CN203177346U - Air generator of forest oxygen bar - Google Patents
Air generator of forest oxygen bar Download PDFInfo
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- CN203177346U CN203177346U CN2013201959810U CN201320195981U CN203177346U CN 203177346 U CN203177346 U CN 203177346U CN 2013201959810 U CN2013201959810 U CN 2013201959810U CN 201320195981 U CN201320195981 U CN 201320195981U CN 203177346 U CN203177346 U CN 203177346U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
- Y02B30/70—Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating
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Abstract
The utility model relates to an air generator of a forest oxygen bar. The air generator of the forest oxygen bar comprises an outdoor machine and an indoor machine, wherein a coarse filter element assembly, a refined filter element assembly, an oxygen permeable membrane core assembly and an electronic control proportion regulating valve are arranged in an outdoor machine casing, an air-exchange induced draft fan and a silent fan are arranged in an indoor machine casing, and the outdoor machine and the indoor machine are connected through an oxygen enrichment tube and an oxygen uptake tube. The air generator of the forest oxygen bar can manually generate high-oxygen-content, pollution-free and high-quality air equal to or better than air in a natural forest environment and exchange indoor foul air, can achieve 21.5-22% of air oxygen content and the air filter precision smaller than 1 etam, can perform disinfection, sterilization, purification and humidity control to the indoor air, achieve indoor air exchange effect and displaying and quantitative management of an air oxygen content meter and implement automatic monitoring, accordingly performs indoor air treatment effectively, appropriately improves the oxygen content of the indoor air and the quality of the indoor air and provides a good living and working environment for people.
Description
Technical field:
The utility model relates to and a kind ofly contains oxygen, pollution-free, high quality air and indoor dirty gas is replaced the air cleaning unit of adjusting for the manufacture of natural forest environment height.
Background technology:
Along with economic construction, the high speed development of science and technology and people are to improving constantly that the living space air quality requires, and the kind of air cleaning unit constantly pushes away newly, and range of application enlarges day by day.Yet existing various air cleaning units mainly are to adopt the indoor local circulation increase negative ion amount that purifies air, and can not thoroughly improve the room air pollution situation, can not appropriateness improve the room air oxygen content.
Summary of the invention:
The purpose of this utility model is to provide a kind of can manually produce the high forest oxygen bar gas generator that contains oxygen, pollution-free, high quality air and indoor dirty gas is replaced adjusting in the natural forest environment.
Above-mentioned purpose of the present utility model is to realize like this, this kind forest oxygen bar gas generator comprises off-premises station and indoor set two parts, wherein outdoor machine part is by outdoor shell, the coarse filter element assembly, smart element kit, the oxygen permeable membrane core assembly, filter air-introduced machine, vavuum pump, automatically controlled ratio adjusting valve, distribution cavity, oxygen rich air outlet and base are formed, and the indoor set part is by the indoor set housing, the carbon absorbing unit, light matchmaker unit, the anion unit, humidity adjustment unit, quiet fan, No. 1 lambda sensor, No. 2 lambda sensors, the displacement air-introduced machine, micro computer and display screen, outer exhaust outlet, forest oxygen bar gas vent, self-styled oxygen uptake interface is formed; Be connected with Oxygen tube by low oxygen enrichment pipe between two parts.This equipments overall structure, assembled relation are as follows: be horizontally arranged with coarse filter element assembly, smart element kit and oxygen permeable membrane core assembly in the outdoor shell from top to bottom successively, the three inboard is separately fixed on the interior base of casing, and wherein coarse filter element assembly, the corresponding end of smart element kit are interconnected up and down; The base opposite side is equipped with the filtration air-introduced machine, the smart element kit port of export is connected with the filtration air-introduced machine, the bottom is provided with distribution cavity and vavuum pump, filtering air-introduced machine is connected with distribution cavity, distribution cavity is connected with vavuum pump with the oxygen enrichment pipe by essence filter tracheae, is provided with automatically controlled ratio adjusting valve between smart filter tracheae and the oxygen enrichment pipe; Indoor set housing internal upper part is provided with the displacement air-introduced machine, the middle part is vertically arranged with carbon absorbing unit, light matchmaker unit, anion unit, humidity adjustment unit successively, the bottom is provided with quiet fan, and the housing upper inner is provided with outer exhaust outlet and No. 2 lambda sensors, and the bottom is provided with lambda sensor No. 1; Middle side part is provided with micro computer and display screen and self-styled oxygen uptake interface outside the indoor set housing front, and the bottom is provided with forest oxygen bar gas vent; Off-premises station and indoor set are connected by low oxygen enrichment pipe and Oxygen tube.
The course of work of this kind forest oxygen bar gas generator is as follows: air enters the filtration air-introduced machine through smart element kit again through the coarse filter element assembly after entering off-premises station, filter the air-introduced machine outlet and connect distribution cavity, the smart air filtering of a part enters the exocoel between oxygen permeable membrane core and the housing, utilize the membrane separation technique vavuum pump to extract oxygen-enriched air out from oxygen permeable membrane in-core chamber and enter automatically controlled ratio adjusting valve (the rich nitrogen outside the oxygen permeable membrane core is discharged to the atmosphere), the smart air filtering another part of drawing from distribution cavity enters automatically controlled ratio adjusting valve, and the low oxygen-enriched air of smart air filtering and oxygen-enriched air mixed synthesizing oxygen-containing amount 22% enters indoor set by pipeline under microcomputerized control; The low oxygen-enriched air that enters indoor set forms high-quality artificial forest oxygen bar gas by carbon absorbing unit, light matchmaker unit, anion unit, humidity adjustment unit processing back and blows into indoor through quiet fan.
The utility model is applied to cubicle adopts convection type when replacing artificial forest oxygen bar gas, and forest oxygen bar gas is blown out downwards in indoor convection circulation by indoor set, and indoor foul atmosphere is extracted out discharged to outdoor from indoor set top; The utility model is applied to big room to be adopted when replacing artificial forest oxygen bar gas to connect and directly drives mode, and one end is blown out by indoor set forest oxygen bar gas in the room, and indoor foul atmosphere is discharged outdoor at the room other end by the displacement air-introduced machine.The utility model is applied to adopt between northern calefactory the method displacement of forest oxygen bar gas heating.
Forest oxygen bar gas generator in the course of the work, the displacement air-introduced machine is controlled automatically regularly by micro computer and is started once every certain hour (can adjust), the oxygen content information of discharging gas by No. 2 lambda sensors detections that are installed in the displacement air-introduced machine is delivered to micro computer, microcomputerized control starts complete machine work when the room air oxygen content is lower than 21.5%, and forest oxygen bar gas carries out indoor displacement; No. 2 lambda sensors detect the room air oxygen content and reach at 22% o'clock, and microcomputerized control is shut down and entered resting state; No. 1 lambda sensor is responsible for detecting the information that indoor set blows out forest oxygen bar oxygen content gas and is delivered to micro computer, and oxygen-enriched air and smart air filtering mixing ratio that control enters automatically controlled ratio adjusting valve remain forest oxygen bar oxygen content gas more than 22%.
The beneficial effects of the utility model are, forest oxygen bar gas generator can manually produce to reach or be better than natural forest environment height and contain oxygen, pollution-free, high quality air, and indoor dirty gas is replaced; Can realize air oxygen content 21.5-22%, the air filtration precision is less than 1 η m, and can be to low oxygen-enriched air sterilization, sterilization, purification, humidity regulation, realizes that room air replacement result and the demonstration of air oxygen content instrument, quantitative management and enforcement monitors automatically.Administer thereby carry out room air effectively, appropriateness improves the oxygen content of room air, improves IAQ, provides the same life in forest oxygen bar, working environment to people.
Description of drawings:
Fig. 1 is forest oxygen bar gas generator general structure schematic diagram, and wherein Fig. 1-1 is front view, Fig. 1-2 be indoor set A to view, Fig. 1-3 is that off-premises station B is to sectional structure chart.
Fig. 2 is off-premises station structure and air flow schematic diagram.
Fig. 3 is indoor machine structure and air flow schematic diagram.
Fig. 4 is oxygen permeable membrane core assembly structure chart, and wherein Fig. 4-1 is its front view, and Fig. 4-2, Fig. 4-3 is respectively side view and partial enlarged drawing.
Fig. 5 is cubicle convection current displacement schematic diagram.
Fig. 6 is that big room connects the displacement schematic diagram.
Fig. 7 replaces schematic diagram between calefactory, number in the figure " 29 " is heater.
Fig. 8 is forest oxygen bar gas generator microcomputerized control schematic diagram.
1. indoor set housings among the figure, 2. micro computer and display screen, No. 3.2 lambda sensors, 4. outer exhaust outlet is 5. replaced air-introduced machine, 6. outdoor shell, 7. coarse filter element assembly, 8. smart element kit, 9. oxygen permeable membrane core assembly, 10. filtration air-introduced machine, 11. smart filter tracheaes, 12. automatically controlled ratio adjusting valves, 13. the oxygen enrichment pipe, 14. vavuum pumps, 15. take out the oxygen enrichment pipe, 16. distribution cavity, 17. bases, 18. rich nitrogen outlets, 19. quiet fan, 20. carbon absorbing units, 21. smooth matchmaker unit, 22.1 number lambda sensor, 23. anion unit, 24. humidity adjustment unit, 25. forest oxygen bar gas vent, 26. self-styled oxygen uptake interfaces, 27. low oxygen enrichment pipes, 28. Oxygen tube, 29. heater, 30. oxygen permeable membrane core end caps, 31. orifice plates, 32. steel mesh, 33. oxygen permeable membranes.
The specific embodiment:
Below in conjunction with accompanying drawing enforcement of the present utility model is described further.
As shown in Figure 1, this kind forest oxygen bar gas generator comprises off-premises station and indoor set two parts, and wherein outdoor machine part is made up of outdoor shell 6, coarse filter element assembly 7, smart element kit 8, oxygen permeable membrane core assembly 9, filtration air-introduced machine 10, vavuum pump 14, automatically controlled ratio adjusting valve 12, distribution cavity 16, rich nitrogen outlet 18 and base 17; The indoor set part is made up of carbon absorbing unit 20, light matchmaker unit 21, anion unit 23, humidity adjustment unit 24, quiet fan 19, No. 1 lambda sensor 22, No. 2 lambda sensors 3, displacement air-introduced machine 5, micro computer and display screen 2, outer outlet 4, forest oxygen bar gas vent 25 and oxygen uptake interfaces 26; Be connected with Oxygen tube 28 by oxygen enrichment pipe 27 between two parts.This equipments overall structure, assembled relation is as follows: be horizontally arranged with coarse filter element assembly 7 in the outdoor shell 6 from top to bottom successively, smart element kit 8 and oxygen permeable membrane core assembly 9 three inboards are separately fixed on the base 17 in the casing 6, wherein the coarse filter element assembly 7, smart element kit 8 corresponding ends are interconnected up and down, base 17 opposite sides are equipped with and filter air-introduced machine 10, smart element kit 8 ports of export are connected with filtration air-introduced machine 10, the lower part is provided with distribution cavity 16 and vavuum pump 14, filtering air-introduced machine 10 is connected with distribution cavity 16, distribution cavity 16 is connected with vavuum pump 14 with oxygen enrichment pipe 13 by essence filter tracheae 11, is provided with automatically controlled ratio adjusting valve 12 between smart filter tracheae 11 and the oxygen enrichment pipe 13; Indoor set top is provided with displacement air-introduced machine 5, the middle part is vertically arranged with carbon absorbing unit 20, light matchmaker unit 21, anion unit 23, humidity adjustment unit 24 successively, the bottom is provided with quiet fan 19, housing 1 upper inner is provided with outer exhaust outlet 4 and No. 2 lambda sensors 3, and the bottom is provided with lambda sensor 22 No. 1; Indoor set housing 1 positive outer middle side part is provided with micro computer and display screen 2 and self-styled oxygen uptake interface 26, and the bottom is provided with forest oxygen bar gas vent 25; Indoor set is connected with Oxygen tube 28 by low oxygen enrichment pipe 27 with off-premises station.Wherein coarse filter element assembly 7, smart element kit 8 (see figure 2)s are cylinder, are made by filtering material is folding; Oxygen permeable membrane core assembly 9 (see figure 4)s are cylindrical, and apply steel mesh 32 by oxygen permeable membrane 33 both sides and be folded into the cylindrical tube of " W " shape continuously, liner cylinder orifice plate 31, two ends are provided with end cap 30 sealing and fixing.
The course of work air flow of off-premises station is shown in arrow among Fig. 2 in the utility model: air enters filtration air-introduced machine 10 through smart element kit 8 again through coarse filter element assembly 7 after entering off-premises station, filter air-introduced machine 10 outlets and connect distribution cavity 16, the smart air filtering of a part enters the exocoel between oxygen permeable membrane core 9 and the housing, utilize oxygen permeable membrane isolation technics vavuum pump 14 to extract oxygen-enriched air out from oxygen permeable membrane core 9 inner chambers and enter automatically controlled control ratio adjusting valve 12, the smart air filtering another part of drawing from distribution cavity 16 enters automatically controlled ratio adjusting valve 12, and automatically controlled ratio adjusting valve 12 low oxygen-enriched air of smart air filtering and oxygen-enriched air mixed synthesizing oxygen-containing amount 22% under micro computer 2 control enters indoor set by hanging down oxygen enrichment pipe 27.
The course of work air flow of indoor set is shown in arrow among Fig. 3 in the utility model: the low oxygen-enriched air of the indoor set that enters enters indoor set by pipeline and forms high-quality artificial forest oxygen bar gas and blow into indoor through quiet fan 19 by carbon absorbing unit 20, light matchmaker unit 21, anion unit 23, humidity adjustment unit 24 processing backs.
The utility model adopts the convection type displacement when being applied to cubicle, cross-ventilation displacement path is shown in arrow direction indication among Fig. 5 in its course of work, forest oxygen bar gas is blown out downwards in indoor convection circulation by indoor set, and indoor foul atmosphere is extracted out discharged to outdoor from indoor set top.
Adopt when the utility model is applied to big room to connect and directly drive substitute mode, its course of work air displacement path is shown in arrow direction indication among Fig. 6, one end is blown out by indoor set forest oxygen bar gas in the room, and indoor foul atmosphere is discharged outdoor at the room other end by the displacement air-introduced machine.
When being applied between northern calefactory, adopts the utility model the method displacement of heating.Need install air heater 29 additional this moment at indoor set, and its course of work air displacement path is shown in arrow direction indication among Fig. 7.
The microcomputerized control principle as shown in Figure 8 in the utility model course of work, when forest oxygen bar gas generator is worked, displacement air-introduced machine 5 is controlled regularly automatically by micro computer 2 and is started once every certain hour (can adjust), be delivered to micro computer 2 by the oxygen content information that is installed in No. 2 lambda sensors 3 detection discharge gases in the displacement air-introduced machine 5, micro computer 2 controls start complete machine work when the room air oxygen content is lower than 21.5%, and forest oxygen bar gas carries out indoor displacement; No. 2 lambda sensors 3 detect the room air oxygen content and reach at 22% o'clock; micro computer 2 controls are shut down and are entered resting state; No. 1 lambda sensor 22 is responsible for detecting the information that indoor sets 1 blow out forest oxygen bar oxygen content gas and is delivered to micro computer 2, and oxygen-enriched air and smart air filtering mixing ratio that control enters automatically controlled ratio adjusting valve 12 remain forest oxygen bar oxygen content gas more than 22%.
Claims (7)
1. a forest oxygen bar gas generator comprises off-premises station and outdoor interior two parts, is connected with Oxygen tube (28) by oxygen enrichment pipe (27) between two parts; Wherein outdoor machine part is made up of outdoor shell (6), coarse filter element assembly (7), smart element kit (8), oxygen permeable membrane core assembly (9), filtration air-introduced machine (10), vavuum pump (14), automatically controlled ratio adjusting valve (12), distribution cavity (16), oxygen rich air outlet (18) and base (17); The indoor set part is made up of indoor set housing (1), carbon absorbing unit (20), light matchmaker unit (21), anion unit (23), humidity adjustment unit (24), quiet fan (19), No. 1 lambda sensor (22), No. 2 lambda sensors (3), displacement air-introduced machine (5), micro computer and display screen (2), outer exhaust outlet (4), forest oxygen bar gas vent (25), oxygen uptake interface (26); It is characterized in that:, be horizontally arranged with coarse filter element assembly (7) in the outdoor shell (6) from top to bottom successively, smart element kit (8) and oxygen permeable membrane core assembly (9) three inboard are separately fixed on the interior base (17) of casing (6), coarse filter element assembly (7) wherein, the corresponding end of smart element kit (8) is interconnected up and down, base (17) opposite side is equipped with and filters air-introduced machine (10), smart element kit (8) port of export is connected with filtration air-introduced machine (10), the lower part is provided with distribution cavity (16) and vavuum pump (14), filtering air-introduced machine (10) is connected with distribution cavity (16), distribution cavity (16) is connected with vavuum pump (14) with oxygen enrichment pipe (13) by smart filter tracheae (11), and smart filter tracheae (11) and oxygen enrichment pipe (13) are communicated with automatically controlled ratio adjusting valve (12) respectively; Indoor set housing (1) internal upper part is provided with displacement air-introduced machine (5) middle part and is vertically arranged with carbon absorbing unit (20), light matchmaker unit (21), anion unit (23), humidity adjustment unit (24) successively, the bottom is provided with quiet fan (19), housing (1) upper inner is provided with outer exhaust outlet (4) and No. 2 lambda sensors (3), and the bottom is provided with No. 1 lambda sensor (22); The positive outer middle side part of indoor set housing (1) is provided with micro computer and display screen (2) and self-styled oxygen uptake interface (26), and the bottom is provided with forest oxygen bar gas vent (25); Indoor set and off-premises station are connected by low oxygen enrichment pipe (27) and Oxygen tube (28).
2. forest according to claim 1 oxygen bar gas generator, it is characterized in that: air enters behind the off-premises station and to pass through smart element kit (8) again through coarse filter element assembly (7) and enter and filter air-introduced machine (10), filter air-introduced machine (10) outlet and connect distribution cavity (16), the smart air filtering of a part enters the exocoel between oxygen permeable membrane core (9) and the housing, utilize oxygen permeable membrane isolation technics vavuum pump (14) to extract oxygen-enriched air out from oxygen permeable membrane core (9) inner chamber and enter automatically controlled control ratio adjusting valve (12), the smart air filtering another part of drawing from distribution cavity (16) enters automatically controlled ratio adjusting valve (12), and the low oxygen-enriched air of smart air filtering and oxygen-enriched air mixed synthesizing oxygen-containing amount 22% enters indoor set by low oxygen enrichment pipe (27) under micro computer (2) control.
3. forest according to claim 1 oxygen bar gas generator, it is characterized in that: oxygen permeable membrane core assembly (9) is cylindrical, apply steel mesh (32) by oxygen permeable membrane (33) both sides and be folded into the cylindrical tube of " W " continuously, liner cylinder orifice plate (31), two ends are provided with end cap (30) sealing and fixing.
4. forest according to claim 1 oxygen bar gas generator, it is characterized in that: this forest oxygen bar gas generator adopts the convection type displacement when being applied to cubicle, forest oxygen bar gas is blown out downwards in indoor convection circulation by indoor set, and indoor foul atmosphere is extracted out discharged to outdoor from indoor set top.
5. forest according to claim 1 oxygen bar gas generator, it is characterized in that: adopt when this forest oxygen bar gas generator is applied to big room to connect and directly drive substitute mode, one end is blown out by indoor set forest oxygen bar gas in the room, and indoor foul atmosphere is discharged outdoor at the room other end by the displacement air-introduced machine.
6. forest according to claim 1 oxygen bar gas generator, it is characterized in that: adopt the method displacement of heating when this forest oxygen bar gas generator is applied between northern calefactory, need install air heater (29) additional this moment at indoor set.
7. forest according to claim 1 oxygen bar gas generator, it is characterized in that: this forest oxygen bar gas generator work is by microcomputerized control: displacement air-introduced machine (5) by micro computer (2) automatically control regularly start once every certain hour, be delivered to micro computer (2) by the oxygen content information that is installed in No. 2 lambda sensors (3) the detection discharge gas in the displacement air-introduced machine (5), micro computer when the room air oxygen content is lower than 21.5% (2) control starts complete machine work, and forest oxygen bar gas carries out indoor displacement; No. 2 lambda sensors (3) detect the room air oxygen content and reach at 22% o'clock; micro computer (2) control is shut down and is entered resting state; the information that No. 1 lambda sensor (22) responsible detection indoor set (1) blows out forest oxygen bar oxygen content gas is delivered to micro computer (2); oxygen-enriched air and smart air filtering mixing ratio that control enters automatically controlled ratio adjusting valve (12) remain forest oxygen bar oxygen content gas more than 22%.
Priority Applications (1)
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CN2013201959810U CN203177346U (en) | 2013-04-18 | 2013-04-18 | Air generator of forest oxygen bar |
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CN2013201959810U CN203177346U (en) | 2013-04-18 | 2013-04-18 | Air generator of forest oxygen bar |
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CN2013201959810U Expired - Fee Related CN203177346U (en) | 2013-04-18 | 2013-04-18 | Air generator of forest oxygen bar |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103175266A (en) * | 2013-04-18 | 2013-06-26 | 姜成华 | Forest oxygen bar gas generator |
CN103776105A (en) * | 2014-01-29 | 2014-05-07 | 张伟斌 | Air purification equipment |
-
2013
- 2013-04-18 CN CN2013201959810U patent/CN203177346U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103175266A (en) * | 2013-04-18 | 2013-06-26 | 姜成华 | Forest oxygen bar gas generator |
CN103175266B (en) * | 2013-04-18 | 2015-08-12 | 姜成华 | forest oxygen bar gas generator |
CN103776105A (en) * | 2014-01-29 | 2014-05-07 | 张伟斌 | Air purification equipment |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
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: 20130904 Termination date: 20160418 |