CN201535560U - Multi-function intelligent fresh air ventilator - Google Patents

Multi-function intelligent fresh air ventilator Download PDF

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Publication number
CN201535560U
CN201535560U CN2009200578321U CN200920057832U CN201535560U CN 201535560 U CN201535560 U CN 201535560U CN 2009200578321 U CN2009200578321 U CN 2009200578321U CN 200920057832 U CN200920057832 U CN 200920057832U CN 201535560 U CN201535560 U CN 201535560U
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CN
China
Prior art keywords
work
districts
air
casing
heat exchanger
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2009200578321U
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Chinese (zh)
Inventor
谭锦光
孙明冬
江巨成
谭锦坚
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
GUANGDONG ZHENGYE ELECTRIC APPLIANCE CO Ltd
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GUANGDONG ZHENGYE ELECTRIC APPLIANCE CO Ltd
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Priority to CN2009200578321U priority Critical patent/CN201535560U/en
Application granted granted Critical
Publication of CN201535560U publication Critical patent/CN201535560U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a multi-function intelligent fresh air ventilator, which belongs to the technical field of ventilators. The fresh air ventilator comprises a casing, a heat exchanger equipped inside the casing, a first separator and a second separator equipped inside the casing. One end of the first separator is connected with one casing end and the other end of the first separator is connected with the heat exchanger. One end of the first separator is connected with the other casing end and the other end of the first separator is connected with the heat exchanger. The first separator, the second separator and the heat exchanger divide the casing into a first working region, a second working region, a third working region and a fourth working region, wherein the fourth working region is provided with a temperature sensor, the second working region an air intake ventilator, and the third working region an air discharging ventilator. The utility model further comprises a single chip microcomputer automatic control device which is respectively electrically connected with the temperature sensor, the humidity sensor, the air pollution sensor, the air intake ventilator, the air discharging ventilator and the synchronous motor. The utility model is simple in structure but can effectively realize intelligent automatic control, which is also energy-saving and environment friendly.

Description

A kind of multifunctional intellectual fresh air ventilator
Technical field:
The utility model belongs to the ventilator technical field, relates in particular to a kind of multifunctional intellectual fresh air ventilator.
Background technology:
Air quality is a very important part of living environment, along with improving constantly of people's living standard, living environment is also had higher requirement.For keeping room air fresh, improve IAQ, the indoor air-changing machine is widely used, and is installed in places such as dwelling house, commercial office building, hotel's office building, meeting room, market, exhibition center, museum, hospital, sanatorium at home as ventilator miscellaneous.Existing fresh air ventilator generally comprises casing, heat-exchange device, blower fan, motor, filter etc.Heat-exchange device, blower fan, motor, filter etc. are contained in the casing, adorn two air inlets and two air outlets on the casing.Two blower fans are worked simultaneously, two-way ventilation, and blower fan is discharged to indoor foul atmosphere by pipeline outdoor, and another blower and pipeline is introduced outdoor fresh air indoor.Be discharged to the indoor fresh air of outdoor foul atmosphere and introducing and in heat-exchange device, carry out energy exchange.This type of fresh air ventilator has only a kind of mode of operation, i.e. the start two-way ventilation in back, energy exchange, air filtration.So there are following shortcomings and deficiencies in existing ventilator: the one, along with the continuous development of industrial or agricultural, outside air is also polluted in various degree, and existing ventilator can not effectively improve air quality; The 2nd, no automatic regulatory function, the rotation of blower fan constant speed, power consumption is big, is unfavorable for energy-conserving and environment-protective; The 3rd, when outside air temperature is low, freeze easily in the machine, influence ventilator service life.
The utility model content:
The purpose of this utility model is intended to overcome existing ventilator product and has only a kind of mode of operation deficiency and defective in design, and a kind of multifunctional intellectual fresh air ventilator of being realized Based Intelligent Control by the single-chip microcomputer automaton is provided.
The utility model is mainly realized the multi-functional and Based Intelligent Control of fresh air ventilator by following technical solution:
A kind of multifunctional intellectual fresh air ventilator, it comprises casing, is located at the heat exchanger in the casing, is located at first dividing plate and second partition in the casing, and described first dividing plate, one end is connected with the casing end plate, and the other end of first dividing plate is connected with heat exchanger; Described second partition one end is connected with another end plate of casing, and the other end of second partition is connected with heat exchanger; Described first dividing plate and second partition and heat exchanger are divided into work one district, work two districts, work three districts and four districts of working with casing; Work one district is communicated with work three districts by the passage of being located in the heat exchanger, and work two districts are communicated with work four districts by the passage of being located in the heat exchanger; The casing in work one district is provided with first indoor air inlet; The casing in work two districts is provided with new wind outlet, and new wind outlet inboard is provided with air intake blower fan; The casing in work three districts is provided with dirty wind outlet, and the inboard of dirty wind outlet is provided with the air draft blower fan; The casing in work four districts is provided with outdoor air inlet and another indoor air inlet; Also comprise a single-chip microcomputer automaton, described single-chip microcomputer automaton is electrically connected with air intake blower fan and air draft blower fan respectively, the single-chip microcomputer automaton is electrically connected with temperature sensor and synchronous motor in being located at work four districts, also is electrically connected with the humidity sensor that is contained in indoor correct position, air pollution sensor.
Also be provided with one second indoor air inlet on the casing in wherein said work four districts.
Wherein said work is provided with synchronous motor and temperature inductor in four districts, and synchronous motor and temperature inductor are electrically connected with the single-chip microcomputer automaton.
The windward side of heat exchanger is provided with the filter cotton floor in wherein said work four districts.
The windward side of heat exchanger is provided with the filter cotton floor in wherein said work one district.
In wherein said work two districts, be provided with photocatalyst layer between heat exchanger air outlet and the new wind outlet, be provided with ultraviolet lamp outside the windward side of photocatalyst layer.
The utility model beneficial effect is: the utility model is simple in structure, it comprises casing, is located at the heat exchanger in the casing, is located at first dividing plate and second partition in the casing, described first dividing plate, one end is connected with the casing end plate, and the other end of first dividing plate is connected with heat exchanger; Described second partition one end is connected with another end plate of casing, the other end of second partition is connected with heat exchanger, in addition, also comprise a single-chip microcomputer automaton, described single-chip microcomputer automaton is electrically connected with air intake blower fan and air draft blower fan respectively, the single-chip microcomputer automaton is electrically connected with temperature sensor in being located at work four districts, also is electrically connected with the humidity sensor that is contained in indoor correct position, air pollution sensor.The utility model has been realized the intellectuality work of ventilator effectively, than prior art, the automaticity height is arranged, characteristics such as energy-conserving and environment-protective.
Description of drawings:
Fig. 1 is the utility model planar structure schematic diagram.
Reference numeral:
The dirty wind outlet of 1-, 2-casing, 3-heat exchanger, 4-filter cotton layer, the 5-temperature sensor, 6-air port baffle plate, 7-second indoor air inlet, 8-synchronous motor, the outdoor air inlet of 9-, 10-first indoor air inlet, 11-ultraviolet lamp, 12-photocatalyst layer, the new wind outlet of 13-, 14-air intake blower fan, 15-air draft blower fan, the 16-district of working, 17-two districts of working, 18-three districts of working, 19-four districts of working, 20-first dividing plate, 21-second partition
The specific embodiment:
Below in conjunction with accompanying drawing the technical solution of the utility model is described further:
As shown in Figure 1, a kind of multifunctional intellectual fresh air ventilator of the utility model, it comprises casing 2, be located at the heat exchanger 3 in the casing 2, be located at first dividing plate 20 and second partition 21 in the casing 2, described first dividing plate, 20 1 ends are connected with casing 2 end plates, and the other end of first dividing plate 20 is connected with heat exchanger 3; Described second partition 21 1 ends are connected with casing 2 another end plates, and the other end of second partition 21 is connected with heat exchanger 3; Described first dividing plate 20 and second partition 21 and heat exchanger 3 are divided into work one district 16, work two districts 17, work three districts 18 and four districts 19 of working with casing 2; Work one district 16 is communicated with work three districts 18 by the passage of being located in the heat exchanger 3, and work two districts 17 are communicated with work four districts 19 by the passage of being located in the heat exchanger 3; The casing 2 in work one district 16 is provided with first indoor air inlet 10; The casing 2 in work two districts 17 is provided with new wind outlet 13, and new wind exports 13 inboards and is provided with air intake blower fan 14; The casing 2 in work three districts 18 is provided with dirty wind outlet 1, and the inboard of dirty wind outlet 1 is provided with air draft blower fan 15; The casing 2 in work four districts 19 is provided with outdoor air inlet 9, also is provided with one second indoor air inlet 7 on the casing 2 in work four districts 19.
Under the drive of air intake blower fan 14, air enters the 4th workspace 19 from outdoor through outdoor air inlet 9 or from second indoor air inlet 7, after filtering through filter cotton 4 again the passage through being located at heat exchanger 3 in enter work two districts 17, through behind ultraviolet lamp (11) and the photocatalyst layer (12) by warp newly wind export in 13 inlet chambers.Under the drive of air draft blower fan 15, room air enters work one district 16 from first indoor air inlet 10, and the pipeline in being located at heat exchanger 3 enters work three districts 18 again, by discharging outdoor through dirty wind outlet 1.
The utility model also comprises a single-chip microcomputer automaton (not shown), described single-chip microcomputer automaton is electrically connected with air intake blower fan 14 and air draft blower fan 15 respectively, the single-chip microcomputer automaton also be located at work four districts 19 in temperature sensor 5 be electrically connected.In addition, the single-chip microcomputer automaton is electrically connected with being located at work four districts 19 inner synchronous machines 8, is electrically connected with the humidity sensor and the air pollution inductor that are installed in the outer indoor appropriate location of machine.When the ventilation built-in temperature is lower than 0 ℃, temperature sensor 5 sends relevant information to the single-chip microcomputer automaton, the single-chip microcomputer automaton sends instruction to air intake blower fan 14 and air draft blower fan 15, reduces air intake blower fan 14 rotating speeds or improves air draft blower fan 15 rotating speeds; Behind one section setting-up time, if the ventilation built-in temperature still is lower than 0 ℃, the single-chip microcomputer automaton will send instruction to synchronous motor 8, synchronous motor 8 starts, close chamber's external air inlet mouth 9, indoor hot-air enters from second indoor air inlet 7, and new blower fan enters deice mode, after deicing was finished, machine entered original mode of operation automatically.
The windward side of heat exchanger 3 is provided with filter cotton floor 4 in work four districts 19, and the windward side of heat exchanger 3 is provided with filter cotton floor 4 in work one district 16, and filter cotton layer 4 mainly has been the effect of leaching trifle in the world matter.No matter enter the air in work three districts 18 from the district 16 of working, still enter the air in work two districts 17 from four districts 19 of working, palpus filter through filter cotton layer 4 earlier.
In work two districts 17, be provided with photocatalyst layer 12 between heat exchanger 3 air outlets and the new wind outlet 13, be provided with ultraviolet lamp 11 outside the windward side of photocatalyst layer 12.Air through heat exchanger 3 carries out indoor preceding palpus earlier through photocatalyst layer 12; As everyone knows, the photocatalyst on the photocatalyst layer 12 can effectively decompose many organic substances under the irradiation of ultraviolet lamp 11, reaches the purpose of sterilizing.The air that enters work two districts 17 in inlet chamber before, handle through 12 layers of sterilizing of photocatalyst layer earlier.
In addition, for improving intelligent degree of the present utility model, can be at indoor correct position installing air pollution inductor and air humidity inductor, air pollution inductor and air humidity inductor are electrically connected with the single-chip microcomputer automaton.As indoor humidity and pollutant (smog, CO, CO 2, formaldehyde etc.) when reaching setting value, air pollution inductor or air humidity inductor send instruction to the single-chip microcomputer automaton, the top gear operation will be opened or jump to automatically to the utility model automatically, discharge indoor wet gas or foul atmosphere at a high speed.When indoor humidity and pollution were lower than setting value, the utility model was with autostop or get back to underdrive operating automatically.
This is practical newly can realize highly intelligent, the rotary speed that can regulate air intake blower fan 14 and air draft blower fan 15 automatically with the air quality variation, when air is up to standard, the utility model will be got back to original mode of operation automatically, effective energy savings, pure and fresh room air.
The above only is a better embodiment of the present utility model, so all equivalences of doing according to the described structure of the utility model patent claim, feature and principle change or modify, is included in the utility model patent claim.

Claims (5)

1. multifunctional intellectual fresh air ventilator, it comprises casing (2), be located at the heat exchanger (3) in the casing (2), be located at first dividing plate (20) and second partition (21) in the casing (2), described first dividing plate (20) one end connect box (2) end plates, the other end of first dividing plate (20) is connected with heat exchanger (3); Described second partition (21) one another end plates of end connect box (2), the other end of second partition (21) is connected with heat exchanger (3); Described first dividing plate (20) and second partition (21) and heat exchanger (3) are divided into work one district (16), work two districts (17), work three districts (18) and four districts (19) of working with casing (2); Work one district (16) is communicated with work three districts (18) by the passage of being located in the heat exchanger (3), and work two districts (17) are communicated with work four districts (19) by the passage of being located in the heat exchanger (3); The casing (2) in work one district (16) is provided with first indoor air inlet (10); The casing (2) in work two districts (17) is provided with new wind outlet (13), and new wind outlet (13) inboard is provided with air intake blower fan (14); The casing (2) in work three districts (18) is provided with dirty wind outlet (1), and the inboard of dirty wind outlet (1) is provided with air draft blower fan (15); The casing (2) in work four districts (19) is provided with outdoor air inlet (9), second indoor air inlet (7) and synchronous motor (8), and air port baffle plate (6) is housed on the synchronous motor.It is characterized in that: also comprise a single-chip microcomputer automaton, described single-chip microcomputer automaton is electrically connected with air intake blower fan (14) and air draft blower fan (15) respectively, and single-chip microcomputer automaton temperature sensor (5) and the synchronous motor electricity (8) interior with being located at work four districts (19) is electrically connected; The single-chip microcomputer automaton also is electrically connected with the humidity sensor that is contained in indoor correct position, air pollution sensor.
2. a kind of multifunctional intellectual fresh air ventilator according to claim 2, it is characterized in that: be provided with synchronous motor (8) in described work four districts (19), synchronous motor (8) and single-chip microcomputer automaton are electrically connected, and the rotation of control air port baffle plate opens or closes air inlet (9) and air inlet (7).
3. a kind of multifunctional intellectual fresh air ventilator according to claim 2 is characterized in that: the windward side of the interior heat exchangers in described work four districts (19) (3) is provided with filter cotton floor (4).
4. a kind of multifunctional intellectual fresh air ventilator according to claim 3 is characterized in that: the windward side of the interior heat exchanger in described work one district (16) (3) is provided with filter cotton floor (4).
5. a kind of multifunctional intellectual fresh air ventilator according to claim 3, it is characterized in that: in described work two districts (17), be provided with photocatalyst layer (12) between heat exchanger (3) air outlet and the new wind outlet (13), be provided with ultraviolet lamp (11) outside the windward side of photocatalyst layer (12).
CN2009200578321U 2009-06-03 2009-06-03 Multi-function intelligent fresh air ventilator Expired - Fee Related CN201535560U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009200578321U CN201535560U (en) 2009-06-03 2009-06-03 Multi-function intelligent fresh air ventilator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009200578321U CN201535560U (en) 2009-06-03 2009-06-03 Multi-function intelligent fresh air ventilator

Publications (1)

Publication Number Publication Date
CN201535560U true CN201535560U (en) 2010-07-28

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CN2009200578321U Expired - Fee Related CN201535560U (en) 2009-06-03 2009-06-03 Multi-function intelligent fresh air ventilator

Country Status (1)

Country Link
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102466306A (en) * 2010-11-04 2012-05-23 森德(中国)暖通设备有限公司 Heat exchange ventilator
CN102679503A (en) * 2012-06-05 2012-09-19 上海市七宝中学 Indoor heat exchange control method
CN104236056B (en) * 2013-06-07 2017-04-26 恩科(苏州)通风系统有限公司 Intelligent total heat exchanger
CN109307342A (en) * 2017-07-27 2019-02-05 银成化学株式会社 The heat recovery air interchanger and its control method of indoor air quality can be managed

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102466306A (en) * 2010-11-04 2012-05-23 森德(中国)暖通设备有限公司 Heat exchange ventilator
CN102466306B (en) * 2010-11-04 2014-04-23 森德(中国)暖通设备有限公司 Heat exchange ventilator
CN102679503A (en) * 2012-06-05 2012-09-19 上海市七宝中学 Indoor heat exchange control method
CN104236056B (en) * 2013-06-07 2017-04-26 恩科(苏州)通风系统有限公司 Intelligent total heat exchanger
CN109307342A (en) * 2017-07-27 2019-02-05 银成化学株式会社 The heat recovery air interchanger and its control method of indoor air quality can be managed

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Legal Events

Date Code Title Description
GR01 Patent grant
C14 Grant of patent or utility model
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100728

Termination date: 20170603

CF01 Termination of patent right due to non-payment of annual fee