper limit to form a range. For example, if a range of 10 to 50 is listed for a specific parameter, it is understood that the range of 10 to 40 and 20 to 50 is also expected. In addition, if the minimum range values ​​1 and 2 are listed, and if the maximum range values ​​3, 4 and 5 are listed, the following ranges can all be expected: 1 to 3, 1 to 4, 1 to 5, 2 to 3, 2 to 4 and 2 to 5. In this application, unless otherwise specified, the range of values ​​"a to b" represents an abbreviation of any real number combination between a and b, where a and b are both real numbers. For example, the range of values ​​"0 to 5" means that all real numbers between "0 to 5" have been fully listed in this article, and "0 to 5" is only an abbreviation of these numerical combinations.

[0045] Unless otherwise specified, all embodiments and optional embodiments of the present application can be combined with each other to form a new technical solution.

[0046] Unless otherwise specified, all technical features and optional technical features of this application can be combined with each other to form a new technical solution.

[0047] If there is no special explanation, all steps of the present application can be performed sequentially or randomly, preferably sequentially. For example, the method includes steps (a) and (b), which means that the method may include steps (a) and (b) performed sequentially, or may include steps (b) and (a) performed sequentially. For example, the method may further include step (c), which means that step (c) may be added to the method in any order. For example, the method may include steps (a), (b) and (c), or may include steps (a), (c) and (b), or may include steps (c), (a) and (b), etc.

[0048] If there is no special explanation, the "include" and "comprising" mentioned in this application are open-ended or closed-ended. For example, the "include" and "comprising" may mean that other components not listed may also be included or only the listed components may be included or only the listed components may be included.

[0049] Unless otherwise specified, the reaction is carried out at room temperature and pressure.

[0050] Unless otherwise specified, all parts or percentages are by weight.

[0051] In the present invention, all substances used are known substances and can be purchased or synthesized by known methods.

[0052] In the present invention, the devices or equipment used are all conventional devices or equipment known in the field and can be purchased.

[0053] like Figure 1-9 As shown, a mobile solar drying device with energy storage is composed of the following components:

[0054] A base, with first casters 11 at four corners, a bottom plate provided on the top side of the base, and a plurality of air inlet holes 19 provided on the bottom plate;

[0055] A photovoltaic panel support column 14 is fixedly connected to the base by bolts, and a solar photovoltaic panel 13 is arranged on the top of the photovoltaic panel support column 14;

[0056] A triangular assembled drying chamber 1 is arranged on the top side of the base, and a polycarbonate plate 2 is provided on each side of the triangular assembled drying chamber 1;

[0057] A drying chamber front panel 4 is provided at the front side of the triangular assembled drying chamber 1;

[0058] A drying chamber door 5 is arranged at the front side of the base and below the drying chamber front panel 4. One side of the drying chamber door 5 is connected to the base by a hinge. A drying chamber door handle 6 is arranged in the middle of the drying chamber door 5. The drying chamber door handle 6 is connected to one end of a connecting shaft. A snap plate is arranged at the other end of the connecting shaft. The snap plate and the drying chamber door handle 6 are located on both sides of the drying chamber front panel 4. A snap groove adapted to the snap plate is arranged on the drying chamber front panel 4. One side of the drying chamber door 5 drives the snap plate to rotate by turning the drying chamber door handle 6, thereby realizing opening and closing with the drying chamber front panel 4.

[0059] A drying chamber rear panel 7, arranged at the rear side of the triangular assembled drying chamber 1;

[0060] A dehumidification fan 8 is provided on the top side of the rear panel 7 of the drying chamber;

[0061] The solar charging controller 10 is arranged at the middle of the outer side of the drying chamber rear panel 7, and the solar photovoltaic power generation panel 13 is connected to the solar charging controller 10;

[0062] A storage battery 12, electrically connected to the solar charge controller 10;

[0063] A power switch 15 is provided on the drying chamber rear panel 7, one end of the power switch 15 is electrically connected to the dehumidification fan 8, and the other end of the power switch 15 is electrically connected to the battery 12;

[0064] The movable mesh metal drying tray 3 has a plurality of second casters 18 at the bottom thereof. The movable mesh metal drying tray 3 is provided with a screen. The movable mesh metal drying tray 3 is arranged on the bottom plate of the base.

[0065] Furthermore, a plurality of air inlet holes 19 are evenly arranged on the bottom plate, and the air inlet holes 19 are circular air inlets.

[0066] Furthermore, 32 air inlet holes 19 are evenly arranged on the bottom plate, and the inner diameter of the air inlet hole 19 is 10 mm.

[0067] Furthermore, a plurality of moisture-discharging holes are provided directly above the front panel 4 of the drying chamber.

[0068] Furthermore, a dryer handle 9 is provided at the upper middle portion of the outer side of the drying chamber rear panel 7 .

[0069] Furthermore, the battery 12 is a lithium battery.

[0070] Furthermore, a battery box for protecting the battery 12 is provided on the periphery of the battery 12 .

[0071] Furthermore, a drying tray handle 17 is provided on one side of the movable mesh metal drying tray 3, and the height of the movable mesh metal drying tray 3 matches the height of the drying chamber door 5. The movable mesh metal drying tray 3 can enter and exit the triangular assembled drying chamber 1 through the drying chamber door 5.

[0072] Furthermore, the aperture of the screen of the movable mesh metal drying tray 3 is 5 mm.

[0073] Furthermore, it also includes a 220V AC power socket 16 , which is arranged on the rear panel 7 of the drying chamber, and the 220V AC power socket 16 is electrically connected to the power switch 15 .

[0074] Furthermore, it also includes a power adapter, one end of which is electrically connected to the mains, and the other end of which is electrically connected to the 220V AC power socket 16.

[0075] The working principle disclosed in the utility model is: the polycarbonate plate 2 continuously absorbs solar heat energy, and the solar heat energy is used for evaporation, and the moisture of agricultural products (such as grains, etc.) on the mobile mesh metal drying plate 3 is dried to achieve the purpose of drying the materials. The mobile solar drying equipment with energy storage is equipped with a solar photovoltaic power generation panel 13, a solar charge controller 10, and a battery 12. These components can provide the power required by the dehumidification fan 8, and also store electrical energy in the battery 12 to provide power when there is no sunlight at night.

[0076] The triangular assembled drying chamber 1 can greatly facilitate the polycarbonate plate 2 to absorb heat, increase the temperature in the triangular assembled drying chamber 1, and thus improve the drying efficiency. The triangular assembled drying chamber 1 is equipped with a movable mesh metal drying tray 3 with a second caster 18. The movable mesh metal drying tray 3 is provided with a screen, which is conducive to ventilation and dehumidification. The second caster 18 of the drying tray is conducive to feeding and discharging.

[0077] Equipped with a 220V AC power socket 16, matched with a power adapter, it is convenient for continuous drying on rainy days or at night.

[0078] The above describes the implementation of the present invention in detail. However, the present invention is not limited to the above implementation, and various changes can be made within the knowledge of ordinary technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. A mobile solar drying device with energy storage, characterized in that: It consists of the following components: A base, wherein the four corners thereof are respectively provided with first casters, the top side of the base is provided with a bottom plate, and the bottom plate is provided with a plurality of air inlet holes; The photovoltaic panel support column is fixedly connected to the base by bolts, and the top of the photovoltaic panel support column is provided with a solar photovoltaic panel; A triangular assembled drying chamber is arranged on the top side of the base, and a polycarbonate plate is provided on each side of the triangular assembled drying chamber; A drying chamber front panel, arranged at the front side of the triangular assembled drying chamber; A drying chamber door is arranged on the front side of the base and below the front panel of the drying chamber, one side of the drying chamber door is connected to the base by a hinge, a drying chamber door handle is arranged in the middle of the drying chamber door, the drying chamber door handle is connected to one end of a connecting shaft, a snap plate is arranged at the other end of the connecting shaft, the snap plate and the drying chamber door handle are located on both sides of the front panel of the drying chamber, and a slot adapted to the snap plate is arranged on the front panel of the drying chamber; A drying chamber rear panel, arranged at the rear side of the triangular assembled drying chamber; A dehumidification fan is arranged on the top side of the rear panel of the drying chamber; A solar charging controller is arranged in the middle of the outer side of the rear panel of the drying chamber, and the solar photovoltaic power generation panel is connected to the solar charging controller; A storage battery, electrically connected to the solar charge controller; A power switch is arranged on the rear panel of the drying chamber, one end of the power switch is electrically connected to the dehumidification fan, and the other end of the power switch is electrically connected to the battery; The movable mesh metal drying tray has a plurality of second casters at the bottom, the movable mesh metal drying tray is provided with a screen, and the movable mesh metal drying tray is arranged on the bottom plate of the base.

2. A mobile solar drying device with energy storage as claimed in claim 1, characterized in that: The bottom plate is evenly provided with a plurality of air inlet holes, each of which is a circular air inlet.

3. A mobile solar drying device with energy storage as claimed in claim 2, characterized in that: 32 air inlet holes are evenly arranged on the bottom plate, and the inner diameter of the air inlet hole is 10 mm.

4. A mobile solar drying device with energy storage as claimed in claim 1, characterized in that: A plurality of moisture discharge holes are arranged directly above the front panel of the drying chamber.

5. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: A dryer handle is provided on the upper middle portion of the outer side of the drying chamber rear panel.

6. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: The storage battery is a lithium storage battery.

7. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: A battery box for protecting the battery is arranged on the periphery of the battery.

8. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: A drying tray handle is provided on one side of the movable mesh metal drying tray, and the height of the movable mesh metal drying tray is matched with the height of the drying chamber door.

9. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: The aperture of the screen of the movable mesh metal drying tray is 5 mm.

10. The mobile solar drying equipment with energy storage as claimed in claim 1, characterized in that: It also includes a 220V AC power socket and a power adapter. The 220V AC power socket is arranged on the rear panel of the drying room, the 220V AC power socket is electrically connected to the power switch, one end of the power adapter is electrically connected to the mains, and the other end of the power adapter is electrically connected to the 220V AC power socket.

Citation Information

Patent Citations

  • Self -circulation air current grain drier

    CN205052717U