Novel computer room ventilation and heat dissipation device
By setting multiple sets of heat dissipation rings and inclined heat dissipation holes in the computer room ventilation system, combined with the design of sealing blocks and reset springs, the problem of insufficient local heat dissipation in the existing technology is solved, achieving more efficient fixed-point heat dissipation and convenient installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEILONGJIANG INST OF TECH
- Filing Date
- 2025-06-29
- Publication Date
- 2026-06-16
Smart Images

Figure CN224368198U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of computer room ventilation, and in particular to a novel computer room ventilation and heat dissipation device. Background Technology
[0002] An existing patent (publication number: CN220897034U) proposes a novel computer room ventilation and heat dissipation device, including a computer room equipped with a cooling fan, a cooling fan equipped with a connecting pipe, a first mounting pipe equipped with a first mounting tube, a first mounting tube equipped with a first assembly tube, a first assembly tube equipped with a first air jet pipe, a connecting pipe equipped with a fixing pipe, and a fixing tube equipped with a second mounting pipe. However, in this device, "air flows from the first mounting pipe into the first assembly tube and is then blown out by the first air jet pipe." The first air jet pipe blows air out over a wide area from the top, making it difficult to provide localized, targeted heat dissipation for individual computer groups, thus affecting the overall heat dissipation effect. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a novel computer room ventilation and heat dissipation device. When performing ventilation and heat dissipation operations in a computer room, multiple sets of heat dissipation rings can be installed at the rear of the computer group to provide targeted heat dissipation based on the heat dissipation needs of the computer group. This results in more targeted heat dissipation and better heat dissipation performance.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A novel computer room ventilation and heat dissipation device includes a computer room, a side circulation fan, computer groups, a main ventilation duct, a heat dissipation ring support column, a heat dissipation ring, a central connecting hose, a side support column mounting platform, side mounting screws, a bottom hose mounting block, an upper protective cover, a sealing block, and a sealing block return spring. The side circulation fan is connected to the side of the computer room. Multiple computer groups are arranged side-by-side on the inner walls of the computer room. The main ventilation duct is connected to the interior of the computer room and is located behind the computer groups. One end of the main ventilation duct is connected to the side circulation fan, and the top of the main ventilation duct has an upper heat dissipation block connecting pipe. Multiple sets of upper heat dissipation block connecting pipes are evenly arranged on the upper part of the main ventilation pipe. The top of the upper heat dissipation block connecting pipe has an upper threaded connecting block, and the upper threaded connecting block has an upper sealing block connecting hole inside. The main ventilation pipe has a sealing block mounting post inside, and the sealing block mounting post is positioned corresponding to the upper threaded connecting block. A sealing block is set on the top of the sealing block mounting post, and a bottom limit block is set on the side of the sealing block. A sealing block connecting sleeve is set at the bottom of the sealing block. The sealing block connecting sleeve is adapted to the sealing block mounting post and is connected to the sealing block mounting post. The sealing block connecting sleeve slides on the outside of the sealing block mounting post, and the sealing block return spring is sleeved on the outside of the sealing block mounting post.
[0006] The bottom of the sealing block reset spring is connected to the bottom of the sealing block mounting post, and the top of the sealing block reset spring is connected to the bottom of the sealing block connecting sleeve. The sealing block is adapted to the upper sealing block connecting hole and is connected to the upper sealing block connecting hole. The sealing block is inserted into the upper sealing block connecting hole. Multiple sets of heat dissipation ring support columns are provided at the top of the main ventilation pipe. The bottom of the heat dissipation ring support column has a bottom support column mounting seat. The bottom support column mounting seat is threadedly connected to the upper threaded connecting block at the corresponding position. Multiple longitudinally arranged heat dissipation rings are provided between two sets of adjacent heat dissipation ring support columns. The heat dissipation rings have inclined heat dissipation holes inside. The side support column mounting platform is adapted to the heat dissipation ring support column and is connected to the heat dissipation ring support column. The side support column mounting platform slides on the outside of the heat dissipation ring support column. The number and position of the side support column mounting platforms correspond to the heat dissipation rings. The side of the side support column mounting platform facing the heat dissipation ring has a side support column. The heat dissipation rings have side column connecting sleeves on both sides.
[0007] The side column connecting cylinder is adapted to the side support column and is connected to the side support column. The side column connecting cylinder slides on the outside of the side support column. The side of the side support column mounting platform has a side screw mounting platform. The side screw mounting platform is threadedly connected to the side mounting screw. The side mounting screw is pressed against the side of the heat dissipation ring support column. Both the upper and lower sides of the heat dissipation ring have hose connecting platforms. The hose connecting platform at the top of the top heat dissipation ring is connected to the upper protective cover. The upper protective cover is inserted into the hose connecting platform and fixed. The hose connecting platforms between the upper and lower sets of adjacent heat dissipation rings are connected by a middle connecting hose. The bottom of the bottom heat dissipation ring is provided with a bottom hose mounting block. The bottom connecting hose is located at the top of the bottom hose mounting block.
[0008] Beneficial effects: 1. When performing ventilation and heat dissipation operations in computer rooms, this utility model can set up multiple heat dissipation rings at the rear of the computer group to perform targeted heat dissipation according to the heat dissipation needs of the computer group. The heat dissipation position is more targeted and the heat dissipation performance is better.
[0009] 2. The installation position of the heat dissipation ring of this utility model can be freely adjusted according to the position of the connected upper heat dissipation block connecting pipe and the side support column mounting platform, so as to adapt to the installation position of different computer groups and have high installation flexibility.
[0010] 3. The heat dissipation ring of this utility model adopts a multi-ring design with multiple sets of inclined heat dissipation holes inside. The airflow provided by the side circulation fan is blown out from each inclined heat dissipation hole, and the airflow is evenly distributed, resulting in better heat dissipation.
[0011] 4. When the bottom flexible hose mounting block is installed, the automatic connecting rod presses the sealing block into the upper heat dissipation block connecting pipe, allowing the airflow inside the main ventilation pipe to freely flow into the bottom connecting hose through the side connecting groove and the inner connecting groove. When the bottom flexible hose mounting block is pulled out, the sealing block is inserted into the upper sealing block connecting hole by the sealing block return spring, and the upper sealing block connecting hole is automatically closed, thereby simplifying the operation process of connecting and disassembling the bottom flexible hose mounting block and further increasing the convenience of installing and disassembling this device. Attached Figure Description
[0012] Figure 1 This is an installation diagram of the novel computer room ventilation and heat dissipation device described in this utility model.
[0013] Figure 2 This is the installation state of the novel computer room ventilation and heat dissipation device described in this utility model. Figure 2 .
[0014] Figure 3 This is a schematic diagram of the structure of the novel computer room ventilation and heat dissipation device described in this utility model.
[0015] Figure 4 This is a partial structural diagram of the novel computer room ventilation and heat dissipation device described in this utility model.
[0016] Figure 5 This is a partial front cross-sectional view of the novel computer room ventilation and heat dissipation device described in this utility model.
[0017] Figure 6 The present utility model Figure 5 Enlarged view of a portion of point A in the middle.
[0018] Figure 7 The present utility model Figure 5 Enlarged view of section B in the middle.
[0019] Figure 8 This is a diagram showing the installation state of the sealing block according to this utility model.
[0020] Figure 9 This is a schematic diagram of the heat dissipation ring structure described in this utility model.
[0021] Figure 10 This is a schematic diagram of the bottom flexible tube mounting block structure described in this utility model. Detailed Implementation
[0022] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0023] Example 1:
[0024] A novel computer room ventilation and heat dissipation device includes a computer room 1, a side circulation fan 2, computer groups 3, a main ventilation duct 4, a heat dissipation ring support column 7, a heat dissipation ring 8, a central connecting hose 12, a side support column mounting platform 13, side mounting screws 14, a bottom hose mounting block 16, an upper protective cover 22, a sealing block 24, and a sealing block return spring 29. The side circulation fan 2 is connected to the side of the computer room 1. Multiple computer groups 3 are installed inside the computer room 1. During ventilation and heat dissipation operations, multiple heat dissipation rings 8 can be installed at the rear of the computer groups 3 for targeted heat dissipation, based on their heat dissipation needs. This results in more targeted heat dissipation and better heat dissipation performance. Multiple computer groups 3 are arranged side-by-side on the inner wall of the computer room 1. The main ventilation duct 4 is connected inside the computer room 1 and is located at the rear of the computer groups 3. One end of the main ventilation duct 4 is connected to the side circulation fan 2, and the top of the main ventilation duct 4 has an upper heat dissipation block connecting pipe 5 for heat dissipation. The installation position of the heat ring 8 can be freely adjusted according to the position of the connected upper heat sink connecting pipe 5 and the side support column mounting platform 13, so as to adapt to the installation position of different computer groups 3, with high installation flexibility. Multiple sets of upper heat sink connecting pipes 5 are evenly arranged on the upper part of the main ventilation pipe 4. The top of the upper heat sink connecting pipe 5 has an upper threaded connecting block 6. The upper threaded connecting block 6 has an upper sealing block connecting hole 21 inside. The main ventilation pipe 4 has a sealing block mounting column 23 inside. The sealing block mounting column 23 corresponds to the position of the upper threaded connecting block 6. A sealing block 24 is set on the top of the sealing block mounting column 23. The side of the sealing block 24 has a bottom limit block 25. The bottom of the sealing block 24 has a sealing block connecting sleeve 28. The sealing block connecting sleeve 28 is adapted to the sealing block mounting column 23. The sealing block connecting sleeve 28 is connected to the sealing block mounting column 23. The sealing block connecting sleeve 28 slides on the outside of the sealing block mounting column 23. The sealing block return spring 29 is sleeved on the outside of the sealing block mounting column 23.
[0025] Example 2:
[0026] The bottom of the sealing block reset spring 29 of this utility model is connected to the bottom of the sealing block mounting post 23, and the top of the sealing block reset spring 29 is connected to the bottom of the sealing block connecting sleeve 28. The sealing block 24 is adapted to the upper sealing block connecting hole 21 and is connected to the upper sealing block connecting hole 21. The sealing block 24 is inserted into the upper sealing block connecting hole 21. The top of the main ventilation pipe 4 is provided with multiple sets of heat dissipation ring support posts 7. The bottom of the heat dissipation ring support post 7 has a bottom support post mounting seat 18. The bottom support post mounting seat 18 is threadedly connected to the upper threaded connecting block 6 at the corresponding position. Multiple longitudinally arranged heat dissipation ring support posts 7 are provided between two adjacent sets of heat dissipation ring support posts 7. The heat dissipation ring 8 has inclined heat dissipation holes 10 inside. The side support column mounting platform 13 is adapted to the heat dissipation ring support column 7. The side support column mounting platform 13 is connected to the heat dissipation ring support column 7 and slides on the outside of the heat dissipation ring support column 7. The number and position of the side support column mounting platforms 13 correspond to the heat dissipation ring 8. The side of the side support column mounting platform 13 facing the heat dissipation ring 8 has a side support column 15. The heat dissipation ring 8 adopts a multi-ring design with multiple sets of inclined heat dissipation holes 10 inside. The airflow provided by the side circulation fan 2 is blown out from each inclined heat dissipation hole 10. The airflow is evenly distributed and the heat dissipation effect is better. The heat dissipation ring 8 has side column connecting cylinders 9 on both sides.
[0027] Example 3:
[0028] The side column connecting cylinder 9 of this utility model is adapted to the side support column 15. The side column connecting cylinder 9 is connected to the side support column 15 and slides on the outside of the side support column 15. The side of the side support column mounting platform 13 has a side screw mounting platform 20. The side screw mounting platform 20 is threadedly connected to the side mounting screw 14. The side mounting screw 14 is pressed against the side of the heat dissipation ring support column 7. The heat dissipation ring 8 has a hose connecting platform 11 on both the upper and lower sides. The hose connecting platform 11 at the top of the top heat dissipation ring 8 is connected to the upper protective cover 22. The upper protective cover 22 is inserted into the hose connecting platform 11 and fixed. The hose connecting platforms 11 between the upper and lower adjacent heat dissipation rings 8 are connected by a middle connecting hose 12. The bottom heat dissipation ring 8 has a bottom flexible hose mounting block 16 at its bottom. The bottom flexible hose mounting block 16 has a bottom connecting flexible hose 17 at its top. When the bottom flexible hose mounting block 16 is installed, the automatic connecting rod 26 presses the sealing block 24 into the upper heat dissipation block connecting pipe 5, allowing the airflow inside the main ventilation pipe 4 to freely pass through the side connecting groove 27 and the inner connecting groove 30 and finally flow into the bottom connecting flexible hose 17. When the bottom flexible hose mounting block 16 is pulled out, the sealing block 24 is inserted into the upper sealing block connecting hole 21 by the sealing block return spring 29. The upper sealing block connecting hole 21 is automatically closed, thereby simplifying the operation process of connecting and disassembling the bottom flexible hose mounting block 16 and further increasing the convenience of installing and disassembling this device.
[0029] Example 4:
[0030] The bottom heat dissipation ring 8 of this utility model has a hose connecting platform 11 at the bottom that connects to the bottom connecting hose 17. The bottom hose mounting block 16 is threadedly connected to the upper threaded connecting block 6 at the corresponding position. The bottom hose mounting block 16 has an automatic connecting rod 26 in the middle. The automatic connecting rod 26 has an inner connecting groove 30 inside. The inner connecting groove 30 has side connecting grooves 27 on both sides. The automatic connecting rod 26 is adapted to the upper sealing block connecting hole 21.
[0031] Example 5:
[0032] The automatic connecting rod 26 of this utility model is connected to the upper sealing block connecting hole 21. The automatic connecting rod 26 is inserted into the upper sealing block connecting hole 21. The sealing block 24 corresponding to the position of the bottom flexible hose mounting block 16 is not connected to the upper sealing block connecting hole 21. The top of the sealing block 24 corresponding to the position of the bottom flexible hose mounting block 16 is connected to the automatic connecting rod 26.
[0033] Example 6:
[0034] The installation steps of this utility model are as follows: Place the computer group 3 inside the computer room 1, set the main ventilation pipe 4 at the rear of the computer group 3, fix the side of the computer room 1 to the side circulation fan 2, connect one end of the main ventilation pipe 4 to the side circulation fan 2, put the sealing block connecting sleeve 28 of the sealing block 24 on the outside of the sealing block mounting post 23 of the main ventilation pipe 4, put the sealing block return spring 29 on the outside of the sealing block mounting post 23, connect the bottom of the sealing block return spring 29 to the bottom of the sealing block mounting post 23, connect the top of the sealing block return spring 29 to the bottom of the sealing block connecting sleeve 28, set multiple sets of heat dissipation ring support columns 7 on the upper part of the main ventilation pipe 4, and thread the bottom support column mounting base 18 of the heat dissipation ring support column 7 to the upper threaded connecting block 6 of the main ventilation pipe 4, put the side support column mounting platform 13 on the outside of the heat dissipation ring support column 7, and install the side mounting screw 14 on the side support column. The side screw mounting platform 20 of the platform 13 is threaded, so that the side mounting screw 14 is pressed against the side of the heat dissipation ring support column 7. The side column connecting sleeve 9 of the heat dissipation ring 8 is sleeved on the outside of the side support column 15 of the side support column mounting platform 13. The hose connecting platform 11 of the top of the top heat dissipation ring 8 is connected to the upper protective cover 22. The hose connecting platforms 11 between two adjacent heat dissipation rings are connected by the middle connecting hose 12. The hose connecting platform 11 of the bottom of the bottom heat dissipation ring 8 is connected to the bottom connecting hose 17 of the bottom hose mounting block 16. The bottom hose mounting block 16 is threaded to the upper threaded connecting block 6 at the corresponding position. The automatic connecting rod 26 of the bottom hose mounting block 16 is inserted into the upper sealing block connecting hole 21 of the main ventilation pipe 4. The automatic connecting rod 26 is pressed against the upper part of the sealing block 24, so that the sealing block 24 is pressed into the main ventilation pipe 4. The installation of this device is completed.
Claims
1. A novel computer room ventilation and heat dissipation device, characterized in that: The system includes a computer room (1), a side circulation fan (2), computer groups (3), a main ventilation pipe (4), a heat dissipation ring support column (7), and a heat dissipation ring (8). The side circulation fan (2) is connected to the side of the computer room (1). Multiple computer groups (3) are set inside the computer room (1). Multiple computer groups (3) are arranged side by side on the inner side of the wall of the computer room (1). The main ventilation pipe (4) is connected inside the computer room (1). The main ventilation pipe (4) is located at the rear of the computer group (3). One end of the main ventilation pipe (4) is connected to the side circulation fan (2). The top of the main ventilation pipe (4) has an upper heat dissipation block connecting pipe (5). Multiple upper heat dissipation block connecting pipes (5) are evenly arranged on the upper part of the main ventilation pipe (4). The top of the upper heat dissipation block connecting pipe (5) has an upper threaded connecting block (6). The upper threaded connecting block (6) has an upper sealing block connecting hole (21) inside.
2. The novel computer room ventilation and heat dissipation device according to claim 1, characterized in that: The main ventilation pipe (4) has a sealing block mounting post (23) inside. The sealing block mounting post (23) corresponds to the upper threaded connecting block (6). A sealing block (24) is set on the top of the sealing block mounting post (23). A bottom limit block (25) is set on the side of the sealing block (24). A sealing block connecting sleeve (28) is set at the bottom of the sealing block (24). The sealing block connecting sleeve (28) is adapted to the sealing block mounting post (23). The sealing block connecting sleeve (28) is connected to the sealing block mounting post (23). The sealing block connecting sleeve (28) slides on the outside of the sealing block mounting post (23). The sealing block reset spring (29) is sleeved on the outside of the sealing block mounting post (23).
3. The novel computer room ventilation and heat dissipation device according to claim 2, characterized in that: The bottom of the sealing block reset spring (29) is connected to the bottom of the sealing block mounting post (23), the top of the sealing block reset spring (29) is connected to the bottom of the sealing block connecting sleeve (28), the sealing block (24) is adapted to the upper sealing block connecting hole (21), the sealing block (24) is connected to the upper sealing block connecting hole (21), the sealing block (24) is inserted into the upper sealing block connecting hole (21), the top of the main ventilation pipe (4) is provided with multiple sets of heat dissipation ring support columns (7), the bottom of the heat dissipation ring support column (7) has a bottom support column mounting seat (18), the bottom support column mounting seat (18) is threadedly connected to the upper threaded connecting block (6) at the corresponding position, and multiple longitudinally arranged heat dissipation rings (8) are provided between two sets of adjacent heat dissipation ring support columns (7).
4. The novel computer room ventilation and heat dissipation device according to claim 3, characterized in that: The heat dissipation ring (8) has inclined heat dissipation holes (10) inside. The side support column mounting platform (13) is adapted to the heat dissipation ring support column (7). The side support column mounting platform (13) is connected to the heat dissipation ring support column (7). The side support column mounting platform (13) slides on the outside of the heat dissipation ring support column (7). The number and position of the side support column mounting platforms (13) correspond to the heat dissipation ring (8). The side of the side support column mounting platform (13) facing the heat dissipation ring (8) has a side support column (15). The heat dissipation ring (8) has side column connecting cylinders (9) on both sides.
5. The novel computer room ventilation and heat dissipation device according to claim 4, characterized in that: The side column connecting cylinder (9) is adapted to the side support column (15). The side column connecting cylinder (9) is connected to the side support column (15). The side column connecting cylinder (9) slides on the outside of the side support column (15). The side support column mounting platform (13) has a side screw mounting platform (20) on its side. The side screw mounting platform (20) is threadedly connected to the side mounting screw (14). The side mounting screw (14) is pressed against the side of the heat dissipation ring support column (7). The heat dissipation ring (8) has a hose connecting platform (11) on both the upper and lower sides. The hose connecting platform (11) at the top of the heat dissipation ring (8) is connected to the upper protective cover (22). The upper protective cover (22) is inserted into the hose connecting platform (11) and fixed. The hose connecting platforms (11) between the two adjacent heat dissipation rings (8) are connected by the middle connecting hose (12). The bottom of the heat dissipation ring (8) is provided with a bottom hose mounting block (16). The bottom hose mounting block (16) has a bottom connecting hose (17) at its top.
6. The novel computer room ventilation and heat dissipation device according to claim 3, characterized in that: The bottom heat dissipation ring (8) has a hose connection platform (11) at the bottom that connects to the bottom connecting hose (17). The bottom hose mounting block (16) is threadedly connected to the corresponding upper threaded connecting block (6). The bottom hose mounting block (16) has an automatic connecting rod (26) in the middle. The automatic connecting rod (26) has an inner connecting groove (30) inside. The inner connecting groove (30) has side connecting grooves (27) on both sides. The automatic connecting rod (26) is adapted to the upper sealing block connecting hole (21).
7. The novel computer room ventilation and heat dissipation device according to claim 3, characterized in that: The automatic connecting rod (26) is connected to the upper sealing block connecting hole (21). The automatic connecting rod (26) is inserted into the upper sealing block connecting hole (21). The sealing block (24) corresponding to the position of the bottom hose mounting block (16) is not connected to the upper sealing block connecting hole (21). The top of the sealing block (24) corresponding to the position of the bottom hose mounting block (16) is connected to the automatic connecting rod (26).