CN209693341U - Data center composite cooling system with server additionally provided with heat pipe heat exchanger - Google Patents
Data center composite cooling system with server additionally provided with heat pipe heat exchanger Download PDFInfo
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- CN209693341U CN209693341U CN201920017728.3U CN201920017728U CN209693341U CN 209693341 U CN209693341 U CN 209693341U CN 201920017728 U CN201920017728 U CN 201920017728U CN 209693341 U CN209693341 U CN 209693341U
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- heat
- heat pipe
- server
- heat exchange
- pipe
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- 238000001816 cooling Methods 0.000 title claims abstract description 25
- 239000002131 composite material Substances 0.000 title claims abstract description 20
- 238000012546 transfer Methods 0.000 claims abstract description 6
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 33
- 230000008676 import Effects 0.000 claims description 14
- 230000005494 condensation Effects 0.000 claims description 10
- 238000009833 condensation Methods 0.000 claims description 10
- 239000000498 cooling water Substances 0.000 claims description 8
- 238000001704 evaporation Methods 0.000 claims description 4
- 230000008020 evaporation Effects 0.000 claims description 4
- 238000010438 heat treatment Methods 0.000 claims description 2
- 230000017525 heat dissipation Effects 0.000 abstract description 5
- 238000000034 method Methods 0.000 abstract description 4
- 230000003068 static effect Effects 0.000 abstract 1
- 238000005516 engineering process Methods 0.000 description 5
- 238000005265 energy consumption Methods 0.000 description 4
- 238000004378 air conditioning Methods 0.000 description 3
- 238000004891 communication Methods 0.000 description 3
- 239000000203 mixture Substances 0.000 description 3
- 238000007664 blowing Methods 0.000 description 2
- 208000021760 high fever Diseases 0.000 description 2
- 150000001875 compounds Chemical class 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000009408 flooring Methods 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000005457 optimization Methods 0.000 description 1
- 238000005192 partition Methods 0.000 description 1
- 238000005057 refrigeration Methods 0.000 description 1
- 238000011160 research Methods 0.000 description 1
- 239000008400 supply water Substances 0.000 description 1
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- Cooling Or The Like Of Electrical Apparatus (AREA)
Abstract
The utility model relates to a server installs heat pipe exchanger's data center composite cooling system additional belongs to data computer lab heat dissipation technical field. The utility model discloses select 1 row 6 racks altogether's the adoption floor air supply return air inlet return air that seals cold passageway to install heat pipe exchanger's data computer lab additional above the server as an example, mainly include rack (1), first heat pipe exchanger (2-1), second heat pipe exchanger (2-2), third heat pipe exchanger (2-3), fourth heat pipe exchanger (2-4), fifth heat pipe exchanger (2-5), first server (3-1), second server (3-2), third server (3-3), fourth server (3-4), fifth server (3-5), parts such as sub-floor static pressure case (4). The utility model discloses to have the heat pipe technique and the raised floor of high heat transfer performance and send wind technique back and combine, established composite cooling system, reduce the local focus in the server, improve the system efficiency and install reliable and simple.
Description
Technical field
The utility model relates to data center's composite cooling systems that a kind of server installs heat exchange of heat pipe additional, belong to data
Computer room heat dissipation and heat pipe heat exchanging technology field.
Background technique
Data center's (also known as computer room) has become the important component in the national economic development, is to promote national science and technology
Industrial information and digitized mainstay.With flourishing for Communication in China cause, electronic computer itself and collection
At changing, degree is higher and higher, high fever density issue occurs in data center machine room construction, highly dense high fever communications equipment room there is
It is easy to produce hot-spot, the problem that air conditioning energy consumption is larger and computer room utilization rate is not high.In high-performance data computer room, part
For the temperature of hot spot up to 30 DEG C -40 DEG C, this can reduce the service life of hot localised points ambient service device.
Although many scholars are dedicated to the adjusting of data computer room air current composition and optimization system in recent years, and about general
The research that heat pipe heat exchanging technology is applied to data center also emerges one after another, as patent CN201521067250.3 proposes that one kind can essence
Really data center's cabinet of adjustment air current composition, the patent are shut off guide plate in raised flooring vertically adjustable gear arranged below,
But the heat dissipation non-uniform phenomenon that different location cabinet can only be improved, cannot go deep into interior of equipment cabinet to the hot localised points of single cabinet into
Row improves;Patent 201110215178.4 proposes a kind of heat pipe type heat exchange system for communication data room and its heat change method,
The system is a heat exchange of heat pipe, and the intracorporal heat pipe of shell is gravity type heat pipe and radiating fin, can be dropped to a certain extent
The excessively high problem of low energy consumption of machine room alleviates the excessively high bring Voltage force of air-conditioning equipment energy consumption.But the patent is not involved with
The hot and cold air in computer room is avoided to blend, therefore it can not efficiently solve computer room heat dissipation problem, the energy consumption of computer room reduces degree
Less;And the system is vertically installed in shell using vertical heat pipe exchanger, heat pipe, and the condensation segment of heat pipe, which is located at, to be added
The surface of hot arc, therefore the height of whole system is higher, punches to the chisel wall of wall and load-bearing has very high requirement, for
Computer room size is more demanding.
The utility model installs data center's composite cooling system of heat exchange of heat pipe additional using a kind of server, and server dissipates
The heat of hair is disappeared jointly by the evaporator section of conventional overhead floor air blow and return mode and the heat exchange of heat pipe of side mounted thereto
The phenomenon that removing, improving data center computer room partial points overheat, heat exchange efficiency is higher, and information system equipment is good in guarantee data center
Good running environment.
Summary of the invention
The purpose of the utility model is to provide a kind of server install additional heat exchange of heat pipe data center's composite cooling system,
The thermal environment of data center computer room is optimized, the heat dissipation for keeping cabinet server more efficient, while reducing the part temperature of cabinet
Degree, eliminates hot localised points, and improve the energy use efficiency of air-conditioning system.
The system is a data center computer room composite cooling system, and traditional air conditioner cooling technology is made jointly with heat pipe heat exchanging technology
With.
Above-mentioned data center computer room composite cooling system chooses the floor blowing using closing cold passage of 1 row totally 6 cabinets,
With return air inlet return air, and it is application example that side, which installs the data center computer room of heat exchange of heat pipe additional, on the server.
Above-mentioned data center computer room composite cooling system includes:
Cabinet (1), the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3),
4th heat exchange of heat pipe (2-4), the 5th heat exchange of heat pipe (2-5), first server (3-1), second server (3-2), third
Server (3-3), the 4th server (3-4), the 5th server (3-5), plenum chamber (4) under floor, valve (5), water tank (6),
It pumps (7), the first tank outlet (8), the first water tank import (9), the second water tank import (10) and the second tank outlet (11);
Wherein, the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th
The evaporation section of heat exchange of heat pipe (2-4), the 5th heat exchange of heat pipe (2-5) is mounted on first server (3-1), second server
(3-2), third server (3-3), the 4th server (3-4), the 5th server (3-5) top, cooling segment and external environment
Connection, the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat pipe heat exchanging
Device (2-4), the 5th heat exchange of heat pipe (2-5) are in contact with the cooling water provided in water tank (6) respectively;
First tank outlet (8) is connected with pump (7) first end, pump (7) second end and the valve (5) being installed on the pipeline
First end is connected, and valve (5) second end is connected with the first water tank import (9), and the second water tank import (10) and city planting ductwork supply water
Pipeline is connected, and the second tank outlet (11) is connected with city planting ductwork water return pipeline.
First server in data center's composite cooling system that server installs heat exchange of heat pipe additional, under working condition
What (3-1), second server (3-2), third server (3-3), the 4th server (3-4) and the 5th server (3-5) distributed
Heat is changed by the first heat exchange of heat pipe (2-1) of conventional overhead floor air blow and return mode and side mounted thereto, the second heat pipe
Hot device (2-2), third heat exchange of heat pipe (2-3), the 4th heat exchange of heat pipe (2-4), the evaporation of the 5th heat exchange of heat pipe (2-5)
Section is eliminated.
First server (3-1), second server (3-2), third server (3-3), the 4th server (3-4) and the 5th
The heat that server (3-5) generates is via the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat pipe heat exchanging
The evaporator section of device (2-3), the 4th heat exchange of heat pipe (2-4), the 5th heat exchange of heat pipe (2-5) is transmitted to condensation segment.
First heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat pipe
Heat exchanger (2-4), the cooling water that the condensation segment of the 5th heat exchange of heat pipe (2-5) is provided with water tank (6) exchange heat, city planting ductwork
The cooling water of offer enters water tank (6) from the second water tank import (10), flows out, flows through pump (7) from the first tank outlet (8), rises
By valve (5) and first water tank import (9) reflow tank after temperature, it is discharged, transfers heat to from the second tank outlet (11)
External environment.
The heat transfer of heat pipe has one-way, and heat pipe can start automatically, without additional power, after heat pipe starting, clothes
The heat that business device generates is transmitted to condensation segment from the evaporator section of heat pipe.
Heat exchange of heat pipe and air conditioner in machine room belong to collective effect relationship, and heat exchange of heat pipe is closer to server, service
The heat that device generates largely passes through heat pipe and passes to the cooling water from water tank, and minor heat load is held by air conditioner in machine room
Load.
The used data center computer room composite cooling system of the utility model improves data center computer room server hot-spot phenomenon,
Data center computer room refrigerating efficiency is improved, ensures the good running environment of information system equipment in data center, improves refrigeration system
Efficiency and the purpose for saving energy cost, and install simple and easy.
Detailed description of the invention
Attached drawing 1 is layout drawing of the utility model in cabinet.
Label title in attached drawing 1: 1, cabinet, 2-1, the first heat exchange of heat pipe, 2-2, the second heat exchange of heat pipe, 2-3,
Three heat exchange of heat pipes, 2-4, the 4th heat exchange of heat pipe, 2-5, the 5th heat exchange of heat pipe, 3-1, first server, 3-2, the second clothes
It is engaged in device, 3-3, third server, 3-4, the 4th server, 3-5, the 5th server, 4, plenum chamber under floor.
Attached drawing 2 is the principles of the present invention figure.
Label title in attached drawing 2: 2-1, the first heat exchange of heat pipe, 2-2, the second heat exchange of heat pipe, 2-3, third heat pipe
Heat exchanger, 2-4, the 4th heat exchange of heat pipe, 2-5, the 5th heat exchange of heat pipe, 5, valve, 6, water tank, 7, pump, the 8, first water tank go out
Mouth, the 9, first water tank import, the 10, second water tank import and the 11, second tank outlet.
Attached drawing 3 is the figure of the utility model heat exchange of heat pipe.
Label title in attached drawing 3: 12, partition, 13, shell, 14, heat pipe.
Specific embodiment
As shown in Figure 1, a kind of data center computer room cooling system described in the utility model is that server installs heat exchange of heat pipe additional
Data center's composite cooling system.
Choose 1 row totally 6 cabinets using closing cold passage floor blowing, with return air inlet return air, and in server
Illustrate the above-mentioned data center computer room composite cooling system using heat exchange of heat pipe for the data center computer room of top installation heat exchange of heat pipe
Embodiment.
Above-mentioned data center computer room composite cooling system is by cabinet 1, the first heat exchange of heat pipe 2-1, the second heat exchange of heat pipe 2-2,
Third heat exchange of heat pipe 2-3, the 4th heat exchange of heat pipe 2-4, the 5th heat exchange of heat pipe 2-5, first server 3-1, second service
Device 3-2, third server 3-3, the 4th server 3-4, the 5th server 3-5, plenum chamber 4 under floor, valve 5, water tank 6, pump 7
Equal components composition.
It is compound in the data center that server installs heat exchange of heat pipe additional when data center computer room composite cooling system is started to work
In cooling system, first server 3-1, second server 3-2, third server 3-3, the 4th server 3-4 and the 5th are serviced
The heat that device 3-5 is distributed by the first heat exchange of heat pipe 2-1 of conventional overhead floor air blow and return mode and side mounted thereto,
Second heat exchange of heat pipe 2-2, third heat exchange of heat pipe 2-3, the 4th heat exchange of heat pipe 2-4, the evaporation of the 5th heat exchange of heat pipe 2-5
Section is eliminated.
First server 3-1, second server 3-2, third server 3-3, the 4th server 3-4 and the 5th server 3-
5 heats generated are via the first heat exchange of heat pipe 2-1, the second heat exchange of heat pipe 2-2, third heat exchange of heat pipe 2-3, the 4th heat pipe
Heat exchanger 2-4, the evaporator section of the 5th heat exchange of heat pipe 2-5 are transmitted to condensation segment.
First heat exchange of heat pipe 2-1, the second heat exchange of heat pipe 2-2, third heat exchange of heat pipe 2-3, the 4th heat exchange of heat pipe
The cooling water provided in the condensation segment and water tank 6 of 2-4, the 5th heat exchange of heat pipe 2-5 exchanges heat, and server heat is cooled water
It absorbs, through 9 reflow tank of valve 5 and the first water tank import after the cooling water heating that city planting ductwork provides, from the second tank outlet
11 discharges, transfer heat to external environment.
Claims (4)
1. data center's composite cooling system that a kind of server installs heat exchange of heat pipe additional, it is characterised in that including, cabinet (1),
First heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat exchange of heat pipe (2-
4), the 5th heat exchange of heat pipe (2-5), first server (3-1), second server (3-2), third server (3-3), the 4th clothes
It is engaged in device (3-4), the 5th server (3-5), plenum chamber (4) under floor, valve (5), water tank (6) pumps (7), the first tank outlet
(8), the first water tank import (9), the second water tank import (10) and the second tank outlet (11);
Wherein, the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat pipe
The evaporation section of heat exchanger (2-4), the 5th heat exchange of heat pipe (2-5) is mounted on first server (3-1), second server (3-
2), third server (3-3), the 4th server (3-4), the 5th server (3-5) top, cooling segment and external environment connect
It connects, the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat exchange of heat pipe
(2-4), the 5th heat exchange of heat pipe (2-5) are in contact with the cooling water provided in water tank (6) respectively;
First tank outlet (8) is connected with pump (7) first end, pump (7) second end and valve (5) first end being installed on the pipeline
It is connected, valve (5) second end is connected with the first water tank import (9), the second water tank import (10) and city planting ductwork water supply pipe phase
Even, the second tank outlet (11) is connected with city planting ductwork water return pipeline.
2. a kind of server according to claim 1 installs data center's composite cooling system of heat exchange of heat pipe additional, special
Sign is:
First heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat pipe heat exchanging
Device (2-4), the evaporator section of the 5th heat exchange of heat pipe (2-5) is closer to first server (3-1), second server (3-2), third
Server (3-3), the 4th server (3-4) and the 5th server (3-5), are directly transmitted to external rings from hot localised points for heat
Border.
3. a kind of server according to claim 1 installs data center's composite cooling system of heat exchange of heat pipe additional, special
Sign is:
First server (3-1), second server (3-2), third server (3-3), the 4th server (3-4) and the 5th service
The heat that device (3-5) generates is respectively via the first heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat pipe heat exchanging
The evaporator section of device (2-3), the 4th heat exchange of heat pipe (2-4), the 5th heat exchange of heat pipe (2-5) is transmitted to condensation segment;
First heat exchange of heat pipe (2-1), the second heat exchange of heat pipe (2-2), third heat exchange of heat pipe (2-3), the 4th heat pipe heat exchanging
Device (2-4), the condensation segment of the 5th heat exchange of heat pipe (2-5) are connected through water pipe and water tank (6), the condensation segment of heat exchange of heat pipe with it is cold
But water contact heat-exchanging, the cooled water of server heat absorb, and the cooling water after heating is through valve (5) and the first water tank import (9)
Reflow tank is discharged from the second tank outlet (11), transfers heat to external environment.
4. a kind of server according to claim 1 installs data center's composite cooling system of heat exchange of heat pipe additional, special
Sign is:
The heat transfer of heat pipe has one-way, and heat pipe can start automatically, without additional power, after heat pipe starting, server
The heat of generation is transmitted to condensation segment from the evaporator section of heat pipe.
Priority Applications (1)
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CN201920017728.3U CN209693341U (en) | 2019-01-04 | 2019-01-04 | Data center composite cooling system with server additionally provided with heat pipe heat exchanger |
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CN201920017728.3U CN209693341U (en) | 2019-01-04 | 2019-01-04 | Data center composite cooling system with server additionally provided with heat pipe heat exchanger |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109618541A (en) * | 2019-01-04 | 2019-04-12 | 南京工业大学 | Data center composite cooling system with server additionally provided with heat pipe heat exchanger |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109618541A (en) * | 2019-01-04 | 2019-04-12 | 南京工业大学 | Data center composite cooling system with server additionally provided with heat pipe heat exchanger |
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Legal Events
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GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20191126 Termination date: 20220104 |