CN205454357U - Data center air current control system - Google Patents
Data center air current control system Download PDFInfo
- Publication number
- CN205454357U CN205454357U CN201620191735.1U CN201620191735U CN205454357U CN 205454357 U CN205454357 U CN 205454357U CN 201620191735 U CN201620191735 U CN 201620191735U CN 205454357 U CN205454357 U CN 205454357U
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- data center
- ventilation duct
- control valve
- center module
- outfan
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Abstract
The utility model discloses a data center air current control system, including static pressure case, data computer lab, electricity distribution room and control center, the output of static pressure case is connected with total ventilation pipe, be provided with magenetic exchange valve on the ventilation pipe, magenetic exchange valve's output is connected with data computer lab ventilation pipe and electricity distribution room ventilation pipe respectively, bottom in the data computer lab is provided with temperature and humidity sensor, upward the ventilation pipe passes data computer lab air intake with lower ventilation pipe and installs top and bottom in the data computer lab respectively, top in the electricity distribution room is provided with temperature sensor, and the output of first ventilation pipe is connected with the compressed air drying ware, the output of compressed air drying ware passes data computer lab air intake through the pipeline and lies in the data computer lab. This data center air current control system has the advantage that the integrated level is high, control is meticulous, can set up suitable air supply mode according to actual conditions.
Description
Technical field
This utility model relates to data center's control system technical field, is specially a kind of data center jet system.
Background technology
Preserve in machine room at large-scale data storage, cloud application server, substantial amounts of server can be placed with, the heat that these servers can produce in running, and it is in the consideration in safety and antidetonation, machine room is traditionally arranged to be in the closed room of high anti-seismic grade, ventilation effect is bad, and the heat causing server to produce is difficult to shed, and machine room needs special jet system cool down and ventilate.But, existing air cooling system integrated level is the highest, it has not been convenient to carry out overall control.
Utility model content
The purpose of this utility model is to provide a kind of data center jet system, with the problem solving to propose in above-mentioned background technology.
nullFor achieving the above object,This utility model following technical scheme of offer: a kind of data center jet system,Including plenum chamber、Data center module、Switchgear house and control centre,The outfan of described plenum chamber connects total ventilation duct,It is provided with solenoid directional control valve on described ventilation duct,The outfan of described solenoid directional control valve is connected to data center module ventilation duct and switchgear house ventilation duct,It is provided with the first control valve on described data center module ventilation duct,The outfan of described first control valve connects upper ventilation duct and lower ventilation duct,The left and right sides of described data center module is respectively arranged with data center module air inlet and data center module air outlet,Bottom in described data center module is provided with Temperature Humidity Sensor,Described upper ventilation duct and lower ventilation duct pass top and the bottom that data center module air inlet is separately mounted in data center module,And the outfan of upper ventilation duct and lower ventilation duct is all connected with data center module air outlet,It is provided with the second control valve on described switchgear house ventilation duct,The outfan of described second control valve connects first time ventilation duct,The left end of described switchgear house is provided with switchgear house air inlet,Top in described switchgear house is provided with temperature sensor,The bottom that described first time ventilation duct is arranged in switchgear house through switchgear house air inlet,And the outfan connection of first time ventilation duct has compressed-air drier,The outfan of described compressed-air drier is positioned at data center module by pipeline through data center module air inlet,Described upper ventilation duct、Exhaust vent is all had on lower ventilation duct and first time ventilation duct,Described control centre and plenum chamber、Solenoid directional control valve、First control valve and the second control valve are a Circuits System.
Preferably, described solenoid directional control valve is two-bit triplet solenoid directional control valve.
Preferably, the outfan of described compressed-air drier is provided with the 3rd control valve.
nullCompared with prior art,The beneficial effects of the utility model are: notebook data central gas stream control system,Plenum chamber carries wind by total ventilation duct to data center module and switchgear house,Data center module is data storages、Cloud application server integration hub,It is generally required to understand the humiture of work space in time,Temperature Humidity Sensor is arranged on the bottom of data center module,The data storage in its space can well be measured、The temperature and humidity of cloud application server work space,When reaching preset value,Temperature Humidity Sensor works,The solenoid directional control valve upper ventilation duct of conducting and lower ventilation duct is controlled by control centre,Top and bottom blowing,Form convection current thus heat and the humidity of data center module are taken away,The heat that in switchgear house, power equipment work is converged is the driest,Cross-ventilation thus be gathered in the top of switchgear house,Therefore it is arranged on the temperature sensor on top in switchgear house and can well measure its interior temperature,Controlling solenoid directional control valve by control centre makes first time ventilation duct turn on,After coordinating compressed-air drier to be further dried by hot-air simultaneously,In feeding data center module,The humidity of air in data center module can be eliminated.
Accompanying drawing explanation
Fig. 1 is this utility model structural representation.
In figure: 1 plenum chamber, 2 total ventilation ducts, 20 solenoid directional control valves, 3 data center module ventilation ducts, 30 first control valves, ventilation duct, 32 times ventilation ducts, 4 switchgear house ventilation ducts, 40 second control valves, 41 first times ventilation ducts, 5 data center modules, 50 data center module air inlets, 51 data center module air outlets, 6 switchgear houses, 60 switchgear house air inlets, 61 exhaust vents, 7 Temperature Humidity Sensors, 8 temperature sensors, 9 compressed-air driers, 90 the 3rd control valves, 10 control centres on 31.
Detailed description of the invention
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is clearly and completely described, it is clear that described embodiment is only a part of embodiment of this utility model rather than whole embodiments.Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art are obtained under not making creative work premise, broadly fall into the scope of this utility model protection.
nullRefer to Fig. 1,A kind of technical scheme of this utility model offer: a kind of data center jet system,Including plenum chamber 1、Data center module 5、Switchgear house 6 and control centre 10,The outfan of plenum chamber 1 connects total ventilation duct 2,Solenoid directional control valve 20 it is provided with on ventilation duct 2,Solenoid directional control valve 20 is two-bit triplet solenoid directional control valve,The outfan of solenoid directional control valve 20 is connected to data center module ventilation duct 3 and switchgear house ventilation duct 4,The first control valve 30 it is provided with on data center module ventilation duct 3,The outfan of the first control valve 30 connects upper ventilation duct 31 and lower ventilation duct 32,The left and right sides of data center module 5 is respectively arranged with data center module air inlet 50 and data center module air outlet 51,Bottom in data center module 5 is provided with Temperature Humidity Sensor 7,Upper ventilation duct 31 and lower ventilation duct 32 are separately mounted to the top in data center module 5 and bottom through data center module air inlet 50,And the outfan of upper ventilation duct 31 and lower ventilation duct 32 is all connected with data center module air outlet 51,The second control valve 40 it is provided with on switchgear house ventilation duct 4,The outfan of the second control valve 40 connects first time ventilation duct 41.
The left end of switchgear house 6 is provided with switchgear house air inlet 60, top in switchgear house 6 is provided with temperature sensor 8, first time ventilation duct 41 is arranged on the bottom in switchgear house 6 through switchgear house air inlet 60, and the outfan connection of first time ventilation duct 41 has compressed-air drier 9, the outfan of compressed-air drier 9 is provided with the 3rd control valve 90, the outfan of compressed-air drier 9 is positioned at data center module 5 by pipeline through data center module air inlet 50, upper ventilation duct 31, exhaust vent 61 is all had on lower ventilation duct 32 and first time ventilation duct 41, control centre 10 and plenum chamber 1, solenoid directional control valve 20, first control valve 30 and the second control valve 40 are a Circuits System.
nullPlenum chamber 1 carries wind by total ventilation duct 2 to data center module 5 and switchgear house 6,Data center module 5 is data storages、Cloud application server integration hub,It is generally required to understand the humiture of work space in time,Temperature Humidity Sensor 7 is arranged on the bottom of data center module 5,The data storage in its space can well be measured、The temperature and humidity of cloud application server work space,When reaching preset value,Temperature Humidity Sensor 7 works,The solenoid directional control valve 20 upper ventilation duct 31 of conducting and lower ventilation duct 32 is controlled by control centre 10,Top and bottom blowing,Form convection current thus heat and the humidity of data center module 5 are taken away,The heat that in switchgear house, 6 power equipment work are converged is the driest,Cross-ventilation thus be gathered in the top of switchgear house 6,Therefore it is arranged on the temperature sensor 8 on top in switchgear house 6 and can well measure its interior temperature,Controlling solenoid directional control valve 20 by control centre 10 makes first time ventilation duct 41 turn on,After coordinating compressed-air drier 9 to be further dried by hot-air simultaneously,Send in data center module 5,The humidity of 5 air in data center module can be eliminated.
Embodiment the most of the present utility model, for the ordinary skill in the art, being appreciated that in the case of without departing from principle of the present utility model and spirit and these embodiments can carry out multiple change, revise, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.
Claims (3)
- null1. data center's jet system,Including plenum chamber (1)、Data center module (5)、Switchgear house (6) and control centre (10),It is characterized in that: the outfan of described plenum chamber (1) connects total ventilation duct (2),Solenoid directional control valve (20) it is provided with on described ventilation duct (2),The outfan of described solenoid directional control valve (20) is connected to data center module ventilation duct (3) and switchgear house ventilation duct (4),It is provided with the first control valve (30) on described data center module ventilation duct (3),The outfan of described first control valve (30) connects upper ventilation duct (31) and lower ventilation duct (32),The left and right sides of described data center module (5) is respectively arranged with data center module air inlet (50) and data center module air outlet (51),Bottom in described data center module (5) is provided with Temperature Humidity Sensor (7),Described upper ventilation duct (31) and lower ventilation duct (32) are separately mounted to the top in data center module (5) and bottom through data center module air inlet (50),And the outfan of upper ventilation duct (31) and lower ventilation duct (32) is all connected with data center module air outlet (51),It is provided with the second control valve (40) on described switchgear house ventilation duct (4),The outfan of described second control valve (40) connects first time ventilation duct (41),The left end of described switchgear house (6) is provided with switchgear house air inlet (60),Top in described switchgear house (6) is provided with temperature sensor (8),Described first time ventilation duct (41) is arranged on the bottom in switchgear house (6) through switchgear house air inlet (60),And the outfan connection of first time ventilation duct (41) has compressed-air drier (9),The outfan of described compressed-air drier (9) is positioned at data center module (5) by pipeline through data center module air inlet (50),Described upper ventilation duct (31)、Exhaust vent (61) is all had on lower ventilation duct (32) and first time ventilation duct (41),Described control centre (10) and plenum chamber (1)、Solenoid directional control valve (20)、First control valve (30) and the second control valve (40) are a Circuits System.
- A kind of data center the most according to claim 1 jet system, it is characterised in that: described solenoid directional control valve (20) is two-bit triplet solenoid directional control valve.
- A kind of data center the most according to claim 1 jet system, it is characterised in that: the outfan of described compressed-air drier (9) is provided with the 3rd control valve (90).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620191735.1U CN205454357U (en) | 2016-03-14 | 2016-03-14 | Data center air current control system |
Applications Claiming Priority (1)
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CN201620191735.1U CN205454357U (en) | 2016-03-14 | 2016-03-14 | Data center air current control system |
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CN205454357U true CN205454357U (en) | 2016-08-10 |
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CN201620191735.1U Expired - Fee Related CN205454357U (en) | 2016-03-14 | 2016-03-14 | Data center air current control system |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106786065A (en) * | 2017-01-27 | 2017-05-31 | 长葛市和合电气有限公司 | The power distribution cabinet alternately dried |
CN107771002A (en) * | 2016-08-15 | 2018-03-06 | 湖南中车时代电动汽车股份有限公司 | Electric machine controller cooling system and the method applied to the system |
-
2016
- 2016-03-14 CN CN201620191735.1U patent/CN205454357U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107771002A (en) * | 2016-08-15 | 2018-03-06 | 湖南中车时代电动汽车股份有限公司 | Electric machine controller cooling system and the method applied to the system |
CN106786065A (en) * | 2017-01-27 | 2017-05-31 | 长葛市和合电气有限公司 | The power distribution cabinet alternately dried |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CB03 | Change of inventor or designer information |
Inventor after: Xu Chenmin Inventor before: Tang Zhenhuan |
|
COR | Change of bibliographic data | ||
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: 20160810 Termination date: 20190314 |