CN206890747U - A kind of ventilation system for buildings with heating performance - Google Patents
A kind of ventilation system for buildings with heating performance Download PDFInfo
- Publication number
- CN206890747U CN206890747U CN201720701889.5U CN201720701889U CN206890747U CN 206890747 U CN206890747 U CN 206890747U CN 201720701889 U CN201720701889 U CN 201720701889U CN 206890747 U CN206890747 U CN 206890747U
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- China
- Prior art keywords
- air
- tracheae
- corridor
- air outlet
- heater
- Prior art date
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Classifications
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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
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/20—Solar thermal
-
- 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
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
Abstract
The utility model provides a kind of ventilation system for buildings with heating performance, including:Solar heat collector and the blast pipe being sequentially connected, purifier, corridor tracheae and indoor air inlet pipe;Solar heat collector includes:Solar energy circuit board, battery and heater;Heater includes:Circulating line, water pump, heater, thermoreceptor, controller;Described water pump, heater, thermoreceptor are respectively arranged on circulating line;The circulating line is located at the inside of corridor tracheae;Suction and conveying blower fan, water pump, heater, thermoreceptor, controller, magnetic valve are energized by battery.The utility model can also heat heating while ventilation, make holding ozone and comfortable temperature in each floor and each room.
Description
Technical field
The utility model belongs to building field, more particularly to a kind of ventilation system for buildings with heating performance.
Background technology
The building of the inhabitation of people at present be unable to do without ventilating system and is aerated ventilation to each floor and each room, but mesh
Preceding ventilating system is relatively simple, does not heat and purify the effect of air.Heating or air-conditioning are needed to use during heating, it is not only unrestrained
Take resource, and also add financial burden.Therefore, a kind of ventilating system for the integration that heats and divulge information is needed badly to meet people
Growing demand.
Utility model content
The purpose of this utility model is to provide a kind of described ventilation system for buildings with heating performance, in the same of ventilation
When can also heat heating, make to keep ozone and comfortable temperature in each floor and each room.
Technical scheme provided by the utility model:
A kind of ventilation system for buildings with heating performance, the ventilating system include:Solar heat collector and successively
Blast pipe, purifier, corridor tracheae and the indoor air inlet pipe of connection;Described blast pipe is located at building bottom, passes through suction
Pressure fan communicates with the external world;Described indoor air inlet pipe is located on the inside of house;The indoor row communicated with the external world is provided with the outside of house
Gas is fanned;The top of described corridor tracheae is provided with the roof ventilating fan being connected with the external world;
Described solar heat collector includes:Solar energy circuit board, battery and heater;Described solar energy collection
It is located at top of building into plate, described solar energy circuit board is connected with battery;Described heater includes:Circulation pipe
Road, water pump, heater, thermoreceptor, controller;Described water pump, heater, thermoreceptor are respectively arranged at circulation pipe
On road;The circulating line is located at the inside of corridor tracheae, and the bottom of corridor tracheae is passed through from top of building;
Described water pump, heater pass through solenoid valve control respectively;Described suction and conveying blower fan, water pump, heater, temperature sense
Receiver, controller, magnetic valve are energized by battery;Described thermoreceptor is connected with controller signals;Described control
Device is connected with solenoid signal.
Further, the outer wall of described corridor tracheae is provided with thermal insulation layer.
Further, described circulating line includes the first pipeline and second pipe for forming loop;The first described pipe
Road is passed through the bottom of corridor tracheae from top of building;Described second pipe is passed through building top from the bottom of corridor tracheae
Portion, the first described pipeline are provided with spherical buffer.
Further, described purifier includes successively from bottom to up:Water tank purification unit, activated carbon filter element and
Air optimizes unit;The water tank purification unit is provided with clarifier-tank;The air inlet pipe connection of the purifier is passed through clarifier-tank
Bottom;The top of the clarifier-tank is provided with water tank purification unit air outlet, and water tank purification unit air outlet and activated carbon filtering are single
First air inlet of first bottom is connected;Described activated carbon filter element is activated carbon adsorption layer, the first air outlet at the top of it
It is connected with the second air inlet of air optimization unit;The second air outlet and corridor tracheae phase of the air optimization unit
Even.
Further, described air optimization unit includes:Air monitor, ultraviolet sterilizer, anion generator, system
Oxygen device and cpu controller;Described air monitor is connected with cpu controller signal, described cpu controller respectively with it is ultraviolet
Sterilizer, anion generator and the connection of oxygen generator signal.
Further, described air monitor, ultraviolet sterilizer, anion generator, oxygen generator are energized by battery.
The utility model at least has one of the following advantages:
One, the utility model heating systems are integrated with ventilating system, and can also heat heating while ventilation, Shi Ge buildings
Ozone and comfortable temperature are kept in layer and each room.
Heating of the two, the utility model to ventilating system air, ventilating system and external environment is set to form hot pressing poor, from
And promote air-flow to enter each floor room from ventilating system, and the air-flow from interior to outdoor is formed, make indoor holding fresh
Air, and the pollution air for avoiding building extraneous enters room.
Three, the utility model can be purified effectively to air, can effectively remove large particulate matter, acid in air
Property gas, alkaline gas, germ and virus, while the oxicity of air, anion concentration can also be increased, improve air quality,
Can make that in each room of floor ozone can be kept.
Four, the utility model can effectively be adjusted to air quality, is protected and is included the temperature of air, humidity, oxicity, negative
Ion concentration, single room air quality can be also adjusted.
Five, the utility model are energized using solar energy, energy-conserving and environment-protective.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation that the utility model activated carbon filter element and air optimize unit;
Fig. 3 is the structural representation of the utility model clarifier-tank.
Embodiment
Embodiment 1
As shown in figure 1, a kind of ventilation system for buildings with heating performance, the ventilating system include:Solar energy heating fills
Blast pipe 2, purifier 3, corridor tracheae 4 and the indoor air inlet pipe 5 put 1 and be sequentially connected;Described blast pipe 2 is located at
Building bottom, communicated by suction and conveying blower fan 6 with the external world;Described indoor air inlet pipe 5 is located on the inside of house;It is provided with the outside of house
The indoor exhaust fan 7 communicated with the external world;The top of described corridor tracheae 4 is provided with the roof ventilating fan 8 being connected with the external world;
Described solar heat collector 1 includes:Solar energy circuit board 9, battery 10 and heater 11;It is described too
Positive energy circuit board 9 is located at top of building, and described solar energy circuit board 9 is connected with battery 10;Described heater
11 include:Circulating line 12, water pump 13, heater 14, thermoreceptor 15, controller;Described water pump 13, heater 14,
Thermoreceptor 15 is respectively arranged on circulating line 12;The circulating line 12 is located at the inside of corridor tracheae 4, and from building
The bottom of corridor tracheae 4 is passed through at the top of thing;
Described water pump 13, heater 14 pass through solenoid valve control respectively;Described suction and conveying blower fan 6, water pump 13, heater
14th, thermoreceptor 15, controller, magnetic valve are energized by battery;Described thermoreceptor 15 connects with controller signals
Connect;Described controller is connected with solenoid signal.
The utility model using too can circuit board absorb solar energy, and be changed into electrical power storage and enter in battery, by adding
Thermal heats to circulating line, the air in ventilating system corridor tracheae can be heated, each floor is given in ventilating system
While each room is passed through fresh air, offer heating is also played, has accomplished the integration that heats and ventilate.Further, since too
It is positive can heating of the heater to ventilating system air, ventilating system and external environment is formd hot pressing poor, so as to promote gas
Stream enters each floor room from ventilating system, and forms the air-flow from interior to outdoor, makes indoor holding ozone, and
And the air-flow outside building is avoided to get in.
The utility model detects the temperature in corridor tracheae by thermoreceptor, and transfers information to controller, leads to
The heating of controller analysis regulation heater is crossed, so as to which the air themperature in ventilating system be adjusted, is met to heating
Demand.
Embodiment 2
On the basis of embodiment 1, the outer wall of described corridor tracheae 4 is provided with thermal insulation layer.The utility model passes through in building
The outer wall of road tracheae is provided with thermal insulation layer, can effectively avoid influence of the heat to pipe-line system and building miscellaneous part, improves
The security of ventilating system.
Embodiment 3
On the basis of embodiment 1~2, described circulating line 12 includes the first pipeline 1201 and second for forming loop
Pipeline 1202;The first described pipeline 1201 is passed through the bottom of corridor tracheae 4 from top of building;Described second pipe
12002 are passed through top of building from the bottom of corridor tracheae 4, and the first described pipeline 1201 is provided with spherical buffer 16.This reality
, can be effective with new by setting spherical buffer in the first pipeline
Embodiment 4
On the basis of embodiment 1~3, described purifier 3 includes successively from bottom to up:Water tank purification unit 17,
Activated carbon filter element 18 and air optimization unit 19;The water tank purification unit 17 is provided with clarifier-tank 20;The purifier 3
Air inlet pipe 301 connect and be passed through the bottom of clarifier-tank 20;The top of the clarifier-tank 20 is provided with water tank purification unit air outlet
1701, water tank purification unit air outlet 1701 is connected with the first air inlet 1801 of the bottom of activated carbon filter element 18;Described
Activated carbon filter element 18 is activated carbon adsorption layer, the of the first air outlet 1802 at the top of it and air optimization unit 19
Two air inlets 1901 connect;Second air outlet 1902 of the air optimization unit 19 is connected with corridor tracheae 4.
The utility model uses single ventilating system, and the air after purification is passed through into each room by indoor air inlet pipe
And floor, make have good air in a floor and room.The utility model can effectively be subtracted by the setting of purifier
Harmful components in few air, are passed through water tank purification unit bottom by air first, are cleaned in pond, can effectively be removed
Go the large particulate matter of air and harmful components not soluble in water;Clean air is passed through activated carbon filter element, Neng Gouyou
Particle matter and germ and virus in effect absorption air, can effectively eliminate PM2.5.And air optimization unit can be removed further
The germ that goes in air, virus, while can also increase the oxygen content and anion concentration in air, improve air quality.
Embodiment 5
On the basis of embodiment 1~4, described air optimization unit 19 includes:Air monitor 21, ultraviolet sterilizer
22nd, anion generator 23, oxygen generator 24 and cpu controller;Described air monitor 21 is connected with cpu controller signal,
Described cpu controller is connected with ultraviolet sterilizer 22, anion generator 23 and the signal of oxygen generator 24 respectively.
Utility model can effectively be adjusted to air quality, protect the temperature for including air, humidity, oxicity, anion
Content, single room air quality can be also adjusted.The quality of air is detected by air monitor, by air quality
Information conveyance analyzed to cpu controller after, instruction ultraviolet sterilizer, anion generator, oxygen generator, thermoregulator
Quality and temperature, the humidity of air are adjusted with humidistat, adapt to the various requirement of people.
Embodiment 6
On the basis of embodiment 1~5, described air monitor 21, ultraviolet sterilizer 22, anion generator 23,
Oxygen generator 24 is energized by battery 10.Energized by battery, can effectively utilize solar energy, make ventilating system energy-conserving and environment-protective.
Embodiment 7
On the basis of embodiment 1~6, described clarifier-tank 20 includes:Potass pool 25, sour water pond 26 and clear water reserviors 27;
The air inlet pipe 301 of the purifier 3 is passed through the bottom of potass pool 25;The top of described potass pool 26 is provided with potass pool air-out
Mouth pipeline 2601;3rd air outlet 2602 of described potass pool air outlet pipeline 2601 is passed through the bottom in sour water pond 27;It is described
The top in sour water pond 27 be provided with sour water pond air outlet pipeline 2701;4th air-out of described sour water pond air outlet pipeline 2701
Mouth 2702 is passed through the bottom of clear water reserviors 28;The described top of clear water reserviors 28 is provided with water tank purification unit air outlet 1701.
The utility model is purified by the way that air first is passed through into potass pool, can effectively remove the deleterious acidic in air
Composition.Sour water pond is passed through again to be purified, can effectively remove the alkaline components in air, and is finally passed through clear water reserviors, is played
Cleaning and the effect of middle conjunction, by clarifier-tank of the present utility model, can effectively improve air quality, while can effectively reduce
Dust and particulate matter in air.
The utility model is limited it should be noted that above-described embodiment illustrates rather than to the utility model
System, and those skilled in the art can design alternative embodiment without departing from the scope of the appended claims.
In claim, any reference symbol between bracket should not be configured to limitations on claims.Word "comprising"
Element or step not listed in the claims is not excluded the presence of.Word "a" or "an" before element is not excluded for depositing
In multiple such elements.The utility model can be by means of including the hardware of some different elements and by means of appropriate volume
The computer of journey is realized.In if the unit claim of equipment for drying is listed, several in these devices can be logical
Same hardware branch is crossed to embody.The use of word first, second, and third does not indicate that any order.Can be by this
A little words are construed to title.
Claims (7)
1. a kind of ventilation system for buildings with heating performance, it is characterised in that the ventilating system includes:Solar heat collector
And the blast pipe (2), purifier (3), corridor tracheae (4) and the indoor air inlet pipe (5) that are sequentially connected (1);Described air intake
Pipe (2) is located at building bottom, is communicated by suction and conveying blower fan (6) with the external world;Described indoor air inlet pipe (5) is located in house
Side;The indoor exhaust communicated with the external world is provided with the outside of house and fans (7);The top of described corridor tracheae (4) is provided with and extraneous phase
Roof ventilating fan (8) even;
Described solar heat collector (1) includes:Solar energy circuit board (9), battery (10) and heater (11);It is described
Solar energy circuit board (9) be located at top of building, described solar energy circuit board (9) is connected with battery (10);It is described
Heater (11) include:Circulating line (12), water pump (13), heater (14), thermoreceptor (15), controller;Institute
Water pump (13), heater (14), the thermoreceptor (15) stated are respectively arranged on circulating line (12);The circulating line
(12) it is located at the inside of corridor tracheae (4), and the bottom of corridor tracheae (4) is passed through from top of building;
Described water pump (13), heater (14) pass through solenoid valve control respectively;Described suction and conveying blower fan (6), water pump (13) plus
Hot device (14), thermoreceptor (15), controller, magnetic valve are energized by battery;Described thermoreceptor (15) and control
Device signal connection processed;Described controller is connected with solenoid signal.
A kind of 2. ventilation system for buildings with heating performance according to claim 1, it is characterised in that described corridor
The outer wall of tracheae (4) is provided with thermal insulation layer.
A kind of 3. ventilation system for buildings with heating performance according to claim 1, it is characterised in that described circulation
Pipeline (12) includes the first pipeline (1201) and second pipe (1202) for forming loop;Described the first pipeline (1201) is from building
Build the bottom that corridor tracheae (4) are passed through at the top of thing;Described second pipe (12002) is passed through from the bottom of corridor tracheae (4) to be built
Build at the top of thing, described the first pipeline (1201) is provided with spherical buffer (16).
A kind of 4. ventilation system for buildings with heating performance according to claim 1, it is characterised in that described purification
Device (3) includes successively from bottom to up:Water tank purification unit (17), activated carbon filter element (18) and air optimization unit
(19);The water tank purification unit (17) is provided with clarifier-tank (20);Air inlet pipe (301) connection of the purifier (3) is passed through
The bottom of clarifier-tank (20);The top of the clarifier-tank (20) is provided with water tank purification unit air outlet (1701), water tank purification list
First air outlet (1701) is connected with first air inlet (1801) of activated carbon filter element (18) bottom;Described activated carbon filtering
Unit (18) is activated carbon adsorption layer, and the first air outlet (1802) at the top of it enters with the second of air optimization unit (19)
Air port (1901) connects;The second air outlet (1902) of the air optimization unit (19) is connected with corridor tracheae (4).
A kind of 5. ventilation system for buildings with heating performance according to claim 4, it is characterised in that described air
Optimization unit (19) includes:Air monitor (21), ultraviolet sterilizer (22), anion generator (23), oxygen generator (24) and
Cpu controller;Described air monitor (21) is connected with cpu controller signal, described cpu controller respectively with it is ultraviolet
Sterilizer (22), anion generator (23) and the connection of oxygen generator (24) signal.
A kind of 6. ventilation system for buildings with heating performance according to claim 4, it is characterised in that described air
Detector (21), ultraviolet sterilizer (22), anion generator (23), oxygen generator (24) are energized by battery (10).
A kind of 7. ventilation system for buildings with heating performance according to claim 1, it is characterised in that described purification
Pond (20) includes:Potass pool (25), sour water pond (26) and clear water reserviors (27);The air inlet pipe (301) of the purifier (3) is passed through
The bottom of potass pool (25);The top of described potass pool (26) is provided with potass pool air outlet pipeline (2601);Described buck
3rd air outlet (2602) of pond air outlet pipeline (2601) is passed through the bottom of sour water pond (27);The top in described sour water pond (27)
Portion is provided with sour water pond air outlet pipeline (2701);4th air outlet (2702) of described sour water pond air outlet pipeline (2701) is logical
Enter the bottom of clear water reserviors (28);Water tank purification unit air outlet (1701) is provided with the top of described clear water reserviors (28).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720701889.5U CN206890747U (en) | 2017-06-16 | 2017-06-16 | A kind of ventilation system for buildings with heating performance |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720701889.5U CN206890747U (en) | 2017-06-16 | 2017-06-16 | A kind of ventilation system for buildings with heating performance |
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Publication Number | Publication Date |
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CN206890747U true CN206890747U (en) | 2018-01-16 |
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CN201720701889.5U Expired - Fee Related CN206890747U (en) | 2017-06-16 | 2017-06-16 | A kind of ventilation system for buildings with heating performance |
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CN (1) | CN206890747U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107246698A (en) * | 2017-06-16 | 2017-10-13 | 成都市容德建筑劳务有限公司 | The ventilation system for buildings of integration |
-
2017
- 2017-06-16 CN CN201720701889.5U patent/CN206890747U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107246698A (en) * | 2017-06-16 | 2017-10-13 | 成都市容德建筑劳务有限公司 | The ventilation system for buildings of integration |
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Legal Events
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GR01 | Patent grant | ||
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: 20180116 Termination date: 20180616 |