Ventilation pipe cover structure
By using a segmented ventilation duct design and sealing gaskets, the problems of complexity and high cost of ventilation ducts for energy storage cabinets have been solved, achieving a simple duct structure and low-cost ventilation effect.
Patent Information
- Application Number
- CN202520236208.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing energy storage cabinets have complex ventilation duct designs, poor applicability, and high costs. The wiring harness is difficult to run, leading to air leakage risks and structural complexity.
The system employs a segmented ventilation duct design, including an intake duct between the front door and the electrical compartment, and segmented first and second exhaust ducts between the rear door and the electrical compartment. Sealing gaskets such as D-type foam are used for sealing, resulting in a simple duct design that avoids interference with wiring harnesses.
It achieves a simple air duct structure, reduces processing costs, avoids wiring harness interference and air leakage risks, and is suitable for air duct design in a variety of situations.
Smart Images

Figure CN223583586U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of energy storage equipment, especially to a ventilation pipe cover structure. BACKGROUND
[0002] The structure of the energy storage cabinet can refer to the Chinese utility model patent with the application number CN202323355319.X and the name of a forced air cooling energy storage cabinet. The energy storage cabinets on the market have strict heat dissipation requirements, and the electrical devices inside the cabinet, such as photovoltaic controllers, DC modules, PCS, and UPS, have corresponding heat dissipation requirements. The forced air cooling of the energy storage cabinet includes a cabin and a ventilation duct. Due to the difficulties in wiring and the lack of space structure, the existing design of the cabin and the ventilation duct not only has a complex structure, poor applicability, and high cost. UTILITY MODEL CONTENT
[0003] The utility model solves the technical problem of providing a ventilation pipe cover structure with strong applicability, simple structure, and low cost.
[0004] To solve the above technical problems, the utility model adopts the technical scheme of a ventilation pipe cover structure, which includes a cabinet body. The cabinet body is provided with a front door and a rear door on the opposite two side walls. The inner cavity of the cabinet body is located between the front door and the rear door and is provided with an electrical device compartment.
[0005] The inner wall of the front door is provided with an air inlet duct, and the air inlet duct is connected with one end of the electrical device compartment.
[0006] The inner wall of the rear door is provided with a first air outlet duct, and the first air outlet duct is detachably connected with a second air outlet duct. The second air outlet duct is connected with the other end of the electrical device compartment.
[0007] Further, one end of the electrical device compartment is provided with an air inlet mesh, and the air inlet mesh is connected with the air inlet duct. The other end of the electrical device compartment is provided with an air outlet mesh, and the air outlet mesh is connected with the second air outlet duct.
[0008] Further, the front door and the rear door are both provided with ventilation louvers.
[0009] Further, the first air outlet duct is locked with the ventilation louvers of the rear door, and the second air outlet duct is locked on the cabinet body.
[0010] Further, a sealing pad is arranged between the first air outlet duct and the second air outlet duct.
[0011] Further, the sealing pad is a D-shaped foam, and the first air outlet duct is installed with the second air outlet duct through the D-shaped foam.
[0012] The utility model discloses a beneficial effect lies in: a ventilation pipe cover structure, ventilation duct adopts sectional design, including the air inlet air duct between front door and electric appliance compartment and the sectional first air outlet air duct and second air outlet air duct between back door and electric appliance compartment, when working, cold wind passes through front door, air inlet air duct and enters electric appliance compartment, and the hot air in the inside of electric appliance compartment passes through second air outlet air duct, first air outlet air duct and back door in proper order and discharges the cabinet outside, and the design sectional ventilation duct structure can be applicable to the air duct design under a variety of situations, more simple when assembling, and the structure of air duct is simple, and the processing cost also reduces, after front door opens, the arrangement interference of air inlet air duct periphery wireless beam and electrical apparatus etc., sectional air outlet air duct can avoid the interference between back door air duct and electrical apparatus and beam when closing the door, need not dig hole and avoid, eliminate the risk of air leakage. BRIEF DESCRIPTION OF DRAWINGS
[0013] Fig. 1 It is structural schematic diagram for ventilation pipe cover structure;
[0014] Fig. 2 It is another structural schematic diagram for ventilation pipe cover structure;
[0015] Label explanation:
[0016] 1, cabinet;11, electric appliance compartment;
[0017] 2, front door;21, air inlet air duct;
[0018] 3, back door;31, first air outlet air duct;32, second air outlet air duct;33, sealing pad. DETAILED DESCRIPTION
[0019] To explain the technical content of the utility model, the purpose and effect realized in detail, the following is explained in conjunction with the embodiment and the drawings.
[0020] Please refer to Figs. 1-2 The utility model discloses a ventilation pipe cover structure, including cabinet 1, the inner chamber of cabinet 1 is located between front door 2 and back door 3 and is equipped with electric appliance compartment 11;
[0021] The inner wall of front door 2 is equipped with air inlet air duct 21, and air inlet air duct 21 is connected with one end of electric appliance compartment 11.
[0022] The inner wall of back door 3 is equipped with first air outlet air duct 31, and first air outlet air duct 31 is detachably connected with second air outlet air duct 32, and second air outlet air duct 32 is connected with the other end of electric appliance compartment 11.
[0023] The utility model discloses a beneficial effect lies in: a ventilation pipe cover structure, ventilation pipeline adopts sectional design, including the air inlet duct 21 between front door 2 and electric appliance compartment 11 and the sectional first air outlet duct 31 and second air outlet duct 32 between rear door 3 and electric appliance compartment 11, when working, cold wind enters electric appliance compartment 11 through front door 2, air inlet duct 21, the hot air in electric appliance compartment 11 is discharged outside cabinet 1 in proper order through second air outlet duct 32, first air outlet duct 31 and rear door 3, and the sectional ventilation pipeline structure can be used in the air duct design under a variety of situations, and the air duct structure is simple, and the processing cost is also reduced, when front door 2 is opened, the air inlet duct 21 periphery wireless beam and the arrangement interference of electric appliance are avoided, and the sectional air outlet duct can avoid the interference between rear door 3 air duct and electric appliance and wire harness when closing the door, need not dig hole and avoid, eliminate the risk of air leakage.
[0024] In an optional embodiment, one end of the electric appliance compartment 11 is provided with an air inlet mesh, the air inlet mesh is connected with the air inlet duct 21, the other end of the electric appliance compartment 11 is provided with an air outlet mesh, and the air outlet mesh is connected with the second air outlet duct 32.
[0025] In an optional embodiment, the front door 2 and the rear door 3 are both provided with ventilation louver.
[0026] In an optional embodiment, the first air outlet duct 31 is locked with the ventilation louver of the rear door 3, and the second air outlet duct 32 is locked on the cabinet 1.
[0027] In an optional embodiment, a sealing gasket 33 is arranged between the first air outlet duct 31 and the second air outlet duct 32.
[0028] In an optional embodiment, the first air outlet duct 31 and the second air outlet duct 32 are directly connected, and the sealing gasket 33 is arranged between the first air outlet duct 31 and the second air outlet duct 32.
[0029] In an optional embodiment, the sealing gasket 33 is a D-shaped foam, and the first air outlet duct 31 is interference-installed with the second air outlet duct 32 through the D-shaped foam.
[0030] In an optional embodiment, the two air ducts are connected and sealed by the D-shaped foam (gap 7mm, interference 8mm), and the sealing effect is good.
[0031] Please refer to Figs. 1-2 The utility model discloses an embodiment one for a ventilation pipe cover structure, including cabinet 1, the cabinet 1 is equipped with front door 2 and rear door 3 on the opposite two side walls respectively, and the inner chamber of cabinet 1 is located between front door 2 and rear door 3 and is equipped with electric appliance compartment 11;
[0032] The inner wall of front door 2 is provided with air inlet duct 21, and the air inlet duct 21 is connected with one end of electric appliance compartment 11.
[0033] The inner wall of the back door 3 is provided with a first air outlet duct 31, the first air outlet duct 31 is detachably connected with a second air outlet duct 32, and the second air outlet duct 32 is connected with the other end of the electric appliance compartment 11.
[0034] One end of the electric appliance compartment 11 is provided with an air inlet mesh, the air inlet mesh is connected with the air inlet duct 21, the other end of the electric appliance compartment 11 is provided with an air outlet mesh, and the air outlet mesh is connected with the second air outlet duct 32. The front door 2 and the back door 3 are both provided with ventilation louvers. The first air outlet duct 31 is locked with the ventilation louvers of the back door 3, and the second air outlet duct 32 is locked on the cabinet body 1. The first air outlet duct 31 and the second air outlet duct 32 are provided with a sealing gasket 33. The sealing gasket 33 is a D-shaped foam, and the first air outlet duct 31 is installed through the D-shaped foam and the second air outlet duct 32.
[0035] In summary, the ventilation pipe cover structure of the utility model, the ventilation pipe adopts sectional design, including the air inlet duct between the front door and the electric appliance compartment and the sectional first air outlet duct and the second air outlet duct between the back door and the electric appliance compartment, when working, cold air enters the electric appliance compartment through the front door and the air inlet duct, and hot air in the electric appliance compartment is discharged out of the cabinet through the second air outlet duct, the first air outlet duct and the back door in turn, the sectional ventilation pipe structure can be used for air duct design in various situations, is more simple during assembly, the structure of the air duct is simple, the processing cost is also reduced, after the front door is opened, the air inlet duct is not disturbed by the arrangement of wires and electrical components, the sectional air outlet duct can avoid interference between the back door air duct and the electrical components and the wires when the door is closed, without digging holes for avoidance, and the risk of air leakage is eliminated.
[0036] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent transformation or direct or indirect application in related technical fields based on the content of the utility model specification and drawings is also included in the patent protection range of the utility model.
Claims
1. A ventilation duct cover structure, characterized in that, The cabinet includes a front door and a rear door on two opposite side walls, and an appliance compartment is located in the inner cavity of the cabinet between the front door and the rear door. The inner wall of the front door is equipped with an air intake duct, which is connected to one end of the electrical compartment. The inner wall of the rear door is provided with a first air outlet duct, which is detachably connected to a second air outlet duct. The second air outlet duct is connected to the other end of the electrical compartment.
2. The ventilation duct cover structure according to claim 1, characterized in that, One end of the electrical compartment is equipped with an air inlet mesh, which is connected to the air inlet duct. The other end of the electrical compartment is equipped with an air outlet mesh, which is connected to the second air outlet duct.
3. The ventilation duct cover structure according to claim 1, characterized in that, Both the front and rear doors are equipped with ventilation louvers.
4. The ventilation duct cover structure according to claim 3, characterized in that, The first air outlet duct is locked to the ventilation louvers of the rear door, and the second air outlet duct is locked to the cabinet.
5. The ventilation duct cover structure according to claim 1, characterized in that, A sealing gasket is installed between the first air outlet duct and the second air outlet duct.
6. The ventilation duct cover structure according to claim 5, characterized in that, The sealing gasket is D-type foam, and the first air outlet duct is installed by interfering with the second air outlet duct through the D-type foam.
Citation Information
Patent Citations
Air-cooled energy storage cabinet
CN221747326U