A hardware device installation and application protection device for cloud computing
By designing floor stands, water cooling mechanisms and heat absorption mechanisms in cloud computing hardware equipment, and using water cooling and evaporative heat dissipation technologies, the problem of excessive heat in cloud computing hardware facilities is solved, and efficient heat dissipation and energy savings are achieved.
Patent Information
- Application Number
- CN202011283745.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-17
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2040-11-17
AI Technical Summary
In the prior art, the heat of cloud computing hardware facilities is too high and there is a lack of effective heat dissipation and maintenance methods, which leads to hardware equipment that can only operate in high-temperature, humid and hot environments and requires a large amount of energy resources.
Design a protective equipment for installation and application of cloud computing hardware equipment, including floor stand, water cooling mechanism and heat absorption mechanism. The water cooling mechanism uses low-temperature purified water to dissipate heat by combining cooling pads, main output tubes and special-shaped tubes; the heat absorption mechanism achieves efficient heat absorption and consumption through the evaporation process of driving the impeller, gear and coolant.
It effectively reduces the temperature of hardware equipment, improves heat dissipation efficiency, reduces energy consumption, and maintains the stable operation of hardware equipment in high-temperature, humid and heat environments.
Smart Images

Figure CN112363602B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of cloud computing hardware facility application protection technology, and in particular to a cloud computing hardware device installation application protection device. Background Art
[0002] Cloud computing is a type of distributed computing, which means that huge data computing programs are decomposed into countless small programs through the network "cloud", and then these small programs are processed and analyzed through a system composed of multiple servers to obtain the results and return them to the user. In the early development process, simply put, it is a simple distributed computing that solves task distribution and merges the calculation results. Through this technology, tens of thousands of data can be processed in a few seconds, thus achieving powerful network services. "Cloud" is essentially a network. In a narrow sense, cloud computing is a network that provides resources. Users can obtain resources on the "cloud" at any time and use them according to demand. It can be regarded as infinitely expandable and can be paid for as long as it is used; in a broad sense, cloud computing is a service related to information technology, software, and the Internet. This computing resource sharing pool is called "cloud". Cloud computing brings together many computing resources and realizes automated management through software. Only a few people are required to quickly provide resources.
[0003] With the continuous development of science and technology, cloud services at this stage are no longer just a kind of distributed computing, but the result of the mixed evolution and leap of computer technologies such as distributed computing, utility computing, load balancing, parallel computing, network storage, hot backup redundancy and virtualization. The expansion of functions and roles also benefits from the progress of hardware equipment. The hardware equipment of cloud computing mainly refers to data centers, which include not only computer servers, communication equipment and storage equipment, but also redundant data communication connections, environmental monitoring equipment, management systems and various safety devices. Compared with traditional computer architecture, the hardware of cloud computing is very scattered and independent. Accordingly, in order to adapt to this change, it is applied. It can be said that virtualization and distribution are the key technologies of cloud computing. Only by running the hardware facilities at an extremely high speed and intricate speed can the requirements for realizing the above-mentioned functions be met. In this way, the hardware equipment will generate a large amount of load accordingly, with high-temperature heat being the most obvious. Under the existing technology, air cooling is mostly adopted to cool and dissipate the heat. However, because the above-mentioned hardware equipment is highly concentrated and generates a lot of heat for a long time, the use of a single air cooling method not only has limited effect, resulting in the hardware equipment being able to operate and work only in a high temperature and humid environment, but also requires a large amount of energy resources, which is inconsistent with the original intention of civilization development. Summary of the invention
[0004] The object of the present invention is to solve the problem of excessive heat and lack of heat dissipation maintenance in the hardware facilities for cloud computing in the prior art, and to propose a hardware device installation application protection device for cloud computing.
[0005] To achieve the above object, the present invention adopts the following technical solutions:
[0006] A hardware device installation application protection device for cloud computing, including a floor stand, on which a water cooling mechanism and a heat absorption mechanism are respectively arranged;
[0007] The water cooling mechanism includes a cooling base plate fixedly arranged inside the lower end of the floor stand, and a main output pipe fixedly connected to the lower end of the cooling base plate and penetrating through the floor stand. A underground water tank for filling pure water is fixedly connected to the main output pipe. Special-shaped pipes connected to the cooling base plate and the main output pipe are fixedly installed on both sides of the floor stand. A first one-way valve and a second one-way valve are respectively installed on the special-shaped pipes, and a heat conduction frame is fixedly sleeved on the upper end of the special-shaped pipes;
[0008] The heat absorption mechanism includes a storage tank fixedly arranged on the upper end of the cooling base plate and filled with a coolant, and a curved pipe fixedly connected to the storage tank. A cooling bearing plate corresponding to the upper end of the curved pipe is fixedly arranged on the storage tank. A driving impeller is rotatably arranged in the lower end of the special-shaped pipe, and a first rotating shaft and a second rotating shaft are respectively rotatably arranged in the floor stand. A first gear and a second gear are respectively fixedly sleeved on the driving impeller and the first rotating shaft, and a third gear and a fourth gear which are meshed are respectively fixedly sleeved on the first rotating shaft and the second rotating shaft. A turntable is fixedly connected to the second rotating shaft. A traction rod is rotatably connected to the turntable, and a boosting piston slidably sleeved inside the lower end of the curved pipe is pin-connected to the lower end of the traction rod.
[0009] Preferably, the cooling base plate and the main output pipe are respectively arranged horizontally and vertically, and the underground water tank is connected to the lower end of the main output pipe extending outside the floor stand.
[0010] Preferably, the first one-way valve is located at the upper end position where the special-shaped pipe is connected to the cooling base plate, and the second one-way valve is located at the lower end position where the special-shaped pipe is connected to the main output pipe.
[0011] Preferably, the first rotating shaft is vertically arranged at the lower end of the floor stand, and the second rotating shaft is horizontally arranged at the middle end of the floor stand.
[0012] Preferably, both the first gear and the second gear are flat gears, and both the third gear and the fourth gear are bevel gears.
[0013] Preferably, the coolant is an ethylene glycol - aqueous solution with a concentration of 33% - 37%.
[0014] Compared with the prior art, the present invention has the following advantages:
[0015] 1. The present invention provides a hollow cooling pad and a main output pipe in the floor stand, facilitating the installation of an underground water tank underground. An abnormal-shaped pipe with a first one-way valve and a second one-way valve is connected between the cooling pad and the main output pipe. A heat conduction frame for absorbing heat from the hardware device is provided on the abnormal-shaped pipe, heating the low-temperature pure water in the abnormal-shaped pipe to achieve a water-cooling heat dissipation effect of consuming heat.
[0016] 2. The present invention sets a continuously rotatable drive impeller in the abnormal-shaped pipe by using the pure water flowing in a specific direction. The continuous rotation of the turntable is driven by the meshing connection of the first gear and the second gear, and the third gear and the fourth gear, driving the telescopic movement of the pressurizing piston in the curved pipe, thereby squeezing the coolant to spray onto the cooling bearing plate, and accelerating the heat consumption of the hardware device by the evaporation heat absorption of the ethylene glycol - aqueous solution.
[0017] In summary, the present invention provides a hollow cooling pad and a main output pipe in the floor stand, facilitating the installation of an underground water tank underground. An abnormal-shaped pipe with a first one-way valve and a second one-way valve is connected between the cooling pad and the main output pipe. A heat conduction frame for absorbing heat from the hardware device is provided on the abnormal-shaped pipe to use the low-temperature abnormal-shaped pipe to cool the high-temperature hardware device by cold compress; a continuously rotatable drive impeller is set in the abnormal-shaped pipe by using the pure water flowing in a specific direction, and the continuous rotation of the turntable is driven by the second rotating shaft, driving the telescopic movement of the pressurizing piston in the curved pipe, thereby squeezing the coolant to spray onto the cooling bearing plate, enabling the evaporation process of the ethylene glycol - aqueous solution to efficiently and comprehensively absorb and consume the high-temperature heat of the hardware device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of a hardware device installation and application protection device for cloud computing proposed by the present invention;
[0019] Figure 2 is an enlarged schematic diagram of part A of the hardware device installation and application protection device for cloud computing proposed by the present invention;
[0020] Figure 3 is an enlarged schematic diagram of part B of the hardware device installation and application protection device for cloud computing proposed by the present invention;
[0021] Figure 4 is a schematic structural diagram of the floor stand of the hardware device installation and application protection device for cloud computing proposed by the present invention;
[0022] Figure 5 is a schematic diagram of the connection structure of the drive impeller, the first bracket and the second bracket of the hardware device installation and application protection device for cloud computing proposed by the present invention;
[0023] Figure 6 Schematic diagram of the connection structure between the curved pipe and the booster piston of a hardware device installation and application protection device for cloud computing proposed by the present invention.
[0024] In the figure: 1 floor bracket, 2 cooling base plate, 3 main output pipe, 4 underground water tank, 5 special-shaped pipe, 6 first check valve, 7 second check valve, 8 heat conduction frame, 9 storage tank, 10 curved pipe, 11 cooling bearing plate, 12 driving impeller, 13 first rotating shaft, 14 second rotating shaft, 15 first gear, 16 second gear, 17 third gear, 18 fourth gear, 19 turntable, 20 traction rod, 21 booster piston. Specific implementation manners
[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0026] Referring to Figure 1-6 , a hardware device installation and application protection device for cloud computing, including a floor bracket 1, the floor bracket 1 is of a U-shaped structure, and is fixedly installed in a ground groove structure. A water cooling mechanism and a heat absorption mechanism are respectively arranged on the floor bracket 1;
[0027] The water cooling mechanism includes a cooling base plate 2 fixedly arranged inside the lower end of the floor bracket 1, and a main output pipe 3 fixedly connected to the lower end of the cooling base plate 2 and penetrating through the floor bracket 1. A underground water tank 4 for filling purified water is fixedly connected to the main output pipe 3. The underground water tank 4 is buried deep in the ground at a depth of 1.2 m - 2 m, so as to cool the purified water in the underground water tank 4 by means of the low temperature conditions underground, so as to realize the repeated cooling effect of the purified water. And special-shaped pipes 5 connected to the cooling base plate 2 and the main output pipe 3 are fixedly installed on both sides of the floor bracket 1. A first check valve 6 and a second check valve 7 are respectively installed on the special-shaped pipes 5. By installing the first check valve 6 and the second check valve 7, the flow direction of the purified water in the special-shaped pipes 5 is controlled to ensure the directional flow of the purified water. And a heat conduction frame 8 is fixedly sleeved on the upper end of the special-shaped pipe 5. Through the heat conduction frame 8, the high-temperature heat on the hardware device can be transferred to the purified water in the special-shaped pipe 5, so as to promote the reflux movement of the purified water due to the temperature difference, and then use the low-temperature purified water to cool the special-shaped pipe 5 to perform cold compress on the hardware device;
[0028] The heat absorption mechanism includes a storage tank 9 fixedly arranged at the upper end of the cooling base plate 2 and filled with a coolant. It should be noted that a solenoid valve is installed in the storage tank 9 to facilitate the regular replenishment of the coolant to the curved pipe 10. The storage tank 9 is fixedly connected with the curved pipe 10, and a cooling bearing plate 11 corresponding to the upper end of the curved pipe 10 is fixedly arranged on the storage tank 9. The cooling bearing plate 11 is used to bear the hardware equipment and absorb heat from the hardware equipment. A driving impeller 12 is rotatably arranged in the lower end of the special-shaped pipe 5. The directionally flowing pure water can drive the driving impeller 12 to make the driving impeller 12 continuously rotate. A first-stage rotating shaft 13 and a second-stage rotating shaft 14 are respectively rotatably arranged in the floor support 1. A first-stage gear 15 and a second-stage gear 16 are respectively fixedly sleeved on the driving impeller 12 and the first-stage rotating shaft 13. A third-stage gear 17 and a fourth-stage gear 18 which are meshed are respectively fixedly sleeved on the first-stage rotating shaft 13 and the second-stage rotating shaft 14. A turntable 19 is fixedly connected to the second-stage rotating shaft 14. A traction rod 20 is rotatably connected to the turntable 19. The lower end of the traction rod 20 is pin-connected with a pressure-increasing piston 21 slidably sleeved in the lower end of the curved pipe 10. By moving the pressure-increasing piston 21 up and down, the coolant in the curved pipe 10 is repeatedly pressurized.
[0029] The cooling base plate 2 and the main output pipe 3 are respectively arranged horizontally and vertically. The underground water tank 4 is connected to the lower end of the main output pipe 3 extending outside the floor support 1. The low-temperature environment underground can cool the pure water in the underground water tank 4 to realize the repeated cooling effect of the pure water.
[0030] The first one-way valve 6 is located at the upper end position where the special-shaped pipe 5 is connected to the cooling base plate 2, and the second one-way valve 7 is located at the lower end position where the special-shaped pipe 5 is connected to the main output pipe 3 to ensure the directional flow of the pure water, thereby continuously driving the driving impeller 12.
[0031] Specifically refer to the attached Figure 1 As can be seen, the first-stage rotating shaft 13 is vertically arranged at the lower end of the floor support 1, and the second-stage rotating shaft 14 is horizontally arranged at the middle end of the floor support 1.
[0032] Both the first-stage gear 15 and the second-stage gear 16 are flat gears, and both the third-stage gear 17 and the fourth-stage gear 18 are bevel gears.
[0033] The coolant is an ethylene glycol - aqueous solution with a concentration of 33% - 37%. The ethylene glycol - aqueous solution absorbs a large amount of high-temperature heat during the evaporation process to achieve rapid evaporation, thereby playing a role in cooling and dissipating heat for the hardware equipment.
[0034] The functional principle of the present invention can be elaborated through the following operation modes:
[0035] The hardware device located on the heat-conducting bearing plate 11 transfers heat to the heat-conducting frame 8 to heat the purified water in the special-shaped pipe 5. The purified water that expands due to high temperature flows back to the main output pipe 3 through the special-shaped pipe 5 and the secondary one-way valve 7.
[0036] The high-temperature purified water in the main output pipe 3 flows back to the underground water tank 4 to achieve cooling. After being cooled to a lower temperature, it is discharged into the cooling backing plate 2 through the main output pipe 3, and then flows into the special-shaped pipe 5 through the primary one-way valve 6 to cool the hardware device by cold compress.
[0037] The purified water flowing in a specific direction impacts the driving impeller 12, causing the driving impeller 12 to rotate continuously. The driving impeller 12 drives the primary rotating shaft 13 to rotate through the meshing connection of the primary gear 15 and the secondary gear 16, and the primary rotating shaft 13 then drives the secondary rotating shaft 14 to rotate through the meshing connection of the tertiary gear 17 and the quaternary gear 18.
[0038] The secondary rotating shaft 14 drives the turntable 19 to rotate continuously, causing the traction rod 20 to deflect accordingly, so as to pull the pressurizing piston 21 to expand and contract up and down in the curved pipe 10, compressing the coolant in the curved pipe 10, and making the stressed coolant spray onto the cooling bearing plate 11 through its outlet end.
[0039] During the evaporation process, the coolant quickly absorbs the high-temperature heat on the cooling bearing plate 11 and consumes it to achieve the cooling effect.
[0040] During this process, the storage tank 9 regularly replenishes the coolant into the curved pipe 10 through the solenoid valve to ensure an adequate amount of coolant.
[0041] As described above, it is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, shall be covered by the protection scope of the present invention.
Claims
1. A hardware device installation application protection device for cloud computing, including a floor bracket (1). Characterized in that A water cooling mechanism and a heat absorption mechanism are respectively arranged on the floor bracket (1); The water cooling mechanism includes a cooling backing plate (2) fixedly arranged inside the lower end of the floor bracket (1), and a main output pipe (3) fixedly connected to the lower end of the cooling backing plate (2) and penetrating through and sleeving the floor bracket (1). A underground water tank (4) for filling pure water is fixedly connected to the main output pipe (3). An irregular pipe (5) connected to the cooling backing plate (2) and the main output pipe (3) is fixedly installed on both sides of the floor bracket (1). A first one-way valve (6) and a second one-way valve (7) are respectively installed on the irregular pipe (5), and a heat conduction frame (8) is fixedly sleeved on the upper end of the irregular pipe (5); The heat absorption mechanism includes a storage tank (9) fixedly arranged on the upper end of the cooling backing plate (2) and filled with a coolant, and a curved pipe (10) fixedly connected to the storage tank (9). A cooling bearing plate (11) corresponding to the upper end of the curved pipe (10) is fixedly arranged on the storage tank (9). A driving impeller (12) is rotatably arranged in the lower end of the irregular pipe (5), and a first rotating shaft (13) and a second rotating shaft (14) are respectively rotatably arranged in the floor bracket (1). A first gear (15) and a second gear (16) are respectively fixedly sleeved on the driving impeller (12) and the first rotating shaft (13), and a third gear (17) and a fourth gear (18) which are meshed are respectively fixedly sleeved on the first rotating shaft (13) and the second rotating shaft (14). A turntable (19) is fixedly connected to the second rotating shaft (14). A traction rod (20) is rotatably connected to the turntable (19), and a boosting piston (21) which is slidably sleeved inside the lower end of the curved pipe (10) is pin-connected to the lower end of the traction rod (20); The hardware device located on the heat conduction bearing plate (11) transfers heat to the heat conduction frame (8) to heat the pure water in the irregular pipe (5). The high-temperature and expanded pure water flows back to the main output pipe (3) through the irregular pipe (5) and the second one-way valve (7); The high-temperature pure water located in the main output pipe (3) flows back to the underground water tank (4) to achieve cooling. After being cooled to a lower temperature, it is discharged into the cooling backing plate (2) through the main output pipe (3), and then flows into the irregular pipe (5) through the first one-way valve (6) to perform cold compress cooling on the hardware device; The unidirectionally flowing pure water impacts the driving impeller (12), causing the driving impeller (12) to continuously rotate. The driving impeller (12) drives the first rotating shaft (13) to rotate through the meshed first gear (15) and second gear (16). The first rotating shaft (13) then drives the second rotating shaft (14) to rotate through the meshed third gear (17) and fourth gear (18); The secondary rotating shaft (14) drives the turntable (19) to rotate continuously, causing the traction rod (20) to deflect accordingly, so as to drive the supercharging piston (21) to move up and down in the curved pipe (10), thereby compressing the coolant in the curved pipe (10), and making the stressed coolant spray onto the cooling bearing plate (11) through its outlet end; During the evaporation process, the coolant quickly absorbs the high-temperature heat on the cooling bearing plate (11) and consumes it to achieve a cooling effect; During this process, the storage tank (9) regularly replenishes the coolant into the curved pipe (10) through the solenoid valve to ensure an adequate amount of coolant.
2. The installation and application protection device for hardware equipment used in cloud computing according to claim 1, characterized in that, the cooling backing plate (2) and the main output pipe (3) are respectively arranged horizontally and vertically, and the underground water tank (4) is connected to the lower end of the main output pipe (3) extending outside the floor bracket (1).
3. The installation and application protection device for hardware equipment used in cloud computing according to claim 2, characterized in that, the first one-way valve (6) is located at the upper end of the special-shaped pipe (5) connected to the cooling backing plate (2), and the second one-way valve (7) is located at the lower end of the special-shaped pipe (5) connected to the main output pipe (3).
4. The installation and application protection device for hardware equipment used in cloud computing according to claim 2, characterized in that, the first rotating shaft (13) is vertically arranged at the lower end of the floor bracket (1), and the second rotating shaft (14) is horizontally arranged at the middle end of the floor bracket (1).
5. The installation and application protection device for hardware equipment used in cloud computing according to claim 1, characterized in that, both the first gear (15) and the second gear (16) are spur gears, and both the third gear (17) and the fourth gear (18) are bevel gears.
6. The installation and application protection device for hardware equipment used in cloud computing according to claim 1, characterized in that, the coolant is an ethylene glycol - aqueous solution with a concentration of 33% - 37%.
Citation Information
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Dustproof device for computer
CN107765809A
Computer hardware fixed protection device
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