CN103134128B - Machine room equipment radiating device for directly radiating to outside of machine room - Google Patents

Machine room equipment radiating device for directly radiating to outside of machine room Download PDF

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Publication number
CN103134128B
CN103134128B CN201310059971.9A CN201310059971A CN103134128B CN 103134128 B CN103134128 B CN 103134128B CN 201310059971 A CN201310059971 A CN 201310059971A CN 103134128 B CN103134128 B CN 103134128B
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China
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heat
machine room
heat collection
collection radiator
chamber
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Expired - Fee Related
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CN201310059971.9A
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Chinese (zh)
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CN103134128A (en
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秦卫民
秦齐
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Individual
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Individual
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Abstract

The invention relates to a machine room equipment radiating device for directly radiating to the outside of a machine room. The radiating device comprises a heat discharging chimney, a heat collection radiator, a chamber of the heat collection radiator, heat conducting strip plates, heat collection columns, a temperature sensor, a temperature control fan, an air channel of the temperature control fan, a dust screen and a support of the dust screen. The heat collection radiator is composed of heat collection plates, radiating fins and more than two support lugs, the chamber of the heat collection radiator is fixed on a ceiling of the machine room through a flange, the heat discharging chimney is fixed on a roof of the machine room through a flange and communicated with the chamber of the heat collection radiator, an upper port of the air channel is communicated with a lower port of the chamber of the heat collection radiator, the temperature control fan is mounted on a port, communicated with the outside, of the air channel, the heat conducting strip plates are fixedly connected with radiating fins of heating devices of machine room equipment through the heat collection columns, and upper ends of the heat conducting strip plates are fixedly connected with the support lugs. The machine room equipment radiating device has the advantages that radiating efficiency can be improved, heat discharged by the equipment to the inside of the machine room is greatly reduced and completely eradicated, and power consumption of air conditioners is lowered greatly.

Description

The heat abstractor that calculator room equipment dispels the heat outward directly to machine room
Technical field
The present invention relates to the heat abstractor that a kind of calculator room equipment dispels the heat directly to machine room outward.
Background technology
How existing calculator room equipment heat radiation, implement " the indirect heat extraction of secondary transducing " by air-conditioning, implement " a direct heat extraction of transducing " on a small quantity by VMC.The former drawback is that efficiency is low, power consumption large, and the latter's drawback is that dust-proof, damp proof sequel is many.
Summary of the invention
Technical problem to be solved by this invention is to provide the heat abstractor that a kind of calculator room equipment dispels the heat directly to machine room outward.
The technical solution adopted for the present invention to solve the technical problems:
The present invention includes heat extraction chimney, heat collection radiator and chamber thereof, heat conduction batten, adopt plume, temperature sensor, temperature control blower fan and air channel thereof and Air Filter and bearing thereof;
Described heat collection radiator is made up of the journal stirrup of collecting plate, fin and more than 2; Described collecting plate is the rectangular slab be made up of heat-conducting, and described fin is distributed on two sides of collecting plate symmetrically, and described journal stirrup is positioned on two sides of collecting plate;
Described heat collection radiator chamber is fixed on the ceiling of machine room by flange; Heat collection radiator is positioned at heat collection radiator chamber, and journal stirrup stretches out heat collection radiator chamber;
Described heat extraction chimney is fixed on the roof of machine room by flange, and is connected with heat collection radiator chamber; Described heat collection radiator chamber is the chamber be made up of the fire-retardant material of thermal insulation;
Described air channel is the bellows be made up of heat-conducting, and its upper port is connected with the lower port of heat collection radiator chamber;
Described bearing is square-tube-shaped, and bearing is embedded in the wall of machine room, and Air Filter is fixed on bearing; Described temperature control blower fan is fixed between Air Filter and the lower port in air channel;
Described plume of adopting is the cylinder be made up of heat-conducting, and axially center is provided with through hole;
Described heat conduction batten is the heat-conducting plate be made up of heat-conducting, and its upper end is fixedly connected with journal stirrup by bolt; On heat conduction batten, cover has batten collet;
Described heat conduction batten is fixedly connected with the fin of the heater members of calculator room equipment by adopting plume, concrete connected mode for: described in adopt plume an end face contact with heat conduction batten, its another end face contacts with the fin of described heater members, and three is fixedly connected with by screw;
Described temperature sensor is arranged on journal stirrup.
The shell of described heat collection radiator chamber is tubular; The lateral surface profile of described heat collection radiator is the face of cylinder.
Described plume of adopting is cylinder.
Also comprise controller in the present invention, the input of controller is connected with the output of temperature sensor, and the output of controller controls the operation of temperature control blower fan.
Beneficial effect of the present invention is as follows:
The present invention can improve radiating efficiency, significantly reduce so that equipment of stopping to heat extraction in machine room and then significantly reduce air-conditioner power consumption, eliminate dust-proof, damp proof sequel simultaneously.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention.
Fig. 2 is the front view of heat collection radiator.
Fig. 3 is the top view of Fig. 2.
Fig. 4 is the I place enlarged drawing in Fig. 1.
Fig. 5 is that A in Fig. 1 is to partial view.
Fig. 6 is that B in Fig. 1 is to partial view.
In figs. 1-6,1 adopts plume, 2 heat conduction battens, 3 batten collets, 4 bolts, 5 heat collection radiator chambers, 6 heat extraction chimneys, 7 heat collection radiators, 7-1 journal stirrup, 7-2 fin, 7-3 collecting plate, 8 temperature sensors, 9 air channels, 10 screws, 11 temperature control blower fans, 12 Air Filters, 13 bearings, 14 machine rooms, 15 equipment, the fin of 16 heater members, 17 equipment shells.
Detailed description of the invention
From the embodiment shown in Fig. 1-6, it comprises heat extraction chimney 6, heat collection radiator 7 and chamber 5 thereof, heat conduction batten 2, adopt plume 1, temperature sensor 8, temperature control blower fan 11 and air channel 9 thereof and Air Filter 12 and bearing 13 thereof;
Described heat collection radiator 7 is made up of (number of journal stirrup depends on quantity and the distribution of calculator room equipment, and as Fig. 1 only employs two journal stirrups, other no journal stirrup jacket entangles) the journal stirrup 7-1 of more than collecting plate 7-3, fin 7-2 and 2; Described collecting plate 7-3 is the rectangular slab be made up of heat-conducting, and described fin 7-2 is distributed on two sides of collecting plate 7-3 symmetrically, on two sides that described journal stirrup 7-1 is positioned at collecting plate 7-3 (see Fig. 2 and Fig. 3);
Described heat collection radiator chamber 5 is fixed on by flange on the ceiling of machine room 14; Heat collection radiator 7 is positioned at heat collection radiator chamber 5, and journal stirrup 7-1 stretches out heat collection radiator chamber 5;
Described heat extraction chimney 6 is fixed on the roof of machine room 14 by flange, and is connected with heat collection radiator chamber 5; Described heat collection radiator chamber 5 is the chamber be made up of the fire-retardant material of thermal insulation;
Described air channel 9 is the bellows be made up of heat-conducting, and its upper port is connected with the lower port of heat collection radiator chamber 5;
Described bearing 13 is square-tube-shaped, and bearing 13 is embedded in the wall of machine room 14, and Air Filter 12 is fixed on bearing 13; (see figure 1) between the lower port that described temperature control blower fan 11 is fixed on Air Filter 12 and air channel 9;
Described plume 1 of adopting is the cylinder be made up of heat-conducting, and axially center is provided with through hole;
Described heat conduction batten 2 is the heat-conducting plate be made up of heat-conducting, and its upper end is fixedly connected with journal stirrup 7-1 by bolt 4; On heat conduction batten 2, cover has batten collet 3(to see Fig. 1);
Described heat conduction batten 2 is fixedly connected with the fin 16 of the heater members of calculator room equipment 15 by adopting plume 1, concrete connected mode for: described in adopt plume 1 an end face contact with heat conduction batten 2, its another end face contacts with the fin 16 of described heater members, and three is fixedly connected with (see Fig. 4-Fig. 6) by screw 10;
Described temperature sensor 8 is arranged on journal stirrup 7-1.
The shell of described heat collection radiator chamber 5 is tubular; The lateral surface profile of described heat collection radiator 7 is face of cylinder (see figure 3).
Described plume 1 of adopting is for cylinder.
Also comprise controller in the present embodiment, the input of the output termination controller of temperature sensor, the output of controller controls the operation of temperature control blower fan.
The course of work of the present embodiment is as follows:
Adopt the fin 16(heater members that plume 1 collects equipment heating device: high power valve, high-power chip, high power module, high-power silicon controlled rectifier etc.) heat that spreads out of, conduct to after heat collection radiator 7 through heat conduction batten 2, be directly discharged to outside machine room by heat collection radiator chamber 5 and heat extraction chimney 6.
When temperature sensor 8 detects that the temperature of heat collection radiator 7 is in setting range, temperature control blower fan 11 does not start, and heat collection radiator 7 passes through heat collection radiator chamber 5 with heat extraction chimney 6 by outside thermal current Natural excrement machine room.
When temperature sensor 8 detects that the temperature of heat collection radiator 7 is prescribed a time limit higher than on setting range, temperature control blower fan 11 starts forward air draft (see arrow direction in Fig. 1), strengthens heat extraction air quantity.Machine room is outer newly distinguished and admirable when air channel 9, reduces temperature in machine room by the conduction of its tube wall.
Prescribe a time limit under the temperature of heat collection radiator 7 is lower than setting range when temperature sensor 8 detects, temperature control blower fan 11 starts reverse air draft (namely in Fig. 1 with arrow rightabout), when in heat collection radiator chamber 5, air-flow flows through air channel 9 after being heated by heat collection radiator 7, by temperature in its tube wall conductive hoist machine room.

Claims (3)

1. the heat abstractor that dispels the heat outward directly to machine room of calculator room equipment, is characterized in that comprising heat extraction chimney (6), heat collection radiator (7) and chamber (5) thereof, heat conduction batten (2), adopts plume (1), temperature sensor (8), temperature control blower fan (11) and air channel (9) thereof and Air Filter (12) and bearing (13) thereof;
Described heat collection radiator (7) is made up of the journal stirrup (7-1) of collecting plate (7-3), fin (7-2) and more than 2; Described collecting plate (7-3) is the rectangular slab be made up of heat-conducting, and described fin (7-2) is distributed on two sides of collecting plate (7-3) symmetrically, and described journal stirrup (7-1) is positioned on two sides of collecting plate (7-3);
Described heat collection radiator chamber (5) is fixed on by flange on the ceiling of machine room (14); Heat collection radiator (7) is positioned at heat collection radiator chamber (5), and journal stirrup (7-1) stretches out heat collection radiator chamber (5);
Described heat extraction chimney (6) is fixed on the roof of machine room (14) by flange, and is connected with heat collection radiator chamber (5); Described heat collection radiator chamber (5) is the chamber be made up of the fire-retardant material of thermal insulation;
Described air channel (9) is the bellows be made up of heat-conducting, and its upper port is connected with the lower port of heat collection radiator chamber (5);
Described bearing (13) is square-tube-shaped, and bearing (13) is embedded in the wall of machine room (14), and Air Filter (12) is fixed on bearing (13); Described temperature control blower fan (11) is fixed between the lower port of Air Filter (12) and air channel (9);
Described to adopt plume (1) be the cylinder be made up of heat-conducting, and axially center is provided with through hole;
Described heat conduction batten (2) is the heat-conducting plate be made up of heat-conducting, and its upper end is fixedly connected with journal stirrup (7-1) by bolt (4); Batten collet (3) is had at the upper cover of heat conduction batten (2);
Described heat conduction batten (2) is fixedly connected with the fin (16) of the heater members of calculator room equipment (15) by adopting plume (1), concrete connected mode for: described in adopt plume (1) an end face contact with heat conduction batten (2), its another end face contacts with the fin (16) of described heater members, and three is fixedly connected with by screw (10);
Described temperature sensor (8) is arranged on journal stirrup (7-1).
2. the heat abstractor that dispels the heat outward directly to machine room of calculator room equipment according to claim 1, is characterized in that the shell of described heat collection radiator chamber (5) is tubular; The lateral surface profile of described heat collection radiator (7) is the face of cylinder.
3. the heat abstractor that dispels the heat outward directly to machine room of calculator room equipment according to claim 1 and 2, adopting plume (1) described in it is characterized in that is cylinder.
CN201310059971.9A 2013-02-26 2013-02-26 Machine room equipment radiating device for directly radiating to outside of machine room Expired - Fee Related CN103134128B (en)

Priority Applications (1)

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CN201310059971.9A CN103134128B (en) 2013-02-26 2013-02-26 Machine room equipment radiating device for directly radiating to outside of machine room

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Application Number Priority Date Filing Date Title
CN201310059971.9A CN103134128B (en) 2013-02-26 2013-02-26 Machine room equipment radiating device for directly radiating to outside of machine room

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CN103134128A CN103134128A (en) 2013-06-05
CN103134128B true CN103134128B (en) 2015-05-20

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4761966A (en) * 1984-10-19 1988-08-09 Walter Stark Dehumidification and cooling system
DE20216099U1 (en) * 2002-10-19 2004-03-04 Ingenieurbüro Timmer Reichel GmbH Raumtemperierungselement
JP3969479B2 (en) * 2002-05-20 2007-09-05 株式会社ヤノ技研 Thermal storage air conditioning equipment
CN201314659Y (en) * 2008-11-27 2009-09-23 上海凌御电气有限公司 Temperature balance structure for outdoor machine room
CN201715664U (en) * 2010-07-07 2011-01-19 湖北省烟草公司荆州市公司 Energy-saving control device for water-circling air conditioner in machine room
CN203132029U (en) * 2013-02-26 2013-08-14 秦卫民 Heat dissipating device allowing machine room equipment to directly dissipate heat to outside of machine room

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4761966A (en) * 1984-10-19 1988-08-09 Walter Stark Dehumidification and cooling system
JP3969479B2 (en) * 2002-05-20 2007-09-05 株式会社ヤノ技研 Thermal storage air conditioning equipment
DE20216099U1 (en) * 2002-10-19 2004-03-04 Ingenieurbüro Timmer Reichel GmbH Raumtemperierungselement
CN201314659Y (en) * 2008-11-27 2009-09-23 上海凌御电气有限公司 Temperature balance structure for outdoor machine room
CN201715664U (en) * 2010-07-07 2011-01-19 湖北省烟草公司荆州市公司 Energy-saving control device for water-circling air conditioner in machine room
CN203132029U (en) * 2013-02-26 2013-08-14 秦卫民 Heat dissipating device allowing machine room equipment to directly dissipate heat to outside of machine room

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Granted publication date: 20150520

Termination date: 20160226