CN213149693U - Radiating device of large computer - Google Patents

Radiating device of large computer Download PDF

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Publication number
CN213149693U
CN213149693U CN202021632823.3U CN202021632823U CN213149693U CN 213149693 U CN213149693 U CN 213149693U CN 202021632823 U CN202021632823 U CN 202021632823U CN 213149693 U CN213149693 U CN 213149693U
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water
water pump
air
case body
box body
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CN202021632823.3U
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Chinese (zh)
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王大威
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Tianjin Weishuo Technology Co ltd
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Tianjin Weishuo Technology Co ltd
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Abstract

The utility model discloses a large computer heat abstractor, including access door, water pump, computer machine case body, air-out motor B, air-out motor A, water tank, fin and air-cooler body, its characterized in that: computer machine case body side end face four corners is through the cold air box body of fixed screw meeting, the access door that cold air box body side end face installation size is the same, cold air box body internally mounted has the water pump, the water pump outlet pipe is installed to the water pump up end, the water pump inlet tube is installed to water pump right-hand member face, the water pump inlet tube is located the catch basin inside, and the water pump inlet tube can realize with catch basin fluid intercommunication, the water pump passes through water pump outlet pipe and water tank fluid intercommunication, the water tank passes through circulating pipe and filtered steam net fluid intercommunication, and filtered steam net lower extreme passes through inlet tube and catch basin fluid intercommunication. The utility model discloses a heat of rivers is absorbed to the fin, makes the water-cooling evaporate through filtering the steam net and reaches the radiating effect.

Description

Radiating device of large computer
Technical Field
The utility model relates to a heat abstractor technical field specifically is a large computer heat abstractor.
Background
Mainframe computers, one of the computer classes, are often used as large business servers, and the shadows of mainframe computers are seen in many places today. They are typically used in large transaction processing systems, particularly database application systems that were done in the past and were not worth rewriting, whose application software is typically several times the cost of the hardware itself, so mainframes play an irreplaceable role in today's society. The temperature of the large computer is generally high, the power consumption of the large computer is generally high, and the generated heat is much larger than that of the common computer, so that the heat dissipation device of the large computer, which is practical and low in cost, is very necessary to be designed.
After a large number of searches, the following results are obtained: chinese utility model patent: application number [ CN201510388968.0 ] publication number [ CN104990171A ] the utility model discloses a cooling system for data center computer room and heat tracing method thereof. One embodiment of the heat dissipation system comprises: the heat dissipation system comprises at least two sets of heat dissipation devices which are respectively used for absorbing heat from the data center machine room; the at least two sets of heat dissipation devices at least comprise a set of main heat dissipation device and a set of standby heat dissipation device, wherein the main heat dissipation device comprises a heat tracing pipeline, at least part of the heat tracing pipeline is arranged in the standby heat dissipation device and is used for tracing heat of the standby heat dissipation device by using heat absorbed by the main heat dissipation device, the heat dissipation device in operation is the main heat dissipation device, and the heat dissipation device not in operation is the standby heat dissipation device. The implementation mode can make full use of the existing resources and improve the energy utilization efficiency.
The common heat dissipation device utilizes heat absorption to achieve a heat dissipation effect, the temperature in a machine room is not reduced obviously enough, heat of water flow is absorbed through the heat dissipation fins in the heat dissipation device of the large computer, the temperature is reduced through evaporation of the filtering steam net, and the heat dissipation effect is achieved through alternation of cold air flow and hot air flow of the fan.
The heat dissipation device for the large computer dissipates heat through the water cooling system, but the heat dissipation device cannot be moved freely due to overlarge volume and is communicated with the large computer, so that the heat dissipation device is only suitable for the relative large computer.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a large computer heat abstractor, the radiating advantage that possesses has solved the radiating problem of large computer.
In order to achieve the above object, the utility model provides a following technical scheme: a large-scale computer heat dissipation device comprises an access door, a water pump, a computer case body, an air outlet motor B, an air outlet motor A, a water tank, a heat dissipation sheet and a cold air case body, wherein four corners of one side end face of the computer case body are connected with the cold air case body through fixing screws, the access door with the same size is installed on one side end face of the cold air case body, the water pump is installed inside the cold air case body, a water pump water outlet pipe is installed on the upper end face of the water pump, a water pump water inlet pipe is installed on the right end face of the water pump, the water pump water inlet pipe is located inside a water storage tank and can be communicated with the water storage tank through fluid, the water pump is communicated with the water tank through the water pump water outlet pipe, the water tank is communicated with a filtering steam net through a circulating water pipe, the water tank is positioned right above the water storage tank;
an air outlet motor B is mounted on the inner bottom end face of the computer case body, an air outlet fan B is rotatably mounted in the computer case body, a driven wheel B is coaxially mounted on the air outlet fan B, a driving wheel B is coaxially mounted on the air outlet motor B, the driving wheel B and the driven wheel B are transmitted through a belt B, ventilating ports B which are communicated with each other are formed between the computer case body and the cold air box body, the ventilating ports B are distributed in a manner of being opposite to the air outlet fan B, and a detachable ventilating net B is mounted on each ventilating port B;
air-out motor A is installed to this internal upper end of cold wind box, air-out flabellum A is installed to the inside rotation of cold wind box body, air-out flabellum A coaxial arrangement has from driving wheel A, and air-out motor A coaxial arrangement has initiative A wheel, initiative A wheel with pass through belt A transmission from driving wheel A, be equipped with communicating scavenge port A each other between computer machine case body and the cold wind box body, and scavenge port A just to distributing with air-out flabellum A, install detachable ventilation net A on the scavenge port A.
Preferably, an access door is installed on the cold air box body through a hinge, and a lock catch is installed between the access door and the cold air box body.
Preferably, the bottom end face of the water tank is welded with radiating fins, the radiating fins are located in the water tank, radiating fans are installed on the upper sections of the radiating fins, and cooling air tank body shells corresponding to the radiating fans are provided with radiating nets in a communicating mode.
Preferably, a water level meter is arranged on the surface of one side of the water storage tank.
Compared with the prior art, the beneficial effects of the utility model are as follows: the water tank is connected with the water circulating pipe through the water outlet pipe, so that water flows into the water tank, the heat of the water flow can be absorbed by the radiating fins in the water tank, and the water cooling effect is achieved; the water flow absorbed with heat is evaporated through the filtering steam net, so that the effect of reducing the temperature in the case is achieved; the air outlet fan blade A and the air outlet fan blade B rotate by the operation of the air outlet motor A and the air outlet motor B, and the effect of alternating cold and hot air flows in the case is achieved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic side view of the present invention;
FIG. 3 is a schematic top view of the present invention;
fig. 4 is a schematic view of the water tank of the present invention.
In the figure: 1. an access door; 2. a hinge; 3. a water pump; 4. a water outlet pipe of the water pump; 5. a water inlet pipe of a water pump; 6. A water storage tank; 7. a water inlet pipe; 8. filtering the steam net; 9. fixing screws; 10. an air outlet motor B; 11. a ventilation net B; 12. a fan B is discharged; 13. a computer case body; 14. a ventilation net A; 15. an air outlet fan blade A; 16. an air outlet motor A; 17. a circulating water pipe; 18. a water tank; 19. a heat-dissipating web; 20. a heat radiation fan; 21. a heat sink; 22. a cold air box body; 23. a water level meter.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 to 4, the present invention provides a heat dissipation device for a mainframe computer, comprising: the utility model provides a large-scale computer heat abstractor, includes access door 1, water pump 3, computer machine case body 13, air-out motor B10, air-out motor A16, water tank 18, fin 21 and cold wind case body 22, and 13 side end four corners of computer machine case body connect cold wind case body 22 through fixed screw 9 mutually, have access door 1 through hinge installation on the cold wind case body 22, and install the hasp between access door 1 and the cold wind case body 22.
The water pump 3 is installed inside the cold air box body 22, the water pump water outlet pipe 4 is installed on the upper end face of the water pump 3, the water pump water inlet pipe 5 is installed on the right end face of the water pump 3, the water pump water inlet pipe 5 is located inside the water storage tank 6, the water pump water inlet pipe 5 can be communicated with the water storage tank 6 in a fluid mode, the water pump 3 is communicated with the water tank 18 in a fluid mode through the water pump water outlet pipe 4, the radiating fins 21 are welded on the bottom end face of the water tank 18, the radiating fans 20 are installed on the sections, located in the water tank 18, of the radiating fins; the water tank 18 is connected with the circulating water pipe 17 through the water outlet pump water outlet pipe 4 to be communicated with fluid, so that water flows into the water tank 18, the heat of the water flow can be absorbed by the radiating fins 21 in the water tank 18, and the water cooling effect is achieved. The water tank 18 is communicated with the filtering steam net 8 through the circulating water pipe 17, the lower end of the filtering steam net 8 is communicated with the water storage tank 6 through the water inlet pipe 7, the water tank 18 is fixed in the cold air tank body 22 and located right above the water storage tank 6, the water level meter 20 is arranged on one side surface of the water storage tank 6, the water level height can be observed through the water level meter 20, and water is prevented from being evaporated. The water flow absorbed by the radiating fins 21 is evaporated through the filtering steam net 8, so that the effect of reducing the temperature in the case is achieved.
An air outlet motor B10 is installed on the inner bottom end face of the computer case body 13, an air outlet fan B12 is installed inside the computer case body 13 in a rotating mode, a driven wheel B is coaxially installed on the air outlet fan B12, a driving wheel B is coaxially installed on the air outlet motor B10, the driving wheel B and the driven wheel B drive a ventilation port B which is communicated with each other through a belt B between the computer case body 13 and the cold air box body 22, the ventilation port B and the air outlet fan B12 are distributed in an opposite mode, and a detachable ventilation net B11 is installed on the ventilation port B;
air-out motor A16 is installed to the upper end in the cold wind box body 22, and the inside rotation of cold wind box body 22 is installed air-out flabellum A15 air-out flabellum A15 coaxial arrangement and is followed driving wheel A, and air-out motor A16 coaxial arrangement has initiative A wheel, initiative A wheel and follow driving wheel A are equipped with communicating scavenge port A each other through belt A transmission computer machine case body 13 and cold wind box body 22 between, and scavenge port A and air-out flabellum A15 just to the distribution, install detachable ventilation net A14 on the scavenge port A. The air outlet fan blade A and the air outlet fan blade B are rotated to achieve the effect of alternating cold and hot air flows in the case.
The utility model discloses small-size gear motor-3 GN-10KC10 model, small-size high rotational speed motor-XD-3420-2 and small-size booster pump-15 WG8-10 are selected for use for the motor selection, and this model motor only refers to as affiliated technical field personnel and chooses for use, and affiliated technical field personnel can carry out the motor of match same parameter and function according to the actual production needs and install the debugging and use, the utility model discloses do not describe repeatedly.
The working principle is as follows: when the water pump 3 works, the water in the water storage tank 6 flows into the water pump and is pumped out of the water outlet pipe 4, the water flows into the water tank 18 through the water pump water outlet pipe 4 and absorbs heat through the radiating fins 21 in the water tank 18, the water tank 18 is communicated and connected with the circulating water pipe 17, the water flows into the circulating water pipe 17 through the radiating fins 21 and enters the filtering steam net 8, and the temperature in the machine box is reduced through the evaporation of the filtering steam net 8; the operation of the air outlet motor B10 drives the air outlet fan blade B12 to make the cold air in the case flow into the computer case body 13, the operation of the air outlet motor A16 drives the air outlet fan blade A15 of the computer case body 13 to make the hot air flow in the computer case body 13 flow into the cold air box body 22, so that the air flow is realized to achieve the purpose, the heat exchange is realized, and the heat dissipation is realized.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (4)

1. The utility model provides a large-scale computer heat abstractor, includes access door (1), water pump (3), computer machine case body (13), air-out motor B (10), air-out motor A (16), water tank (18), fin (21) and cold wind box body (22), its characterized in that: the computer case is characterized in that four corners of one side end face of a computer case body (13) are connected with a cold air case body (22) through fixing screws (9), an access door (1) with the same size is installed on one side end face of the cold air case body (22), a water pump (3) is installed inside the cold air case body (22), a water pump water outlet pipe (4) is installed on the upper end face of the water pump (3), a water pump water inlet pipe (5) is installed on the right end face of the water pump (3), the water pump water inlet pipe (5) is located inside a water storage tank (6), the water pump water inlet pipe (5) can be communicated with the water storage tank (6) in a fluid mode, the water pump (3) is communicated with a water tank (18) in a fluid mode through the water pump water outlet pipe (4), the water tank (18) is communicated with a filtering steam net (8) in a fluid mode through a circulating water, a water tank (18) is fixed in the cold air box body (22), and the water tank (18) is positioned right above the water storage tank (6);
an air outlet motor B (10) is mounted on the inner bottom end face of the computer case body (13), an air outlet fan B (12) is rotatably mounted in the computer case body (13), a driven wheel B is coaxially mounted on the air outlet fan B (12), a driving wheel B is coaxially mounted on the air outlet motor B (10), the driving wheel B and the driven wheel B are driven through a belt B, air exchange ports B which are communicated with each other are formed between the computer case body (13) and the cold air case body (22), the air exchange ports B and the air outlet fan B (12) are in opposite distribution, and a detachable ventilation net B (11) is mounted on each air exchange port B;
air-out motor A (16) is installed to the upper end in cold wind box body (22), air-out flabellum A (15) is installed to cold wind box body (22) inside rotation, air-out flabellum A (15) coaxial arrangement has from driving wheel A, and air-out motor A (16) coaxial arrangement has initiative A wheel, and initiative A wheel and pass through belt A transmission from driving wheel A, be equipped with communicating scavenge port A each other between computer machine case body (13) and cold wind box body (22), and scavenge port A and air-out flabellum A (15) just to distributing, install detachable ventilation net A (14) on the scavenge port A.
2. The heat dissipating device for a mainframe computer according to claim 1, wherein: an access door (1) is installed on the hinge (2) on the cold air box body (22), and a lock catch is installed between the access door (1) and the cold air box body (22).
3. The heat dissipating device for a mainframe computer according to claim 1, wherein: the welding of water tank (18) bottom end face has fin (21), fin (21) are located water tank (18), radiator fan (20) are installed to the section on fin (21), air-cooling case body (22) shell that radiator fan (20) correspond is equipped with and communicates with each other the size and has radiator-grid (19).
4. The heat dissipating device for a mainframe computer according to claim 1, wherein: and a water level meter (23) is arranged on the surface of one side of the water storage tank (6).
CN202021632823.3U 2020-08-07 2020-08-07 Radiating device of large computer Active CN213149693U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021632823.3U CN213149693U (en) 2020-08-07 2020-08-07 Radiating device of large computer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021632823.3U CN213149693U (en) 2020-08-07 2020-08-07 Radiating device of large computer

Publications (1)

Publication Number Publication Date
CN213149693U true CN213149693U (en) 2021-05-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021632823.3U Active CN213149693U (en) 2020-08-07 2020-08-07 Radiating device of large computer

Country Status (1)

Country Link
CN (1) CN213149693U (en)

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