CN208159103U - A kind of energy saving passive type heat-exchanger rig for communication equipment station - Google Patents
A kind of energy saving passive type heat-exchanger rig for communication equipment station Download PDFInfo
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- CN208159103U CN208159103U CN201820650393.4U CN201820650393U CN208159103U CN 208159103 U CN208159103 U CN 208159103U CN 201820650393 U CN201820650393 U CN 201820650393U CN 208159103 U CN208159103 U CN 208159103U
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- conducting pipe
- heat
- heat conducting
- radiator
- slot
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Abstract
The utility model relates to a kind of energy saving passive type heat-exchanger rig for communication equipment station, including computer room, including at least one heat sink and radiator, the heat sink is arranged inside computer room;The radiator is arranged outside computer room;The heat sink and radiator is respectively by casing frame, radiating fin group and the first heat conducting pipe being set in radiating fin group;It is connected with each other between the heat sink and radiator by the second heat conducting pipe;The second heat conducting pipe both ends are interconnected with the first heat conducting pipe on heat sink and radiator respectively;The first heat conducting pipe inner ring surface is provided with hook slot, hooks in slot and is stained with copper powder;The second heat conducting pipe inner ring surface is provided with hook slot.It is described in the utility model to provide a kind of energy saving passive type heat-exchanger rig for communication equipment station.
Description
Technical field
The utility model relates to computer room field of radiating, especially a kind of energy saving passive type for communication equipment station, which exchanges heat, to be filled
It sets.
Background technique
It is one that communication equipment station, which is by the concentration of the functions such as communication equipment, power supply-distribution system, refrigeration system and Environment of Apparatus Room,
The integral equipment room of body, in order to protect communication equipment, the power supply-distribution system etc. inside computer room, computer room is generally closed nonventilated
Structure, computer room internal temperature is more much higher than external temperature, even if internal high temperature spontaneous can not be transmitted to outer in cold winter
Portion, temperature still can be excessively high in computer room.The refrigerant system configurations of traditional computer room are complicated, carry out duration heat dissipation, and energy consumption is high.
Utility model content
The utility model is above-mentioned in order to solve the problems, such as, provides a kind of energy saving passive type for communication equipment station
Heat-exchanger rig.
Technical solution adopted by the utility model to solve its technical problems is:A kind of energy conservation for communication equipment station is passive
Formula heat-exchanger rig, including computer room, including at least one heat sink and radiator, the heat sink are arranged in computer room
It is internal;The radiator is arranged outside computer room;The heat sink and radiator is respectively by casing frame, heat dissipation
Fins group and the first heat conducting pipe being set in radiating fin group;Pass through second between the heat sink and radiator
Heat conducting pipe is connected with each other;The second heat conducting pipe both ends respectively with the first heat conducting pipe phase on heat sink and radiator
It is intercommunicated;The first heat conducting pipe inner ring surface is provided with hook slot, hooks in slot and is stained with copper powder;The second heat conducting pipe inner ring
Surface is provided with hook slot.
Preferably, the middle part of the computer room has wind direction channel, two sides are provided with return air interlayer;The wind direction channel
Front and back end is respectively arranged with heat sink;The heat sink side is provided with fan.
Preferably, the second heat conducting pipe both ends are provided with connector;The both ends of the connector are provided with
Annular slot, annular slot inner wall are provided with the tooth socket being adapted to hook slot;First heat conducting pipe and the second heat conducting pipe point
It is not plugged in annular slot, tooth socket and the hook interlaced clamping of slot.
Preferably, being additionally provided with transfer tube in the middle part of the connector.
The utility model has the beneficial effects that:A kind of energy saving passive type heat-exchanger rig for communication equipment station, radiator
It is arranged outside computer room, is preferably placed at the top of computer room, radiates by external environment, is absorbed inside computer room by heat sink
Heat, the first heat conducting pipe, the second heat conducting pipe inside have cooling water or coolant liquid, carry out vacuumize process, cooling water or cold
But gasification temperature of the liquid in heat conducting pipe is low, and heat conduction velocity is fast;It is radiated by natural heat dissipation mode, energy conservation, heat dissipation effect
Rate is high.
Detailed description of the invention
The present invention will be further described with reference to the accompanying drawings and examples.
Fig. 1 is that a kind of overall structure of energy saving passive type heat-exchanger rig for communication equipment station described in the utility model is shown
It is intended to;
Fig. 2 is that a kind of side portion structure of energy saving passive type heat-exchanger rig for communication equipment station described in the utility model shows
It is intended to;
Fig. 3 is a kind of the first heat conducting pipe of energy saving passive type heat-exchanger rig for communication equipment station described in the utility model
Structural schematic diagram;
Fig. 4 is a kind of connection header structure of energy saving passive type heat-exchanger rig for communication equipment station described in the utility model
Schematic diagram.
Specific embodiment
The utility model is described in further detail presently in connection with attached drawing.These attached drawings are simplified schematic diagram,
Only illustrate the basic structure of the utility model in a schematic way, therefore it only shows composition related with the utility model.
Embodiment 1
A kind of energy saving passive type heat-exchanger rig for communication equipment station as shown in Figure 1, 2, 3, including computer room 1, including extremely
A few heat sink 2 and radiator 3, the heat sink 2 are arranged inside computer room 1;The radiator 3 is set
It sets outside computer room 1;The heat sink 2 by casing frame 4, radiating fin group 5 and is set in respectively with radiator 3
The first heat conducting pipe 6 in radiating fin group 5;Between the heat sink 2 and radiator 3 mutually by the second heat conducting pipe 7
Connection;Second heat conducting pipe, 7 both ends are interconnected with 6 phase of the first heat conducting pipe on heat sink 2 and radiator 3 respectively
It is logical;First heat conducting pipe, 6 inner ring surface, which is provided with, hooks slot 61, hooks in slot and is stained with copper powder;Second heat conducting pipe, 7 inner ring
Surface, which is provided with, hooks slot 61.Wherein, copper powder is by being sintered to fix in hook slot.
Heat-exchanger rig in this implementation, radiator 3 are arranged outside computer room 1, are preferably placed on 1 top of computer room, by
External environment heat dissipation absorbs the heat inside computer room 1 by heat sink 2, has inside the first heat conducting pipe 6, the second heat conducting pipe 7
There are cooling water or coolant liquid, carry out vacuumize process, the gasification temperature of cooling water or coolant liquid in heat conducting pipe is low, heat transfer speed
Degree is fast;It is radiated by natural heat dissipation mode, energy conservation, radiating efficiency height.
Embodiment 2
A kind of energy saving passive type heat-exchanger rig for communication equipment station as shown in Figure 1,2,3, 4, including computer room 1, including
At least one heat sink 2 and radiator 3, the heat sink 2 are arranged inside computer room 1;The radiator 3
It is arranged outside computer room 1;The heat sink 2 by casing frame 4, radiating fin group 5 and places respectively with radiator 3
The first heat conducting pipe 6 in radiating fin group 5;Pass through 7 phase of the second heat conducting pipe between the heat sink 2 and radiator 3
It connects;Second heat conducting pipe, 7 both ends are interconnected with 6 phase of the first heat conducting pipe on heat sink 2 and radiator 3 respectively
It is logical;First heat conducting pipe, 6 inner ring surface, which is provided with, hooks slot 61, hooks in slot and is stained with copper powder;Second heat conducting pipe, 7 inner ring
Surface, which is provided with, hooks slot 61.Wherein, copper powder is by being sintered to fix in hook slot.
Wherein, radiator 3 is arranged outside computer room 1, radiates by external environment, absorbs computer room 1 by heat sink 2
Internal heat has cooling water or coolant liquid inside the first heat conducting pipe 6, the second heat conducting pipe 7, carries out vacuumize process, cold
But the gasification temperature of water or coolant liquid in heat conducting pipe is low, and heat conduction velocity is fast;It is radiated, is saved by natural heat dissipation mode
Can, radiating efficiency is high.
The middle part of the computer room 1 has wind direction channel 11, and two sides are provided with return air interlayer 12;Before the wind direction channel 11
Rear end is respectively arranged with heat sink 2;2 side of heat sink is provided with fan 8.Improve heat dissipation effect.
Second heat conducting pipe, 7 both ends are provided with connector 9;The both ends of the connector 9 are provided with annular and insert
Slot 91, annular 91 inner wall of slot are provided with the tooth socket 92 being adapted to hook slot 61;First heat conducting pipe 6 and the second heat conducting pipe
7 are plugged on respectively in annular slot 91, tooth socket and the hook interlaced clamping of slot 61.First heat conducting pipe 6, the second heat conducting pipe 7 and company
After connector 9 connects, then pass through welding or casting sealing.
Transfer tube is additionally provided in the middle part of the connector 9(It is not shown).Transfer tube(It is not shown)It is carried out by external power supply
Power supply promotes coolant liquid circulation, improves radiating efficiency.
It is enlightenment, through the above description, related work people with the above-mentioned desirable embodiment according to the utility model
Member can carry out various changes and amendments in the range of without departing from this item utility model technical idea completely.This item is real
It is not limited to the contents of the specification with novel technical scope, it is necessary to its technology is determined according to scope of the claims
Property range.
Claims (4)
1. a kind of energy saving passive type heat-exchanger rig for communication equipment station, including computer room, it is characterised in that:Including at least one suction
Thermal and radiator, the heat sink are arranged inside computer room;The radiator is arranged outside computer room;
The heat sink and radiator respectively by casing frame, radiating fin group and be set in radiating fin group first
Heat conducting pipe;It is connected with each other between the heat sink and radiator by the second heat conducting pipe;Second heat conducting pipe two
End is interconnected with the first heat conducting pipe on heat sink and radiator respectively;The first heat conducting pipe inner ring surface is set
It is equipped with hook slot, hooks in slot and is stained with copper powder;The second heat conducting pipe inner ring surface is provided with hook slot.
2. a kind of energy saving passive type heat-exchanger rig for communication equipment station according to claim 1, it is characterised in that:It is described
The middle part of computer room has wind direction channel, and two sides are provided with return air interlayer;The front and back end in the wind direction channel is respectively arranged with heat absorption
Device;The heat sink side is provided with fan.
3. a kind of energy saving passive type heat-exchanger rig for communication equipment station according to claim 1, it is characterised in that:It is described
The second heat conducting pipe both ends be provided with connector;The both ends of the connector are provided with annular slot, annular slot inner wall
Face is provided with the tooth socket being adapted to hook slot;First heat conducting pipe and the second heat conducting pipe is plugged on respectively in annular slot, tooth
Slot and the hook interlaced clamping of slot.
4. a kind of energy saving passive type heat-exchanger rig for communication equipment station according to claim 3, it is characterised in that:It is described
Connector in the middle part of be additionally provided with transfer tube.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820650393.4U CN208159103U (en) | 2018-05-03 | 2018-05-03 | A kind of energy saving passive type heat-exchanger rig for communication equipment station |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820650393.4U CN208159103U (en) | 2018-05-03 | 2018-05-03 | A kind of energy saving passive type heat-exchanger rig for communication equipment station |
Publications (1)
Publication Number | Publication Date |
---|---|
CN208159103U true CN208159103U (en) | 2018-11-27 |
Family
ID=64377470
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201820650393.4U Active CN208159103U (en) | 2018-05-03 | 2018-05-03 | A kind of energy saving passive type heat-exchanger rig for communication equipment station |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN208159103U (en) |
-
2018
- 2018-05-03 CN CN201820650393.4U patent/CN208159103U/en active Active
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