Sunning ground greenhouse structure

Through the design of the inverted V-shaped lighting panel system and spray pipe, the problems of low ventilation efficiency and difficulty in cleaning in the greenhouse are solved, efficient ventilation and automatic cleaning are achieved, and drying efficiency and service life of the greenhouse are improved.

CN223227147UActive Publication Date: 2025-08-15JIANGXI GUOXING GRP BAIZHANGQUAN FOOD BEVERAGE CO LTD
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Patent Information

Application Number
CN202422409088.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-15
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The ventilation efficiency of the existing drying yard greenhouse is low and the top is not easy to clean, which affects the light transmission performance and product drying efficiency.

Method used

A lighting panel system including an inverted V-shaped structure is designed, equipped with a spray pipe, a motor-driven screw and a liquid recovery mechanism to realize automatic cleaning and ventilation functions.

Benefits of technology

It improves the ventilation efficiency and light transmission performance of the greenhouse, ensures the drying efficiency of the product, and extends the service life of the greenhouse.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223227147U_ABST
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Abstract

The utility model relates to a sunning ground greenhouse structure which comprises a greenhouse body and two sets of daylighting panels I arranged at the top of the greenhouse body, a protruding base is arranged at the top of the joint between the two sets of daylighting panels I, a liquid storage tank is arranged at the top of the protruding base, and spraying pipes located over the corresponding daylighting panels I are evenly arranged on the two sides of the liquid storage tank. A rectangular surrounding edge for sealing the inlet ends of the multiple sets of spraying pipes is arranged in the liquid storage tank, a mounting plate is erected in the rectangular surrounding edge, a screw rod driven by a motor is arranged in a screw hole in the mounting plate, a long-strip-shaped ventilation opening is formed in the top of the daylighting panel I, a daylighting panel II for sealing the ventilation opening is arranged on the top of the daylighting panel I, and the daylighting panel II is arranged on the top of the daylighting panel II. The top end of the daylighting panel II and the daylighting panel I are hinged and fixed, the bottom end of the daylighting panel II is driven by an electric push rod, and a liquid recycling mechanism connected with the liquid storage tank is further arranged on the outer wall of the greenhouse body. According to the greenhouse, the daylighting panel I and the daylighting panel II can be cleaned conveniently, and ventilation in the greenhouse is also facilitated.
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Description

Technical Field

[0001] The present invention relates to the field of drying greenhouses, and in particular to a drying yard greenhouse structure. Background Art

[0002] Since dried sweet potatoes and other agricultural products require both drying and shelter from the rain during production, they are mostly produced in greenhouses. However, current greenhouses have poor ventilation efficiency, resulting in stuffy temperatures that are unfavorable for workers. Furthermore, the greenhouse roof is difficult to clean, and after long-term use, it blocks sunlight, affecting the light transmission performance of the greenhouse wall, thus affecting the drying and processing of the products. Summary of the Invention

[0003] The purpose of the present invention is to provide a sun drying greenhouse structure.

[0004] The technical problems of the present invention are mainly solved by the following technical solutions:

[0005] A sun drying greenhouse structure includes a greenhouse body and two sets of skylights I arranged on the top of the greenhouse body, wherein an inverted V-shaped structure is formed between the two sets of skylights I:

[0006] A boss is provided at the top of the connection between the two groups of skylight panels I, and a liquid storage tank is provided on the top of the boss. Spray pipes located directly above the corresponding skylight panels I are evenly provided on both sides of the liquid storage tank. A rectangular edge is provided in the liquid storage tank to seal the inlet ends of multiple groups of spray pipes, and a mounting plate is provided in the rectangular edge. A screw driven by a motor is provided in the screw hole on the mounting plate. A long strip vent is provided along the length direction of the top of the skylight panel I, and a skylight panel II is provided on the top of the skylight panel I to seal the vent. The top of the skylight panel II is hinged and fixed to the skylight panel I, and the bottom end of the skylight panel II is driven by an electric push rod. A liquid recovery mechanism is also provided on the outer wall of the greenhouse body, located directly below the bottom end of the skylight panel I, and the liquid recovery mechanism is connected to the liquid storage tank through a pipe equipped with a water pump.

[0007] Preferably, a metal frame supporting the skylight panel I is provided on the top of the greenhouse body, a mounting frame is provided on the metal frame, the electric push rod and the motor are fixed on the mounting frame, and the output shaft of the electric push rod passes through the vent and is movably connected to the mounting seat at the bottom of the skylight panel II.

[0008] Preferably, the side walls of the rectangular surround are arranged in contact with the inner wall of the liquid storage tank, the height of the rectangular surround is smaller than the height of the liquid storage tank, and the pipeline is connected to the top wall of the liquid storage tank.

[0009] Preferably, both ends of the liquid storage tank extend to the point directly above the light-collecting panel I on the outside of the protrusion, and the hinge between the light-collecting panel II and the light-collecting panel I is located directly below the liquid storage tank. The liquid storage tank is provided with a hot water pipe extending into the main body of the greenhouse and equipped with a faucet, and the liquid storage tank is made of stainless steel.

[0010] Preferably, the liquid recovery mechanism includes a liquid collecting trough with an inclined bottom wall, the bottom end of the bottom wall of the liquid collecting trough is arranged on the same side as the corresponding outer wall of the greenhouse main body, and the bottom end of the bottom wall of the liquid collecting trough is also inclined toward the direction of the greenhouse main body. A control valve is provided on the water outlet pipe, and a liquid collecting box is provided at the bottom of the top end of the bottom wall of the liquid collecting trough, and a sewage pipe is provided at the bottom of the liquid collecting box. The pipe is connected to the liquid collecting box, and a number of filter holes are evenly arranged on the bottom wall of the liquid collecting trough just above the opening of the liquid collecting box.

[0011] The beneficial effects of the present invention are as follows: in the present invention, sunlight is transmitted through the skylight panels I and II to the greenhouse to dry the products, and at the same time, the vents are opened by rotating the skylight panels II, thereby enhancing the air circulation efficiency of the greenhouse, and the liquid in the liquid storage tank is sprayed out through the spray pipe to clean the skylight panels I and II, thereby preventing a large amount of impurities from accumulating after long-term use and affecting their light transmission performance. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a structural schematic diagram of the present invention;

[0013] Figure 2 yes Figure 1 A magnified view of the liquid recovery mechanism.

[0014] In the figure: 1. Greenhouse main body, 2. Skylight panel I, 3. Boss, 4. Liquid storage tank, 5. Spray pipe, 6. Rectangular edge, 7. Mounting plate, 8. Motor, 9. Screw, 10. Ventilation port, 11. Skylight panel II, 12. Electric push rod, 13. Liquid recovery mechanism, 131. Liquid collecting tank, 132. Outlet pipe, 133. Liquid collecting box, 134. Filter hole, 14. Mounting frame. DETAILED DESCRIPTION

[0015] Below by embodiment, and in conjunction with the accompanying Figure 1-2 , the technical solution of the present invention is further specifically described.

[0016] A sun drying greenhouse structure includes a greenhouse body 1 and two sets of skylights 12 arranged on the top of the greenhouse body 1, wherein the two sets of skylights 12 form an inverted V-shaped structure.

[0017] A boss 3 is provided at the top of the connection between the two groups of skylights 12, and a liquid storage tank 4 is provided on the top of the boss 3. Spray pipes 5 are evenly provided on both sides of the liquid storage tank 4 and are located directly above the corresponding skylights 12, wherein a nozzle is provided on the outlet end of the spray pipe 5. A rectangular edge 6 is provided in the liquid storage tank 4 to seal the inlet ends of the multiple groups of spray pipes 5. A mounting plate 7 is mounted in the rectangular edge 6, and a screw rod 9 driven by a motor 8 is provided in the screw hole on the mounting plate 7;

[0018] The top of the lighting board I2 is provided with a long strip vent 10 along its length direction. The top of the lighting board I2 is provided with a lighting board II11 that seals the vent 10. The top of the lighting board II11 is hinged and fixed to the lighting board I2. The bottom of the lighting board II11 is driven by an electric push rod 12.

[0019] A metal frame supporting the skylight panel I2 is provided on the top of the greenhouse body 1, and a mounting frame 14 is provided on the metal frame. The electric push rod 12 and the motor 8 are fixed on the mounting frame 14. The output shaft of the electric push rod 12 passes through the vent 10 and is movably connected to the mounting seat at the bottom of the skylight panel II11;

[0020] A liquid recovery mechanism 13 is also provided on the outer wall of the greenhouse main body 1, which is located directly below the bottom end of the light-collecting panel 12. The liquid recovery mechanism 13 is connected to the liquid storage tank 4 through a pipe equipped with a water pump. The liquid recovery mechanism 13 includes a liquid collecting trough 131 with an inclined bottom wall. The bottom end of the bottom wall of the liquid collecting trough 131 is arranged on the same side as the corresponding outer wall of the greenhouse main body 1. The bottom end of the bottom wall of the liquid collecting trough 131 is also inclined toward the greenhouse main body 1 and has multiple groups of water outlet pipes 132. A control valve is provided on the water outlet pipe 132. A liquid collecting box 133 is provided at the bottom of the top end of the bottom wall of the liquid collecting trough 131. A sewage pipe is provided at the bottom of the liquid collecting box 133. The pipe is connected to the liquid collecting box 133. A number of filter holes 134 are evenly provided on the bottom wall of the liquid collecting trough 131 directly above the opening of the liquid collecting box 133.

[0021] Both ends of the liquid storage tank 4 extend to the top of the light-collecting panel I2 on the outside of the protrusion 3. The hinge between the light-collecting panel II11 and the light-collecting panel I2 is located directly below the liquid storage tank 4. The liquid storage tank 4 is provided with a hot water pipe extending into the greenhouse body 1 and equipped with a faucet. The liquid storage tank 4 is made of stainless steel.

[0022] In this embodiment, the side wall of the rectangular edge 6 is arranged in contact with the inner wall of the liquid storage tank 4, the height of the rectangular edge 6 is smaller than the height of the liquid storage tank 4, and the pipeline is connected to the top wall of the liquid storage tank 4.

[0023] The method of using the present invention is as follows: when in use, sunlight shines through the skylight panels I2 and II11 onto the greenhouse to dry the products. When it is necessary to enhance the air circulation in the greenhouse, the electric push rod 12 drives the skylight panel II11 to rotate with the hinge between the skylight panel I2 and the skylight panel I2 as the center, so that the rotated skylight panel II11 opens the vent 10. Then, the gas introduced by the ventilation window on the side wall of the greenhouse and the hot air in the greenhouse can be discharged through the vent 10, thereby enhancing the air circulation in the greenhouse and effectively improving the stuffy condition in the greenhouse to facilitate the workers to work inside, and at the same time, it is beneficial to accelerate the drying efficiency of the products.

[0024] During use, the liquid in the water tank is introduced into the liquid storage tank 4 through a water pump. At this time, the heat emitted by the sunlight can heat the liquid inside the liquid storage tank 4 through the side wall of the liquid storage tank 4. When the worker turns on the faucet, the heated liquid in the liquid storage tank 4 is discharged through the hot water pipe and the faucet for people to use. When it is necessary to clean the top of the lighting board I2 and the lighting board II11, the motor 8 drives the screw rod 9 to rotate in the screw hole on the mounting plate 7, and then drives the rectangular edge 6 to move upward in the liquid storage tank 4, thereby opening the inlet ends of the multiple groups of spray pipes 5. When it moves down and resets, the multiple groups of spray pipes 5 can be closed, so as to realize the function of opening and closing the multiple groups of spray pipes 5 at the same time, reducing the demand for the number of solenoid valves.

[0025] The liquid in the liquid storage tank 4 is sprayed out through the spray pipe 5 and the nozzle to the lighting board II11 and flows down along its slope, and then flows down along the top slope of the lighting board I2, thereby spraying and cleaning the top walls of the lighting board I2 and the lighting board II11 to prevent long-term accumulation of impurities on the top of the two and affecting the lighting performance. The liquid obtained by cleaning will flow into the liquid collection tank 131, where the liquid will be filtered by the filter hole 134 and then flow into the liquid collection box 133, and then be pumped into the liquid storage tank 4 through the pipeline and the water pump for recycling. At this time, the impurities obtained by filtration are deposited in the liquid collection tank 131. After a certain period of use, the liquid will be discharged into the liquid collection tank 133. After a period of time, the outlet pipe 132 can be opened to allow the impurities in the liquid collecting tank 131 to be sprayed out toward the outer wall of the greenhouse together with the liquid. While the impurities and liquid filtered out of the liquid collecting tank 131 are discharged, the sprayed liquid is also sprayed toward the outer wall of the greenhouse and flows down along its side wall to cool the outer wall of the greenhouse to a certain extent, so that the workers operating in the greenhouse at this time have a more comfortable environment. Alternatively, the outlet pipe 132 can be vertically arranged to discharge the liquid mixed with impurities in the liquid collecting tank 131 directly into the drainage ditch on the ground. This situation can reduce the number of subsequent cleanings of the outer wall of the greenhouse.

[0026] The present invention has been described in detail above, but the contents described are only preferred embodiments of the present invention and should not be considered to limit the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.

Claims

1. A sun drying greenhouse structure, comprising a greenhouse body and two sets of skylights (I) disposed on top of the greenhouse body, wherein an inverted V-shaped structure is formed between the two sets of skylights (I), characterized in that: A boss is provided at the top of the connection between the two groups of skylight panels I, and a liquid storage tank is provided on the top of the boss. Spray pipes located directly above the corresponding skylight panels I are evenly provided on both sides of the liquid storage tank. A rectangular edge is provided in the liquid storage tank to seal the inlet ends of multiple groups of spray pipes, and a mounting plate is provided in the rectangular edge. A screw driven by a motor is provided in the screw hole on the mounting plate. A long strip vent is provided along the length direction of the top of the skylight panel I, and a skylight panel II is provided on the top of the skylight panel I to seal the vent. The top of the skylight panel II is hinged and fixed to the skylight panel I, and the bottom end of the skylight panel II is driven by an electric push rod. A liquid recovery mechanism is also provided on the outer wall of the greenhouse body, located directly below the bottom end of the skylight panel I, and the liquid recovery mechanism is connected to the liquid storage tank through a pipe equipped with a water pump.

2. A sun drying shed structure according to claim 1, characterized in that: A metal frame supporting the skylight panel I is provided on the top of the greenhouse body, and a mounting frame is provided on the metal frame. The electric push rod and the motor are fixed on the mounting frame, and the output shaft of the electric push rod passes through the vent and is movably connected to the mounting seat at the bottom of the skylight panel II.

3. The sun drying greenhouse structure according to claim 1, characterized in that: The side wall of the rectangular surround is arranged in contact with the inner wall of the liquid storage tank, the height of the rectangular surround is smaller than the height of the liquid storage tank, and the pipeline is connected to the top wall of the liquid storage tank.

4. The sun drying greenhouse structure according to claim 1, characterized in that: Both ends of the liquid storage tank extend to the top of the light-collecting panel I on the outside of the convex seat. The hinge between the light-collecting panel II and the light-collecting panel I is located directly below the liquid storage tank. The liquid storage tank is provided with a hot water pipe extending into the main body of the greenhouse and equipped with a faucet. The liquid storage tank is made of stainless steel.

5. The sun drying greenhouse structure according to claim 1, characterized in that: The liquid recovery mechanism includes a liquid collecting trough with an inclined bottom wall. The bottom end of the bottom wall of the liquid collecting trough is arranged on the same side as the corresponding outer wall of the greenhouse main body. The bottom end of the bottom wall of the liquid collecting trough is also inclined toward the direction of the greenhouse main body. A control valve is provided on the water outlet pipe. A liquid collecting box is provided at the bottom of the top end of the bottom wall of the liquid collecting trough. A sewage pipe is provided at the bottom of the liquid collecting box. The pipe is connected to the liquid collecting box. A number of filter holes are evenly arranged on the bottom wall of the liquid collecting trough just above the opening of the liquid collecting box.