Cooling fan energy-saving control system
By designing the energy-saving control system of the heat dissipation fan with the hoisting port and the cooling mechanism, the high energy consumption and hoisting safety problems of the traditional system are solved, stable hoisting and temperature control of the equipment are achieved, energy consumption is reduced and the equipment life is extended.
Patent Information
- Application Number
- CN202422984070.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Traditional cooling fan systems lack the ability to intelligently monitor and comprehensively analyze multiple parameters, and are unable to accurately perceive temperature distribution and air flow in real time, resulting in high energy consumption and the lifting device is easily bumped and damaged.
A cooling fan energy-saving control system was designed, which includes a lifting port, a rotating column, a lifting ring, a triangular block, a track, a spring, a baffle and a cooling mechanism. The temperature is monitored in real time by a temperature detector and the fan speed is automatically controlled. The dustproof net and rubber block are combined to improve the stability and safety of the equipment.
It achieves stable lifting and safety of equipment, reduces energy consumption, ensures a suitable temperature environment in the machine room, reduces manual operation time, and improves the service life and operating efficiency of equipment.
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Figure CN223411080U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mechanical control, in particular to an energy-saving control system for a heat dissipation fan. Background Art
[0002] With the rapid development of the global economy, energy consumption continues to rise, while traditional energy resources are limited and non-renewable. In industrial production, commercial building operations, and data centers, electricity consumption accounts for a huge proportion. The operation of servers in data centers requires continuous heat dissipation. As one of the main heat dissipation methods, the energy consumption of cooling fans cannot be ignored. Traditional systems lack the ability to intelligently monitor and comprehensively analyze multiple parameters in the heat dissipation process, and cannot accurately perceive the key information of the temperature distribution, ambient temperature, humidity, and air flow of the heat dissipated equipment in real time, and cannot make refined control strategy adjustments based on this information.
[0003] A search revealed Chinese patent publication number CN218446465U, which discloses an energy-saving heat dissipation control system, belonging to the field of heat dissipation control. The control system comprises a PLC control system, a temperature detection module connected to the PLC control system, and at least one variable-frequency fan unit connected to the PLC control system. The PLC control system comprises a PLC controller, a data storage unit bidirectionally connected to the PLC controller, and a parameter setting unit connected to an input of the PLC controller. The temperature detection module is connected to the input of the PLC controller. The control system matches the ambient temperature within the platform with pre-stored temperature level thresholds to determine the exhaust volume required for cooling. The PLC controller controls the variable-frequency fan to intelligently control its state by changing its speed. This achieves energy-saving control while also reducing noise generated by the fan's operation by controlling its maximum allowable speed, thereby achieving noise reduction control. However, this utility model fails to consider that the device's lifting device needs to be installed on the outside. However, the protruding portion of the lifting device can easily bump into other objects, causing economic losses. Utility Model Content
[0004] In order to make up for the above shortcomings, the utility model provides a heat dissipation fan energy-saving control system, which aims to improve the problem in the prior art that the lifting device needs to be installed on the outside, but the protruding part of the lifting device is easy to bump into other objects, causing economic losses.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a heat dissipation fan energy-saving control system, including a machine room, the front side of the machine room is fixedly connected to a lifting port, the front side of the lifting port is rotatably connected to a rotating column, the front side of the rotating column is fixedly connected to a lifting ring, the upper and lower sides of the outer wall of the lifting ring are fixedly connected to triangular blocks, a groove is provided on the right side of the front end of the lifting port, rails are provided on the upper and lower sides of the front end of the lifting port, the upper and lower sides of the inside of the lifting port are fixedly connected to springs, the bottom end of the spring is fixedly connected to a baffle, the front side of the baffle is fixedly connected to a fixed column, and a cooling mechanism is provided inside the machine room, and the cooling mechanism is used to cool the device.
[0006] Through the above technical solution: the front end of the machine room is fixedly connected with a lifting port, which is not only firmly fixed on the front side of the machine room, but also takes into account the needs of easy operation and maintenance in terms of structure. The front end of the lifting port is rotatably connected with a rotating column to ensure the convenience of lifting operation. The front end of the rotating column is fixedly connected with a lifting ring, which not only enhances the practicality of the lifting port, but also reflects the emphasis on safety. The triangular block not only enhances the stability of the structure, but also provides an additional gripping point for lifting operations, ensuring the safety of operation. A groove is opened on the right side of the front end of the lifting port, taking into account the additional space that may be required during the lifting process to accommodate lifting tools of different sizes. The track enables the lifting port to be connected with other equipment in the machine room. Or structure to achieve precise docking, improve the overall compatibility and operational efficiency, the spring is designed to provide the necessary elastic force to cushion the impact during lifting and protect the precision equipment in the computer room from damage, the baffle further ensures the safety of the lifting operation and prevents accidental slippage that may occur during the lifting process, the front side of the baffle is fixed with a fixed column, which provides a stable support point for the lifting operation and enhances the reliability of the entire lifting system. The cooling mechanism fully reflects the importance attached to the operating environment of the equipment in the computer room. The purpose of the cooling mechanism is to effectively reduce the temperature in the computer room, ensure that the equipment operates at an appropriate temperature, extend the service life of the equipment, and at the same time ensure the stability of the environment in the computer room and the safety of the staff.
[0007] As a further description of the above technical solution:
[0008] The cooling mechanism includes a temperature detector, the inner bottom end of the machine room is fixedly connected to the bottom end of the temperature detector, the outer wall of the temperature detector is electrically connected to a temperature signal circuit, the left end of the temperature signal circuit is electrically connected to a fan control box, the front side of the fan control box is electrically connected to a fan power supply circuit, the front left end of the machine room is fixedly connected to a protective shell, and the rear side of the inner wall of the protective shell is rotatably connected to a fan.
[0009] Through the above technical solution: the inner bottom of the computer room is fixedly connected to the bottom of the temperature detector, ensuring the stability and conduction efficiency between the two, the outer wall of the temperature detector is electrically connected to the temperature signal circuit, so that temperature changes can be transmitted quickly and accurately, the left side of the temperature signal circuit is electrically connected to the fan control box, ensuring lossless transmission of the signal and immediate response of the fan, the front end of the fan control box is electrically connected to the fan power circuit, providing continuous power support for the operation of the fan, the front left end of the computer room is fixedly connected to the protective shell, the protective shell not only provides physical protection for the internal equipment, but also the rear side of its inner wall is connected to the fan rotation, ensuring flexible operation and efficient heat dissipation of the fan.
[0010] As a further description of the above technical solution:
[0011] The top of the machine room is fixedly connected with a decorative strip, and the four corners of the bottom end of the machine room are fixedly connected with a plurality of chassis.
[0012] Through the above technical solution: the top of the computer room is fixedly connected to the decorative strips, and the four corners of the bottom of the computer room are fixedly connected with multiple chassis, ensuring the stability and durability of the entire structure.
[0013] As a further description of the above technical solution:
[0014] A plurality of sponge blocks are fixedly connected to the left side of the top of the machine room, and a plurality of rubber blocks are fixedly connected to the right side of the top of the machine room.
[0015] Through the above technical solution: a number of sponge blocks are fixedly connected to the left side of the top of the machine room. The sponge blocks not only serve as decoration, but also can effectively absorb noise. A number of rubber blocks are fixedly connected to the right side of the top of the machine room. The rubber blocks not only have good shockproof performance, but also can protect the machine room from external vibrations, ensuring the smooth and safe operation of the equipment.
[0016] As a further description of the above technical solution:
[0017] A dust screen is fixedly connected to the left end of the front side of the machine room, and a logo is fixedly connected to the rear side of the machine room.
[0018] Through the above technical solution: a dustproof net is fixedly connected to the left end of the front end of the computer room. Taking into account the air quality requirements of the equipment inside the computer room, the dustproof net can effectively block external dust and impurities, keep the internal environment of the computer room clean, thereby reducing equipment failure rate and improving operating efficiency. The label provides clear identification information for the computer room.
[0019] As a further description of the above technical solution:
[0020] A connecting ring is fixedly connected to the front side of the fan control box, and a fixing ring is fixedly connected to the bottom end of the outer wall of the temperature detector.
[0021] Through the above technical solution: it is fixedly connected to the bottom end of the fan control box at the inner rear side of the machine room to ensure its stability during operation. The bottom end of the outer wall of the temperature detector is fixedly connected with a fixing ring, which not only enhances the stability of the temperature detector, but also facilitates its rapid disassembly and maintenance when necessary.
[0022] As a further description of the above technical solution:
[0023] The rear side of the fan is electrically connected to the front end of the fan power supply circuit, and the bottom end of the fan control box is fixedly connected to the inner rear side of the machine room.
[0024] Through the above technical solution: the rear side of the fan is electrically connected to the front end of the fan power circuit, ensuring that the fan can receive power efficiently, thereby providing a continuous cooling effect for the computer room.
[0025] As a further description of the above technical solution:
[0026] The outer side of the baffle is slidably connected to the inner side of the hoisting opening, and the outer wall of the fixing column is slidably connected to the inner wall of the track.
[0027] Through the above technical solution: the outer side of the baffle is slidably connected to the inner side of the lifting port, so that the baffle can be flexibly adjusted to adapt to different work requirements, and the outer wall of the fixed column is slidably connected to the inner wall of the track, ensuring the stable movement and positioning of the equipment on the track.
[0028] The utility model has the following beneficial effects:
[0029] 1. In the utility model, pulling the fixed column drives the baffle to move upward and squeezes the spring, so that the lifting ring can be pulled out of the groove and drives the rotating column to rotate, and the hook can be hung into the lifting ring to lift the equipment. After the equipment reaches the specified position, the lifting ring is pushed back into the groove, and the triangular block pushes the baffle to move upward and causes the spring to deform and generate elastic force. When the triangular block completely enters the groove, the spring will bounce the baffle back to ensure that the triangular block and the lifting ring are clamped, thereby realizing the movement of the device position. The retractable lifting ring also reduces the space occupied by the equipment and prevents scratches from protruding parts.
[0030] 2. In the present invention, the temperature detector can detect the temperature of the environment in the computer room in real time, and automatically convert the ambient temperature into an analog signal through the temperature signal circuit and input it into the fan control box, which drives the fan to run. The temperature analog signal output by the temperature detector is divided into low temperature, medium temperature and high temperature signals. After the different temperature signals are transmitted to the fan control box, the fan control box drives the fan to run at different speeds, thereby controlling the heat dissipation speed of the computer room and ensuring a suitable ambient temperature in the computer room. After the corresponding parameters are set during equipment installation, unmanned automatic operation can be achieved, which can greatly reduce the loss of manual working hours. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 This is a three-dimensional diagram of the front side of the machine room of a heat dissipation fan energy-saving control system proposed in the utility model;
[0032] Figure 2 This is a side view of a decorative strip of a heat dissipation fan energy-saving control system proposed in the utility model;
[0033] Figure 3 This is a partial structural diagram of the protective shell of a heat dissipation fan energy-saving control system proposed in this utility model;
[0034] Figure 4 This is a diagram showing the local structure of the groove of a heat dissipation fan energy-saving control system proposed in this utility model;
[0035] Figure 5 This is a partial structural breakdown diagram of the lifting port of a heat dissipation fan energy-saving control system proposed in this utility model.
[0036] Legend:
[0037] 1. Computer room; 2. Cooling mechanism; 201. Temperature detector; 202. Temperature signal circuit; 203. Fan control box; 204. Fan power circuit; 205. Fan; 206. Protective shell; 3. Lifting port; 4. Rotating column; 5. Lifting ring; 6. Groove; 7. Triangular block; 8. Track; 9. Fixed column; 10. Spring; 11. Baffle; 12. Dust net; 13. Rubber block; 14. Sponge block; 15. Chassis; 16. Decorative strip; 17. Logo; 18. Connecting ring; 19. Fixed ring. DETAILED DESCRIPTION
[0038] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0039] Please see the attached Figure 1 , Attachment Figure 4 and attached Figure 5 , the utility model provides an embodiment: a heat dissipation fan energy-saving control system, including a machine room 1, a front side of the machine room 1 is fixedly connected with a lifting port 3, the front side of the lifting port 3 is rotatably connected with a rotating column 4, the front side of the rotating column 4 is fixedly connected with a lifting ring 5, the upper and lower sides of the outer wall of the lifting ring 5 are fixedly connected with triangular blocks 7, a groove 6 is provided on the right side of the front end of the lifting port 3, and rails 8 are provided on the upper and lower sides of the front end of the lifting port 3. The upper and lower sides of the interior of the lifting port 3 are fixedly connected with springs 10, the bottom end of the spring 10 is fixedly connected with a baffle 11, and the front side of the baffle 11 is fixedly connected with a fixed column 9. A cooling mechanism 2 is provided inside the machine room 1, and the cooling mechanism 2 is used to cool the device. A dustproof net 12 is fixedly connected to the left end of the front side of the machine room 1, and a logo 17 is fixedly connected to the rear side of the machine room 1;
[0040] Specifically, the front end of the machine room 1 is fixedly connected with a lifting port 3, which is not only firmly fixed on the front side of the machine room 1, but also takes into account the needs of easy operation and maintenance in terms of structure. The front end of the lifting port 3 is rotatably connected with a rotating column 4, ensuring the convenience of lifting operation. The front end of the rotating column 4 is fixedly connected with a lifting ring 5, which not only enhances the practicality of the lifting port 3, but also reflects the emphasis on safety. The triangular block 7 not only enhances the stability of the structure, but also provides an additional gripping point for lifting operation, ensuring the safety of operation. A groove 6 is provided on the right side of the front end of the lifting port 3, taking into account the additional space that may be required during the lifting process to accommodate lifting tools of different sizes. The track 8 enables the lifting port 3 to be accurately docked with other equipment or structures in the machine room 1, thereby improving the overall compatibility and operating efficiency. The spring 10 is intended to provide the necessary elastic force to cushion the impact force during the lifting process and protect the machine The precision equipment in room 1 is not damaged. The baffle 11 further ensures the safety of the lifting operation and prevents accidental slippage that may occur during the lifting process. The front side of the baffle 11 is fixed with a fixed column 9, which provides a stable support point for the lifting operation and enhances the reliability of the entire lifting system. The cooling mechanism 2 fully reflects the importance attached to the equipment operating environment in the computer room 1. The purpose of the cooling mechanism 2 is to effectively reduce the temperature in the computer room 1, ensure that the equipment operates at an appropriate temperature, extend the service life of the equipment, and at the same time ensure the stability of the environment in the computer room 1 and the safety of the staff. A dustproof net 12 is fixedly connected to the front left end of the computer room 1. Taking into account the air quality requirements of the equipment inside the computer room 1, the dustproof net 12 can effectively block external dust and impurities, keep the internal environment of the computer room 1 clean, thereby reducing equipment failure rate and improving operating efficiency. The mark 17 provides clear information for the computer room 1.
[0041] Please see the attached Figure 1 and attached Figure 3The cooling mechanism 2 includes a temperature detector 201. The inner bottom end of the machine room 1 is fixedly connected to the bottom end of the temperature detector 201. The outer wall of the temperature detector 201 is electrically connected to a temperature signal line 202. The left end of the temperature signal line 202 is electrically connected to a fan control box 203. The front side of the fan control box 203 is electrically connected to a fan power line 204. The front left end of the machine room 1 is fixedly connected to a protective shell 206. The rear side of the inner wall of the protective shell 206 is rotatably connected to a fan 205. The outer side of the baffle 11 is slidably connected to the inner side of the lifting port 3. The outer wall of the fixed column 9 is slidably connected to the inner wall of the track 8.
[0042] Specifically, the inner bottom end of the machine room 1 is fixedly connected to the bottom end of the temperature detector 201, ensuring the stability and conduction efficiency between the two. The outer wall of the temperature detector 201 is electrically connected to the temperature signal line 202, so that temperature changes can be transmitted quickly and accurately. The left side of the temperature signal line 202 is electrically connected to the fan control box 203, ensuring lossless transmission of the signal and immediate response of the fan. The front end of the fan control box 203 is electrically connected to the fan power line 204, providing continuous power support for the operation of the fan. The front left end of the machine room 1 is fixedly connected to the protective shell 206. The protective shell 206 not only provides physical protection for the internal equipment, but also the rear side of its inner wall is rotatably connected to the fan 205, ensuring flexible operation and efficient heat dissipation of the fan 205. The outer side of the baffle 11 is slidably connected to the inner side of the lifting port 3, so that the baffle 11 can be flexibly adjusted to adapt to different work requirements. The outer wall of the fixed column 9 is slidably connected to the inner wall of the track 8, ensuring stable movement and positioning of the equipment on the track 8.
[0043] Please see the attached Figure 1 , Attachment Figure 2 and attached Figure 3 , the top of the machine room 1 is fixedly connected with a decorative strip 16, the four corners of the bottom end of the machine room 1 are fixedly connected with multiple chassis 15, the top left side of the machine room 1 is fixedly connected with multiple sponge blocks 14, and the top right side of the machine room 1 is fixedly connected with multiple rubber blocks 13;
[0044] Specifically, the top of the machine room 1 is fixedly connected to the decorative strip 16, and multiple chassis 15 are fixedly connected to the four corners of the bottom of the machine room 1, ensuring the stability and durability of the entire structure. Multiple sponge blocks 14 are fixedly connected to the left side of the top of the machine room 1. The sponge blocks 14 not only serve as decoration, but also can effectively absorb noise, creating a quieter working environment inside the machine room 1. Multiple rubber blocks 13 are fixedly connected to the right side of the top of the machine room 1. The rubber blocks 13 not only have good shockproof performance, but also can protect the machine room 1 from external vibrations, ensuring the smooth and safe operation of the equipment.
[0045] Please see the attached Figure 1 , Attachment Figure 2 and attached Figure 3 , the front side of the fan control box 203 is fixedly connected to the connecting ring 18, the bottom end of the outer wall of the temperature detector 201 is fixedly connected to the fixing ring 19, the rear side of the fan 205 is electrically connected to the front end of the fan power line 204, and the bottom end of the fan control box 203 is fixedly connected to the inner rear side of the machine room 1;
[0046] Specifically, it is fixedly connected to the bottom end of the fan control box 203 at the inner rear side of the machine room 1, ensuring its stability during operation. The bottom end of the outer wall of the temperature detector 201 is fixedly connected with a fixing ring 19, which not only enhances the stability of the temperature detector 201, but also facilitates its rapid disassembly and maintenance when necessary. The rear side of the fan 205 is electrically connected to the front end of the fan power line 204, ensuring that the fan 205 can receive electricity efficiently, thereby providing a continuous cooling effect for the machine room 1.
[0047] Working principle: When the equipment needs to be lifted, pull the fixed column 9 upward, the fixed column 9 will drive the baffle 11 to move upward together, and squeeze the spring 10, causing it to deform and generate elastic force, and then the lifting ring 5 can be pulled out of the groove 6, and the lifting ring 5 will drive the rotating column 4 to rotate, and then the hook is placed into the lifting ring 5, and the equipment can be lifted. When the specified position is reached, push the lifting ring 5 into the groove 6, and the triangular block 7 will push the baffle 11 to move upward. When the triangular block 7 is completely in the groove 6, the elastic force of the spring 10 will pop the baffle 11 out of the inside of the lifting port 3, and clamp the triangular block 7 and the lifting ring 5 inside the groove 6, thereby realizing the movement of the device position, and the retractable lifting ring 5 also reduces the space occupied by the equipment and prevents scratches from protruding parts.
[0048] A temperature detector 201 is set inside the computer room 1. The temperature detector 201 can detect the temperature of the environment in the computer room 1 in real time, and automatically convert the ambient temperature into an analog signal through the temperature signal line 202 and input it into the fan control box 203. The fan control box 203 drives the fan 205 to run through the fan power line 204. The temperature analog signal output by the temperature detector 201 is divided into low temperature, medium temperature and high temperature signals. After different temperature signals are transmitted to the fan control box 203, the fan control box 203 drives the fan 205 to run at different speeds, thereby controlling the heat dissipation speed of the computer room 1, ensuring the appropriate ambient temperature of the computer room 1, and maximizing energy saving. After the corresponding parameters are set during equipment installation, unmanned automatic operation can be achieved, which can greatly reduce the loss of manual working hours.
[0049] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A heat dissipation fan energy-saving control system, comprising a machine room (1), characterized in that: The front side of the machine room (1) is fixedly connected to a lifting port (3), the front side of the lifting port (3) is rotatably connected to a rotating column (4), the front side of the rotating column (4) is fixedly connected to a lifting ring (5), the upper and lower sides of the outer wall of the lifting ring (5) are fixedly connected to triangular blocks (7), a groove (6) is provided on the right side of the front end of the lifting port (3), the upper and lower sides of the front end of the lifting port (3) are provided with rails (8), the upper and lower sides of the interior of the lifting port (3) are fixedly connected to springs (10), the bottom end of the spring (10) is fixedly connected to a baffle (11), the front side of the baffle (11) is fixedly connected to a fixed column (9), and a cooling mechanism (2) is provided inside the machine room (1), and the cooling mechanism (2) is used to cool the device.
2. The heat dissipation fan energy-saving control system according to claim 1, characterized in that: The cooling mechanism (2) comprises a temperature detector (201), the inner bottom end of the machine room (1) is fixedly connected to the bottom end of the temperature detector (201), the outer wall of the temperature detector (201) is electrically connected to a temperature signal circuit (202), the left end of the temperature signal circuit (202) is electrically connected to a fan control box (203), the front side of the fan control box (203) is electrically connected to a fan power circuit (204), the left end of the front side of the machine room (1) is fixedly connected to a protective shell (206), and the rear side of the inner wall of the protective shell (206) is rotatably connected to a fan (205).
3. The heat dissipation fan energy-saving control system according to claim 1, characterized in that: A decorative strip (16) is fixedly connected to the top of the machine room (1), and a plurality of chassis (15) are fixedly connected to the four corners of the bottom end of the machine room (1).
4. The heat dissipation fan energy-saving control system according to claim 1, characterized in that: A plurality of sponge blocks (14) are fixedly connected to the left side of the top of the machine room (1), and a plurality of rubber blocks (13) are fixedly connected to the right side of the top of the machine room (1).
5. The heat dissipation fan energy-saving control system according to claim 1, characterized in that: A dust screen (12) is fixedly connected to the left end of the front side of the machine room (1), and a logo (17) is fixedly connected to the rear side of the machine room (1).
6. The heat dissipation fan energy-saving control system according to claim 2, characterized in that: A connecting ring (18) is fixedly connected to the front side of the fan control box (203), and a fixing ring (19) is fixedly connected to the bottom end of the outer wall of the temperature detector (201).
7. The heat dissipation fan energy-saving control system according to claim 2, characterized in that: The rear side of the fan (205) is electrically connected to the front end of the fan power supply circuit (204), and the bottom end of the fan control box (203) is fixedly connected to the inner rear side of the machine room (1).
8. The heat dissipation fan energy-saving control system according to claim 1, characterized in that: The outer side of the baffle (11) is slidably connected to the inner side of the hoisting opening (3), and the outer wall of the fixing column (9) is slidably connected to the inner wall of the track (8).
Citation Information
Patent Citations
Energy-saving heat dissipation control system
CN218446465U