Intelligent storage ventilation device

By introducing air guide plates and electrically controlled fans into the warehouse ventilation system, and combining this with real-time air quality monitoring by an air monitoring center, the problems of stale air recirculation and unstable air quality in traditional warehouse ventilation systems have been solved, achieving intelligent and efficient ventilation management.

CN223964403UActive Publication Date: 2026-03-03ANHUI HUASHENG ENVIRONMENTAL PROTECTION EQUIP TECH CO LTD
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Patent Information

Application Number
CN202520009260.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-03-03
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Traditional warehouse ventilation systems suffer from problems such as poor air circulation, inability to monitor air quality in real time, and inability to accurately determine the timing of ventilation, resulting in ineffective ventilation and unstable air quality.

Method used

Design an intelligent warehouse ventilation device. By setting up air guide plates, electrically controlled fans, an air detection center and detection units in the storage room, it can achieve all-round rapid ventilation and real-time air quality detection. The detection results are used to control the operation of the fans and carry out intelligent ventilation management.

Benefits of technology

It achieves efficient and convenient air replacement, prevents stale air from flowing back, improves the accuracy of air quality detection, avoids ineffective ventilation, and ensures the stability of air quality in the storage room.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223964403U_ABST
Patent Text Reader

Abstract

The intelligent storage ventilation device comprises a storage chamber, a remote control shutter is assembled in the center of the left side of the storage chamber in an embedded mode, an air collecting plate is fixedly connected to the center of the right side in the storage chamber in an embedded mode, a cavity is formed in the air collecting plate, and a plurality of exhaust pipes are erected on the left side of the air collecting plate in a rectangular array mode. The exhaust pipes are horizontally erected in the left-right direction, the right ends of the exhaust pipes communicate with and are fixed to an air collecting plate, a plurality of air inlet pipes are fixedly connected to the upper side and the lower side of the air collecting plate in a cross symmetry mode, the right ends of the air inlet pipes stretch out of the storage chamber, and transmission control switch bases communicate with and are fixed to the right ends of the air inlet pipes; the left sides of the transmission control switch bases are fixedly connected with the storage chamber, the centers of the upper and lower opposite sides of the transmission control switch bases are electrically matched with electric control fans, the output ends of the electric control fans are correspondingly communicated and fixed with the air inlet pipes, ventilation is easy, convenient and efficient, meanwhile, stale air can be prevented from flowing back, and the situation that the ventilation quality is affected by the stale air can be avoided.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent warehousing technology, specifically to an intelligent warehousing ventilation device. Background Technology

[0002] Warehousing is the storage and safekeeping of goods and items in warehouses. Warehouses are comprehensive locations that centrally reflect the status of factory material activities, serving as transit points connecting production, supply, and sales. They play a crucial supporting role in promoting production and improving efficiency. Warehouses are generally classified into three categories: specialized, general-purpose, and hazardous materials warehouses. In warehouse management systems, ventilation is a major factor in preventing goods from becoming moldy or damp. Traditional warehouse ventilation systems often use fans installed diagonally across the warehouse for circulating ventilation. This easily leads to stagnant air not circulating properly while fresh air is expelled, resulting in poor ventilation quality. Furthermore, it's difficult to accurately determine the timing of ventilation, often relying on timed air changes. However, different items have different effects on warehouse air quality; some don't require frequent air changes, while others need more frequent ventilation. The system cannot accurately grasp real-time air quality and respond accordingly, lacking intelligence and prone to ineffective ventilation, failing to ensure stable air quality in the warehouse in real time. Utility Model Content

[0003] The purpose of this invention is to provide an intelligent warehouse ventilation device that is simple and efficient in ventilation while preventing stale air from flowing back out and affecting ventilation quality. In addition, it can perform real-time and comprehensive detection of the air quality in the storage room, improve detection accuracy, and determine whether ventilation is needed based on the detection results. It can also electrically control the opening of the louvers and the operation of the electric fan to perform intelligent ventilation operations, avoid ineffective ventilation, and ensure the air quality in the storage room.

[0004] To achieve the above objectives, an intelligent warehouse ventilation device is provided, including a storage room. A side-opening door is located on the front left side of the storage room. The left side of the side-opening door is hinged to the storage room for rotation. A remote-controlled louver is fitted into the center of the left side of the storage room. An air collecting plate is fixedly connected to the center of the right side inside the storage room. The air collecting plate has a cavity. Several exhaust pipes are arranged in a rectangular array on the left side of the air collecting plate. All exhaust pipes are horizontally arranged in the left-right direction, and their right ends are connected and fixed to the air collecting plate. Several air inlet pipes are symmetrically connected and fixed to the upper and lower sides of the air collecting plate. The right ends of all air inlet pipes extend outside the storage room and are connected and fixed to a control switch base. The left side of each switch base is fixedly connected to the storage room. Electric fans are electrically connected to the center of opposite sides of each control switch base. The output ends of each electric fan are connected and fixedly connected to the air inlet pipe. An air detection center is located at the center of the top of the storage room. The air detection center is electrically connected to both the remote-controlled louvers and the control switch base. Symmetrical hanging rods are fixed to the top of the air detection center, with the tops of the rods fixedly connected to the storage room. A detection unit is fixedly engaged inside the air detection center. Small fans and docking rings are connected and engaged on the left and right sides of the detection unit, respectively. The opposite sides of the small fans and docking rings extend beyond the air detection center and are symmetrically arranged above them. An air collection duct is provided, with the duct located on the left side of the air detection center connected and fixed to the input end of a small fan. Guide fans are symmetrically mounted on the bottom side of the storage chamber, with the opposite ends of each guide fan tilted upwards. Several support rods are fixed to the bottom of each guide fan, and pads are fixedly connected to the bottom of each support rod. The bottom of the pads is pressed down against the storage chamber. A first air duct is connected and fixed to the opposite side of each guide fan, and a second air duct is connected and fixed to the opposite side of each guide fan. The output direction of the guide fans is from right to left. Air is introduced through a guide plate on the right side of the storage chamber, combined with a rectangular array of exhaust pipes and electrically controlled fans mounted at its four corners. The system blows air from right to left, quickly and efficiently expelling stale air from the storage room through the remote-controlled louvers and replacing it with fresh air. The entire process is simple and efficient, preventing stale air from flowing back and affecting ventilation quality. Additionally, a triangular circulation system is installed inside the storage room, with a small fan in the center of the top and guide fans on both sides of the bottom circulating the air through an air quality monitoring center. The monitoring unit performs real-time and comprehensive air quality monitoring, improving accuracy. Based on the monitoring results, it determines whether ventilation is needed and electrically controls the opening of the remote-controlled louvers and the operation of the electrically controlled fans for intelligent ventilation, avoiding ineffective ventilation and ensuring air quality within the storage room.

[0005] According to the aforementioned intelligent warehouse ventilation device, an anti-slip rubber pad is fixedly connected to the bottom of the pad, and the bottom of the anti-slip rubber pad is pressed and adhered to the inner bottom surface of the storage chamber. This reduces vibration noise and collision damage between the pad and the bottom surface of the storage chamber when the guide fan is operating.

[0006] According to the aforementioned intelligent warehouse ventilation device, each of the guide fans has a handle fixedly connected to its upper center. This facilitates the operator in moving and adjusting the placement of the guide fans.

[0007] According to the aforementioned intelligent warehouse ventilation device, a cover plate is provided at the center of the front side of the air detection center. The top side of the cover plate is rotatably engaged with the air detection center via a hinge. This facilitates quick assembly and replacement of the detection unit and provides sealed protection during use.

[0008] According to the aforementioned intelligent warehouse ventilation device, L-shaped partitions are fixedly connected to the right side of the control switch base located above the air collecting plate. These partitions protect the externally located upper electrically controlled fan from dust, preventing dust from affecting its airflow and causing pollution.

[0009] According to the aforementioned intelligent warehouse ventilation device, a protective casing is installed on the outside of the electrically controlled fan located below the air collecting plate. The left side of the protective casing is fixedly connected to the storage chamber, and a dustproof window is installed at the center of the top of each protective casing. This isolates and protects the electrically controlled fan located at the bottom layer, preventing it from being damaged or malfunctioning.

[0010] According to the aforementioned intelligent warehouse ventilation device, an electronic lock is installed on the front right side of the side-opening door to ensure the safety of the stored items inside the storage room.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] In this invention, a guide vane is installed on the right side of the storage room, along with a rectangular array of exhaust pipes and electrically controlled fans at its four corners, to provide comprehensive airflow from right to left. This allows stale air in the storage room to be quickly and efficiently expelled from the remote-controlled louvers and replaced with fresh air. The entire process is simple and efficient, preventing stale air from flowing back and affecting ventilation quality. Additionally, a triangular circulation system is installed inside the storage room, with a small fan in the center of the top side and guide fans on both sides of the bottom circulating the air through an air quality monitoring center. The monitoring unit performs real-time and comprehensive monitoring of the air quality in the storage room, improving monitoring accuracy. Based on the monitoring results, it determines whether ventilation is needed and electrically controls the opening of the remote-controlled louvers and the operation of the electrically controlled fans for intelligent ventilation, avoiding ineffective ventilation and ensuring air quality in the storage room.

[0013] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0015] Figure 1 This is a schematic diagram of the internal structure distribution of the storage room in an intelligent warehouse ventilation device according to this utility model;

[0016] Figure 2 This is a schematic diagram of the connection structure between the air collecting plate and the electrically controlled fan in an intelligent warehouse ventilation device according to this utility model;

[0017] Figure 3 This is a schematic diagram of the air detection center and guide fan in an intelligent warehouse ventilation device according to this utility model;

[0018] Figure 4 This is a schematic diagram of an intelligent warehouse ventilation device according to the present invention.

[0019] In the diagram: 1. Storage room; 2. Side-opening door; 3. Remote-controlled louvers; 4. Air collection plate; 5. Exhaust duct; 6. Inlet duct; 7. Control switch base; 8. Electric fan; 9. Air monitoring center; 10. Hanging rod; 11. Detection unit; 12. Small fan; 13. Air collection duct; 14. Guide fan; 15. Support rod; 16. Pad; 17. First guide duct; 18. Second guide duct; 19. Handle; 20. Cover plate; 21. L-shaped partition; 22. Protective casing; 23. Dustproof window; 24. Electronic lock. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figure 1-4This utility model provides a technical solution: an intelligent warehouse ventilation device, including a storage room 1, a side door 2 on the front left side of the storage room 1, an electronic lock 24 on the front right side of the side door 2, the left side of the side door 2 being hinged to rotate with the storage room 1, a remote-controlled louver 3 fitted into the center of the left side of the storage room 1, an air collecting plate 4 fixedly connected to the center of the right side inside the storage room 1, the air collecting plate 4 having a cavity inside, several exhaust pipes 5 arranged in a rectangular array on the left side of the air collecting plate 4, the exhaust pipes 5 being horizontally arranged in the left and right directions and their right ends being connected and fixed to the air collecting plate 4, several air inlet pipes 6 being symmetrically connected and fixed on the upper and lower sides of the air collecting plate 4, and the air inlet pipes 6 being connected and fixed in a cross shape. The right end of each air duct 6 extends outside the storage room 1 and is connected to a control switch base 7. The left side of each control switch base 7 is fixedly connected to the storage room 1. An electric fan 8 is electrically connected to the center of each opposite side of the control switch base 7. The output end of each electric fan 8 is connected to and fixedly connected to the air inlet duct 6. An air detection center 9 is installed at the center of the top of the storage room 1. The air detection center 9 is electrically connected to the remote-controlled louver 3 and the control switch base 7. A hanging rod 10 is symmetrically fixed to the top of the air detection center 9, and the top of each hanging rod 10 is fixedly connected to the storage room 1. A detection unit 11 is locked and fixed to the inside of the air detection center 9. A cover plate 20 is provided at the center of the front side of the detection unit 11. The top side of the cover plate 20 is rotatably engaged with the air detection center 9 via a hinge. Small fans 12 and docking rings are respectively connected and engaged on the left and right sides of the detection unit 11. The opposite sides of the small fans 12 and docking rings extend out of the air detection center 9 and are symmetrically provided with air collection ducts 13. The air collection duct 13 located on the left side of the air detection center 9 is connected and fixed to the input end of the small fans 12. Guide fans 14 are symmetrically mounted on the bottom side of the interior of the storage room 1. The opposite ends of the guide fans 14 are inclined upwards. Several support rods 15 are fixed to the bottom of each guide fan 14. The bottom of each support rod 15 is fixedly connected to... The bottom of the pad 16 is pressed and contacted against the storage chamber 1. The opposite side of the guide fan 14 is connected and fixed with the first air guide pipe 17, and the opposite side of the guide fan 14 is connected and fixed with the second air guide pipe 18. The output direction of the guide fan 14 is from right to left. The ventilation is simple and efficient, and it can prevent the backflow of stale air, thus avoiding affecting the ventilation quality. In addition, it can perform real-time and comprehensive detection of the air quality in the storage chamber, improve the detection accuracy, and determine whether ventilation is needed based on the detection results. It can also electrically control the opening of the remote-controlled louvers and the operation of the electric fan to carry out intelligent ventilation operations, avoid ineffective ventilation, and ensure the air quality in the storage chamber.

[0022] The bottom of the pad 16 is fixedly connected to an anti-slip rubber pad, the bottom of which is pressed against the inner bottom surface of the storage room 1. The upper middle part of the guide fan 14 is fixedly connected to a handle 19, which makes it easy to place the guide fan stably on any bottom surface of the storage room.

[0023] L-shaped partitions 21 are fixedly connected to the right side of the transmission and control switch base 7 located above the air collection plate 4. A protective shell 22 is installed on the outside of the electric control fan 8 located below the air collection plate 4. The left side of the protective shell 22 is fixedly connected to the storage chamber 1. A dustproof window 23 is installed at the center of the top of the protective shell 22 to protect the electric control fan outside the storage chamber and ensure its normal operation.

[0024] Working Principle: In this invention, by setting a guide plate on the right side of the storage chamber 1, combined with a rectangular array of exhaust pipes 5 and electrically controlled fans 8 mounted at its four corners, air is blown from right to left. This allows the stale air in the storage chamber 1 to be quickly and completely squeezed out from the remote-controlled louvers 3 and replaced with fresh air. The whole process is simple and efficient, preventing stale air from flowing back and affecting ventilation quality. In addition, a triangular circulation system is set up inside the storage chamber 1. A small fan 12 in the middle of the top side, combined with guide fans 14 on both sides of the bottom, circulates the air in the storage chamber 1 through the air detection center 9. The detection unit 11 performs real-time and comprehensive detection of the air quality in the storage chamber 1, improving detection accuracy. Based on the detection results, it is determined whether ventilation is needed. The remote-controlled louvers 3 are opened and the electrically controlled fans 8 are operated to perform intelligent ventilation, avoiding ineffective ventilation and ensuring the air quality in the storage chamber 1.

[0025] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. An intelligent warehouse ventilation device, comprising a storage room (1), characterized in that, The storage room (1) is provided with a side door (2) on the front left side. The left side of the side door (2) is connected to the storage room (1) by a hinge. A remote-controlled louver (3) is fitted into the center of the left side of the storage room (1). A wind collection plate (4) is fixedly connected to the center of the right side inside the storage room (1). The wind collection plate (4) has a cavity inside. Several exhaust pipes (5) are mounted in a rectangular array on the left side of the wind collection plate (4). The exhaust pipes (5) are all horizontally mounted in the left and right directions and their right ends are connected and fixed to the wind collection plate (4). Several air inlet pipes (6) are symmetrically connected and fixed on the upper and lower sides of the wind collection plate (4). The right ends of the air inlet pipes (6) extend out of the storage room (1) and are connected and fixed to the transmission control switch base (7). The left side of the transmission control switch base (7) is fixedly connected to the storage room (1). An electric control fan (8) is electrically connected to the center of the upper and lower opposite sides of the transmission control switch base (7). The output end of the electric control fan (8) is connected and fixed to the air inlet pipe (6). An air detection center (9) is provided at the center of the top side of the storage room (1). The air detection center (9) is electrically connected to the remote control louver (3) and the transmission control switch seat (7). The top of the air detection center (9) is symmetrically fixed with a hanging rod (10). The top of the hanging rod (10) is fixedly connected to the storage room (1). The inner side of the air detection center (9) is fixedly fitted with a detection unit (11). The left and right sides of the detection unit (11) are respectively connected and fitted with a small fan (12) and a docking ring. The opposite sides of the small fan (12) and the docking ring extend out of the air detection center (9) and are symmetrically provided with air collection ducts (13). The air collection duct (13) located on the left side of the air detection center (9) is connected and fixed to the input end of the small fan (12). The storage room (1) is symmetrically equipped with guide fans (14) on the bottom side of the interior. The opposite ends of the guide fans (14) are inclined upwards. Several support rods (15) are fixed to the bottom of the guide fans (14). The bottom of the support rods (15) is fixedly connected to the pads (16). The bottom of the pads (16) is pressed down against the storage room (1). The opposite side of the guide fans (14) is connected to and fixed with a first air duct (17). The opposite side of the guide fans (14) is connected to and fixed with a second air duct (18). The output direction of the guide fans (14) is from right to left.

2. The intelligent warehouse ventilation device as described in claim 1, characterized in that: The bottom of the pad (16) is fixedly connected to an anti-slip rubber pad, and the bottom of the anti-slip rubber pad is pressed and adhered to the inner bottom surface of the storage room (1).

3. The intelligent warehouse ventilation device as described in claim 1, characterized in that: Each of the guide fans (14) has a handle (19) fixedly connected to the upper middle part.

4. The intelligent warehouse ventilation device as described in claim 1, characterized in that: A cover plate (20) is provided at the front center of the air detection center (9), and the top side of the cover plate (20) is rotatably engaged with the air detection center (9) via a hinge.

5. The intelligent warehouse ventilation device as described in claim 1, characterized in that: L-shaped partitions (21) are fixedly connected to the right side of the control switch base (7) located above the air collecting plate (4).

6. The intelligent warehouse ventilation device as described in claim 1, characterized in that: A protective shell (22) is mounted on the outside of the electrically controlled fan (8) located below the air collecting plate (4). The left side of the protective shell (22) is fixedly connected to the storage room (1). A dustproof window (23) is mounted at the center of the top of the protective shell (22).

7. The intelligent warehouse ventilation device as described in claim 1, characterized in that: An electronic lock (24) is installed on the front right side of the side-opening door (2).