CN202928411U - Natural convection split type heat pipe room temperature adjuster - Google Patents
Natural convection split type heat pipe room temperature adjuster Download PDFInfo
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- CN202928411U CN202928411U CN 201220274529 CN201220274529U CN202928411U CN 202928411 U CN202928411 U CN 202928411U CN 201220274529 CN201220274529 CN 201220274529 CN 201220274529 U CN201220274529 U CN 201220274529U CN 202928411 U CN202928411 U CN 202928411U
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Abstract
The utility model provides a natural convection split type heat pipe room temperature adjuster, and belongs to the field of air adjusters. The natural convection split type heat pipe room temperature adjuster comprises a heating section fin 1, a heating section heat pipe working medium pipe 2, a heating section upper linkage box pipe 3, a heating section lower linkage box pipe 4, a partition wall 5, a liquid returning pipe 6, an exhaust pipe 7, a liquid collecting linkage box pipe 8, an air inlet linkage box pipe 9, a condensing section heat pipe working medium pipe 10 and a condensing section fin 11. When the indoor heating section fin 1 is heated, the heating section fin 1 transmits heat to heat pipe media in the heating section heat pipe working medium pipe 2, after the heat is sent to the condensing section heat pipe working medium pipe 10 through the exhaust pipe 7, the heat is diffused to outdoor environment cold air flow through the condensing section fin 11, and after the gas-state working media are condensed into liquid, the liquid flows back to the indoor heating section lower linkage box pipe 4 through the liquid collecting linkage box pipe 8. Therefore, non-power natural circulation temperature control in a control chamber is achieved.
Description
Technical field:
Title of the present utility model is free convection separation type heat pipe chamber temperature regulator, belongs to the air regulator field.It comprises bringing-up section fin 1, bringing-up section heat-pipe working medium pipe 2, bringing-up section upper header pipe 3, bringing-up section lower collecting box pipe 4, partition wall 5, liquid back pipe 6, blast pipe 7, liquid collecting header tube 8, air inlet header tube 9, the section of condensing heat-pipe working medium pipe 10, the section of condensing fin 11.After heating indoor section fin 1 is heated, heat can be passed to efficiently the section of condensing fin 11 and be distributed cold airflow to outdoor environment, thereby realize indoor Powerless loop temperature-control.
Background technology:
Temperature control between electric control chamber, nuclear power plant are controlled is all to adopt to use the air-conditioner Come that electric energy drives to realize, that existing cooling device has is air-cooled, three kinds of water-cooleds, transpiration-cooled.Air-cooledly be the Strongization heat transfer by low in the hot coefficient of Change, often install fin Come additional and enlarge heat exchange area outside heat exchanger tube, this certainly will will increase weight, volume and the cost of cooling device, and energy consumption also will strengthen simultaneously; Water-cooled will be added water pump, pond, and volume is also quite huge, and energy consumption is quite a few simultaneously; When running into the special circumstances of outage, air-conditioning system can not be worked, and the electronic device temperature in electric control chamber will continue to rise, and this can make the impact that power outage causes enlarge.Even can lead to major accident.
Summary of the invention:
In order to make up above-mentioned deficiency of the prior art, the utility model can provide a kind of free convection of not using exterior power and leaning on indoor/outdoor temperature-difference to form just can regulate the free convection separation type heat pipe chamber temperature regulator of indoor temperature.It should comprise bringing-up section fin (1), bringing-up section heat-pipe working medium pipe (2), bringing-up section upper header pipe (3), bringing-up section lower collecting box pipe (4), partition wall (5), liquid back pipe (6), blast pipe (7), liquid collecting header tube (8), air inlet header tube (9), the section of condensing heat-pipe working medium pipe (10), the section of condensing fin (11); The entrance that it is characterized in that an end of bringing-up section lower collecting box pipe (4) and bringing-up section heat-pipe working medium pipe (2) links affixed, and the outlet of the other end of hot arc lower collecting box pipe (4) and liquid back pipe (6) links affixed; The entrance of the outlet of bringing-up section heat-pipe working medium pipe (2) and bringing-up section upper header pipe (3) links affixed, the entrance of the outlet of bringing-up section upper header pipe (3) and blast pipe (7) links affixed, and the entrance of the outlet of blast pipe (7) and air inlet header tube (9) links affixed; The entrance of the outlet of air inlet header tube (9) and the section of condensing heat-pipe working medium pipe (10) links affixed, and the entrance of the outlet of the section of condensing heat-pipe working medium pipe (10) and liquid back pipe (6) links affixed; 2~1000 bringing-up section fins 1 evenly and closely cloth are listed in into snakelike bringing-up section heat-pipe working medium pipe (2) outside; 2~1000 section of condensing fins (11) evenly and closely cloth are listed in into the outside of the snakelike section of condensing heat-pipe working medium pipe (10); Charged heat-pipe working medium in bringing-up section heat-pipe working medium pipe (2), bringing-up section upper header pipe (3), bringing-up section lower collecting box pipe (4), liquid back pipe (6), blast pipe (7), liquid collecting header tube (8), air inlet header tube (9), the section of condensing heat-pipe working medium pipe (10).
Description of drawings:
Fig. 1. be free convection separation type heat pipe chamber temperature regulator system diagram,
Wherein: 1--bringing-up section fin; 2--bringing-up section heat-pipe working medium pipe; 3--bringing-up section upper header pipe; 4--bringing-up section lower collecting box pipe; The 5--partition wall; The 6--liquid back pipe; The 7--blast pipe; 8--liquid collecting header tube; 9--air inlet header tube; The 10--section of condensing heat-pipe working medium pipe; The 11--section of condensing fin.The entrance of one end of bringing-up section lower collecting box pipe (4) and bringing-up section heat-pipe working medium pipe (2) links affixed, and the outlet of the other end of hot arc lower collecting box pipe (4) and liquid back pipe (6) links affixed; The entrance of the outlet of bringing-up section heat-pipe working medium pipe (2) and bringing-up section upper header pipe (3) links affixed, the entrance of the outlet of bringing-up section upper header pipe (3) and blast pipe (7) links affixed, and the entrance of the outlet of blast pipe (7) and air inlet header tube (9) links affixed; The entrance of the outlet of air inlet header tube (9) and the section of condensing heat-pipe working medium pipe (10) links affixed, and the entrance of the outlet of the section of condensing heat-pipe working medium pipe (10) and liquid back pipe (6) links affixed; 2~1000 bringing-up section fins (1) evenly and closely cloth are listed in into snakelike bringing-up section heat-pipe working medium pipe (2) outside; 2~1000 section of condensing fins (11) evenly and closely cloth are listed in into the outside of the snakelike section of condensing heat-pipe working medium pipe (10); Charged heat-pipe working medium in bringing-up section heat-pipe working medium pipe (2), bringing-up section upper header pipe (3), bringing-up section lower collecting box pipe (4), liquid back pipe (6), blast pipe (7), liquid collecting header tube (8), air inlet header tube (9), the section of condensing heat-pipe working medium pipe (10).
The specific embodiment:
Fig. 1 is the free convection separation type heat pipe chamber temperature regulator system diagram of nuclear power plant control room also.
If when generation emergency episode station service stopped to supply fully, in nuclear power station, all air-conditionings were inactive, the temperature in the control room must rise.when the Indoor Thermal air from top to down, flowing through bringing-up section fin (1) heats fin, because fin is to be fastened on bringing-up section heat-pipe working medium pipe (2), just heat is passed to the interior heat-pipe working medium of bringing-up section heat-pipe working medium pipe (2), and make it to flow to bringing-up section upper header pipe (3) along hot arc heat-pipe working medium pipe (2) after gasification, after sending into the section of condensing heat-pipe working medium pipe (10) along blast pipe (7) again, distributed to the outdoor environment cold airflow by the section of condensing fin (11), after working medium is condensed into liquid, just poly-in liquid collecting header tube (8) through the section of condensing heat-pipe working medium pipe (10) by the liquid deadweight, be back to again heating indoor section lower collecting box pipe (4).So just, realize the free convection circulation of working medium, reached the purpose of unpowered control indoor temperature.
Claims (1)
1. free convection separation type heat pipe chamber temperature regulator, it comprises bringing-up section fin (1), bringing-up section heat-pipe working medium pipe (2), bringing-up section upper header pipe (3), bringing-up section lower collecting box pipe (4), partition wall (5), liquid back pipe (6), blast pipe (7), liquid collecting header tube (8), air inlet header tube (9), the section of condensing heat-pipe working medium pipe (10), the section of condensing fin (11); The entrance that it is characterized in that an end of bringing-up section lower collecting box pipe (4) and bringing-up section heat-pipe working medium pipe (2) links affixed, and the outlet of the other end of hot arc lower collecting box pipe (4) and liquid back pipe (6) links affixed; The entrance of the outlet of bringing-up section heat-pipe working medium pipe (2) and bringing-up section upper header pipe (3) links affixed, the entrance of the outlet of bringing-up section upper header pipe (3) and blast pipe (7) links affixed, and the entrance of the outlet of blast pipe (7) and air inlet header tube (9) links affixed; The entrance of the outlet of air inlet header tube (9) and the section of condensing heat-pipe working medium pipe (10) links affixed, and the entrance of the outlet of the section of condensing heat-pipe working medium pipe (10) and liquid back pipe (6) links affixed; 2~1000 bringing-up section fins (1) evenly and closely cloth are listed in into snakelike bringing-up section heat-pipe working medium pipe (2) outside; 2~1000 section of condensing fins (11) evenly and closely cloth are listed in into the outside of the snakelike section of condensing heat-pipe working medium pipe (10); Charged heat-pipe working medium in bringing-up section heat-pipe working medium pipe (2), bringing-up section upper header pipe (3), bringing-up section lower collecting box pipe (4), liquid back pipe (6), blast pipe (7), liquid collecting header tube (8), air inlet header tube (9), the section of condensing heat-pipe working medium pipe (10).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220274529 CN202928411U (en) | 2012-06-12 | 2012-06-12 | Natural convection split type heat pipe room temperature adjuster |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220274529 CN202928411U (en) | 2012-06-12 | 2012-06-12 | Natural convection split type heat pipe room temperature adjuster |
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CN202928411U true CN202928411U (en) | 2013-05-08 |
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CN 201220274529 Expired - Fee Related CN202928411U (en) | 2012-06-12 | 2012-06-12 | Natural convection split type heat pipe room temperature adjuster |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104006686A (en) * | 2014-05-14 | 2014-08-27 | 华南理工大学 | Detachable type combined heat pipe |
-
2012
- 2012-06-12 CN CN 201220274529 patent/CN202928411U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104006686A (en) * | 2014-05-14 | 2014-08-27 | 华南理工大学 | Detachable type combined heat pipe |
CN104006686B (en) * | 2014-05-14 | 2016-03-02 | 华南理工大学 | A kind of detachable combination heat pipe |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130508 Termination date: 20140612 |