Energy storage box upper cover structure
By incorporating a wind turbine tower consisting of a tower cover, tower body, and insect-proof edge into the energy storage box's top cover structure, the problems of poor heat dissipation and leakage are solved, achieving insect protection and smooth airflow, thus ensuring the normal operation of the energy storage equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN JINGYI MASCH CO LTD
- Filing Date
- 2025-04-03
- Publication Date
- 2026-05-26
AI Technical Summary
The existing energy storage box top cover structure has problems with poor heat dissipation, mosquito and rainwater leakage, which affects the normal operation of energy storage equipment.
An energy storage box cover structure was designed, in which a cooling fan is installed inside the fan tower, which consists of a tower cover, a tower body, and an insect-proof edge. The lower end of the tower body is connected to the upper sealing plate, the tower cover is installed on the upper part of the tower body, and an insect-proof edge is set around the middle of the tower body to form a space that prevents mosquitoes from entering and facilitates airflow. At the same time, a folded edge is set around the ventilation opening to prevent rainwater from entering, and the lower end connection of the tower body is sealed with waterproof material.
It effectively prevents mosquitoes and rainwater leakage, ensuring the normal operation of energy storage equipment.
Smart Images

Figure CN224278426U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an energy storage box, and more particularly to an energy storage box top cover structure composed of a frame, insulation material, upper sealing plate and lower sealing plate. Background Technology
[0002] Currently, a type of energy storage box top cover structure has been publicly disclosed on the market. Its structural features include: a frame, insulation material, an upper sealing plate, and a lower sealing plate. A lower sealing plate, composed of multiple sealing plates, is installed on the lower surface of the frame, which has a triangular cross-section. An upper sealing plate, also composed of multiple sealing plates, is installed on the upper surface of the frame, forming a sloping roof. Insulation material is installed within the frame between the upper and lower sealing plates. A sealing strip is installed at the connection point between sealing plate I and sealing plate II on the upper sealing plate, along the sloping roof, with the connection point concealed within the sealing strip. This connection point is a protrusion higher than the upper surface of the upper sealing plate. A channel for ventilation by a cooling fan is provided between the upper and lower sealing plates. A cover plate is installed above the cooling fan outlet. Because the cover plate is close to the cooling fan outlet, insufficient heat dissipation occurs during use. Furthermore, insects and rainwater can easily enter the energy storage box through the cooling fan channel, potentially damaging the energy storage equipment inside. Summary of the Invention
[0003] The purpose of this invention is to provide an energy storage box cover structure that can effectively prevent mosquitoes and rainwater or snow water from seeping in, and ensure the normal operation of the energy storage equipment inside the energy storage box.
[0004] To achieve the above objectives, this utility model provides an energy storage box cover structure, comprising a frame, insulation material, an upper sealing plate, and a lower sealing plate. A lower sealing plate, composed of multiple sealing plates, is installed on the lower surface of the frame, which has a triangular cross-section. An upper sealing plate, also composed of multiple sealing plates, is installed on the upper surface of the frame, forming a sloping roof. Insulation material is installed within the frame between the upper and lower sealing plates. A sealing strip is installed at the connection point between sealing plate I and sealing plate II on the upper sealing plate, along the sloping roof, with the connection point concealed within the sealing strip. This connection point is a protrusion higher than the upper surface of the upper sealing plate. A channel is provided between the upper and lower sealing plates to facilitate the exhaust of a cooling fan. The cooling fan is installed inside a fan tower composed of a tower cover, a tower body, and an insect-proof edge. The lower end of the tower body is connected to the upper sealing plate, and the tower cover is installed on the upper part of the tower body. An insect-proof edge is provided around the middle of the tower body near the tower cover, with the outer edge of the insect-proof edge connected to the tower cover, creating a space that prevents insects from entering and facilitates airflow.
[0005] The tower body includes an upper frame and a lower frame. The upper frame is hollow to facilitate air circulation. The upper end of the upper frame is connected to the tower cover, the lower end of the upper frame is connected to the upper end of the lower frame, and the lower end of the lower frame is connected to the upper surface of the upper sealing plate. Steel plates are installed around the lower frame to make the lower frame a square tube shape.
[0006] A base for installing a cooling fan is provided inside the lower frame. A guide plate is also installed inside the lower frame, and the guide plate is placed on the base between two adjacent cooling fans.
[0007] The tower cover is configured with a U-shaped longitudinal section.
[0008] The insect-proof edge includes a long frame, a short frame, a grid, a long folded edge, and a short folded edge. Two long frames and two short frames form a rectangle, which facilitates the placement of the tower body within the rectangle. A grid is provided on the long frame and the short frame. A long folded edge is provided on the upper surface of the long frame where it connects to the tower body, and a short folded edge is provided on the upper surface of the short frame where it connects to the tower body, which helps to prevent condensation from entering the energy storage box.
[0009] The long folded edge and the upper surface of the long frame are configured with a U-shaped cross-section, and the bottom edge of the U-shape is connected to the tower body.
[0010] The short folded edge and the upper surface of the short frame are configured with a U-shaped cross-section, and the bottom edge of the U-shape is connected to the tower body.
[0011] The upper sealing plate is provided with a ventilation opening to facilitate airflow. A folded edge is provided around the ventilation opening to prevent rainwater from entering, and the size of the ventilation opening is smaller than the size of the tower body, so that the folded edge can be placed inside the tower body.
[0012] A waterproof material is installed at the connection between the lower end of the tower body and the outward-facing upper sealing plate to prevent rainwater from entering.
[0013] With this structure, the cooling fan is housed within a fan tower comprised of a tower cover, tower body, and insect-proof edges. The lower end of the tower body is connected to the upper sealing plate, the tower cover is installed on the upper part of the tower body, and insect-proof edges are provided around the middle of the tower body near the tower cover. The outer edges of the insect-proof edges are connected to the tower cover, creating a space that prevents mosquitoes from entering while facilitating air circulation. This effectively prevents mosquitoes and rainwater or snowmelt leakage, ensuring the normal operation of the energy storage equipment inside the energy storage box. Attached Figure Description
[0014] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0015] Appendix Figure 1 This is a front view schematic diagram of an energy storage box cover structure according to the present invention.
[0016] Appendix Figure 2 It is attached Figure 1 A diagram showing the view from the right.
[0017] Appendix Figure 3 It is attached Figure 2 A magnified view of a portion of the image.
[0018] Appendix Figure 4 It is attached Figure 3 A partially enlarged top-down sectional view.
[0019] In the diagram: 1. Top cover plate 2. Wind turbine tower 3. Tower cover 4. Long folded edge 5. Insect-proof edge 6. Lower frame 7. Upper frame 8. Tower body 9. Short folded edge 10. Folded edge 11. Long frame 12. Grid 13. Cooling fan 14. Deflector plate 15. Short frame. Detailed Implementation
[0020] Appendix Figure 1 Appendix Figure 2 Appendix Figure 3 and attached Figure 4 The present invention discloses an energy storage box cover structure, comprising a frame, insulation material, an upper sealing plate 1, and a lower sealing plate. A lower sealing plate, composed of multiple sealing plates, is disposed on the lower surface of the frame, which has a triangular cross-section. An upper sealing plate 1, also composed of multiple sealing plates, is disposed on the upper surface of the frame, forming a sloping roof. Insulation material is installed within the frame between the upper and lower sealing plates. A sealing strip is provided at the connection point between sealing plates I and II on the upper sealing plate 1 along the sloping roof, with the connection point concealed within the sealing strip. This connection point is a protrusion higher than the upper surface of the upper sealing plate 1. A channel is provided between the upper and lower sealing plates to facilitate the exhaust of a cooling fan 13. The cooling fan 13 is disposed within a fan tower 2, which consists of a tower cover 3, a tower body 8, and an insect-proof edge 5. The lower end of the tower body 8 is connected to the upper sealing plate 1, and the tower cover 3 is installed on the tower. At the upper end of the tower body 8, near the center of the tower cover 3, an insect-proof edge 5 is provided around the perimeter. The outer edge of the insect-proof edge 5 is connected to the tower cover 3, forming a space that prevents mosquitoes from entering and facilitates airflow. The tower body 8 includes an upper frame 7 and a lower frame 6. The upper frame 7 is hollow to facilitate airflow. The upper end of the upper frame 7 is connected to the tower cover 3, and the lower end of the upper frame 7 is connected to the upper end of the lower frame 6. The lower end of the lower frame 6 is connected to the upper surface of the upper sealing plate 1. Steel plates are provided around the lower frame 6, making the lower frame 6 a square tube. A base for installing a cooling fan 13 is provided inside the lower frame 6. A guide plate 14 is also installed inside the lower frame 6 and is placed on the base between two adjacent cooling fans 13. The tower cover 3 is designed with a U-shaped longitudinal section.
[0021] Appendix Figure 4The insect-proof edge 5 shown includes a long frame 11, a short frame 15, a grid 12, a long folded edge 4, and a short folded edge 9. The two long frames 11 and the two short frames 15 form a rectangle, which facilitates the placement of the tower body 8 within the rectangle. The grid 12 is provided on the long frame 11 and the short frame 15. A long folded edge 4 is provided on the upper surface of the long frame 11 at the connection between the long frame 11 and the tower body 8. A short folded edge 9 is provided on the upper surface of the short frame 15 at the connection between the short frame 15 and the tower body 8, which helps to prevent condensation from entering the energy storage box. The long folded edge 4 and the upper surface of the long frame 11 are set in a U-shape with the bottom edge of the U-shape connected to the tower body 8. The short folded edge 9 and the upper surface of the short frame 15 are set in a U-shape with the bottom edge of the U-shape connected to the tower body 8.
[0022] Appendix Figure 1 Appendix Figure 2 Appendix Figure 3 and attached Figure 4 As shown, a ventilation opening is provided on the upper sealing plate 1 to facilitate airflow. A folded edge 10 is provided around the ventilation opening to prevent rainwater from entering. The size of the ventilation opening is smaller than the size of the tower body 8 so that the folded edge 10 can be placed inside the tower body 8. A waterproof material is provided at the connection between the lower end of the tower body 8 and the outward-facing upper sealing plate 1 to prevent rainwater from entering.
Claims
1. A storage box cover structure, comprising a frame, insulation material, an upper sealing plate, and a lower sealing plate, wherein a lower sealing plate composed of multiple sealing plates is provided on the lower surface of the frame with a triangular cross-section, and an upper sealing plate composed of multiple sealing plates is provided on the upper surface of the frame, forming a sloping roof; insulation material is installed within the frame between the upper and lower sealing plates; a sealing strip is provided at the connection between sealing plate I and sealing plate II on the upper sealing plate along the sloping roof, and the connection is placed within the sealing strip; the connection is a protrusion higher than the upper surface of the upper sealing plate; and a channel is provided between the upper and lower sealing plates to facilitate the exhaust of a cooling fan, characterized in that: The cooling fan (13) is installed inside the fan tower (2) which consists of a tower cover (3), a tower body (8) and an insect-proof edge (5). The lower end of the tower body (8) is connected to the upper sealing plate (1), and the tower cover (3) is installed on the upper end of the tower body (8). An insect-proof edge (5) is provided around the middle part of the tower body (8) near the tower cover (3). The outer edge of the insect-proof edge (5) is connected to the tower cover (3), so that the tower cover (3), the tower body (8) and the insect-proof edge (5) form a space that can prevent mosquitoes from entering and facilitate airflow.
2. The energy storage tank cover structure according to claim 1, characterized in that: The tower body (8) includes an upper frame (7) and a lower frame (6). The upper frame (7) is hollow to facilitate air circulation. The upper end of the upper frame (7) is connected to the tower cover (3), and the lower end of the upper frame (7) is connected to the upper end of the lower frame (6). The lower end of the lower frame (6) is connected to the upper surface of the upper sealing plate (1). Steel plates are provided around the lower frame (6) to make the lower frame (6) a square tube.
3. The energy storage tank cover structure according to claim 2, characterized in that: A base for installing a cooling fan (13) is provided inside the lower frame (6). A guide plate (14) is also installed inside the lower frame (6). The guide plate (14) is placed on the base between two adjacent cooling fans (13).
4. The energy storage tank cover structure according to claim 1, characterized in that: The tower cover (3) is configured with a U-shaped longitudinal section.
5. The energy storage tank cover structure according to claim 1, characterized in that: The insect-proof edge (5) includes a long frame (11), a short frame (15), a grid (12), a long folded edge (4), and a short folded edge (9). The two long frames (11) and the two short frames (15) form a rectangle, which makes it easy for the tower body (8) to be placed inside the rectangle. A grid (12) is provided on the long frame (11) and the short frame (15). A long folded edge (4) is provided on the upper surface of the long frame (11) at the connection between the long frame (11) and the tower body (8). A short folded edge (9) is provided on the upper surface of the short frame (15) at the connection between the short frame (15) and the tower body (8), which makes it easy to prevent condensation water from entering the energy storage box.
6. The energy storage tank cover structure according to claim 5, characterized in that: The long folded edge (4) and the upper surface of the long frame (11) are set to have a U-shaped cross section, and the bottom edge of the U-shape is connected to the tower body (8).
7. The energy storage tank cover structure according to claim 5, characterized in that: The short folded edge (9) and the upper surface of the short frame (15) are configured to have a U-shaped cross-section, and the bottom edge of the U-shape is connected to the tower body (8).
8. The energy storage tank cover structure according to claim 1, characterized in that: A ventilation opening is provided on the upper sealing plate (1) to facilitate airflow. A folded edge (10) is provided around the ventilation opening to prevent rainwater from entering. The size of the ventilation opening is smaller than the size of the tower body (8) so that the folded edge (10) can be placed inside the tower body (8).
9. The energy storage tank cover structure according to claim 1, characterized in that: A waterproof material is provided at the connection between the lower end of the tower body (8) and the upper sealing plate (1) facing outward to prevent rainwater from entering.