CN202993578U - Perforated plate cavity type solar air heat collecting air supplying system - Google Patents

Perforated plate cavity type solar air heat collecting air supplying system Download PDF

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CN202993578U
CN202993578U CN 201220643354 CN201220643354U CN202993578U CN 202993578 U CN202993578 U CN 202993578U CN 201220643354 CN201220643354 CN 201220643354 CN 201220643354 U CN201220643354 U CN 201220643354U CN 202993578 U CN202993578 U CN 202993578U
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air
indoor
plate
pattern conversion
casing
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张勇
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/70Hybrid systems, e.g. uninterruptible or back-up power supplies integrating renewable energies
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems

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Abstract

The utility model relates to a perforated plate cavity type solar air heat collecting air supplying system, belongs to the field of solar photo-thermal utilization equipment, and particularly relates to a warm air supplying system which is used for heating in an indoor place in winter, solar drying and the like. The perforated plate cavity type solar air heat collecting air supplying system is characterized by comprising a plate cavity type heat collecting device and an indoor fan heater. The plate cavity type heat collecting device comprises a box body (1), a heating absorbing plate and an air outlet (7). A layer of heat preservation plate (3) is attached to the inner wall of the box body (1) in a coated mode, the air outlet (7) is formed on the top of the box body (1), the heat absorbing plate is installed on the side of the boxy body (1), and a plurality of ventilation holes (6) are distributed evenly in the heat absorbing plate. The air outlet (7) of the plate cavity type heat collecting device is communicated with an air inlet of the indoor fan heater through a ventilation conduit (9). Warm air is discharged into the indoor place through a warm air outlet of the indoor fan heater. The perforated plate cavity type solar air heat collecting air supplying system has the advantages of being reasonable in structure, energy-saving, high in solar heat utilization efficiency, clean, environment-friendly and the like.

Description

A kind of porous plate cavity-type solar air heat-collecting air feed system
Technical field
A kind of porous plate cavity-type solar air heat-collecting air feed system belongs to solar energy heat utilization apparatus field, is specifically related to a kind of warm braw supply system for the purposes such as indoor heating, solar drying in winter.
Background technology
Along with the continuous increase of the day by day in short supply and environmental protection pressure of coal, oil equal energy source, each state all begins to try hard to recommend regenerative resource.Wherein, development and utilization solar energy becomes new lover the most hot in regenerative resource, develops and utilizes solar energy to become trend of the times.At first, solar energy optical-thermal has developed for many years in China, but great majority all concentrate on solar water and use the field, a little less than the technological development relative thin of solar energy hot blast aspect, be not effectively utilized, compare solar water heating system in the application in the fields such as solar energy indoor heating, industrial products oven dry, agricultural product drying, the solar heat wind system is no matter all have more significantly advantage at aspects such as cost, technical stability, solar thermal utilization rates.Secondly, at present, most forms that adopt hot-water heating, hot air heating of domestic indoor heating, and hot-water heating and hot air heating are still the mode of fuel such as adopting electrical heating or coal, waste oil and produce, energy resource consumption more greatly, not environmental protection.
In recent years, although it is to adopt new air heat-exchange system that the part indoor heating system is also arranged, though alleviated to a certain extent the consumption of coal, natural gas equal energy source, but new air heat-exchange need to utilize electric energy to heat realization equally, consumption to electric energy is very large, present unfavorable new air heat-exchange system with electric energy, and heat transfer effect is unsatisfactory, heat utilization rate is low, and heating effect is poor.
Summary of the invention
The technical problems to be solved in the utility model is: overcome the deficiencies in the prior art, a kind of energy savings, the solar thermal utilization rate is high, heating effect is good porous plate cavity-type solar air heat-collecting air feed system are provided.
the technical scheme that its technical problem that solves the utility model adopts is: this kind porous plate cavity-type solar air heat-collecting air feed system, it is characterized in that: comprise plate cavate heat collector and indoor warm-air drier, plate cavate heat collector comprises casing, absorber plate and air outlet, paste the one layer of heat preservation plate on cabinet wall, an air outlet is offered at the casing top, an absorber plate is installed in the casing side, uniform a plurality of air vents on absorber plate, the air outlet of plate cavate heat collector is by the air inlet of warm-air drier in the ventilation shaft communication chamber, warm air outlet by indoor warm-air drier enters warm braw indoor.
Described indoor warm-air drier is indoor machine, the first warm air outlet of comprise cabinet, be arranged on centrifugal blower in cabinet, air channel, the first electric heater unit and cabinet top being offered, outdoor wind air supply device is set up in the bottom in cabinet, outdoor wind air supply device is arranged on a side of centrifugal blower, and outdoor wind air supply device air-out port connects with the air inlet contact of centrifugal blower.
Described outdoor wind air supply device comprises pattern conversion cover, pushing mechanism and adapter mouth, at pattern conversion cover rear side, the pushing mechanism that promotes its horizontal movement and dock with air inlet of centrifugal fan is installed; At pattern conversion cover top or the bottom offer and take over mouthful, take over a mouthful place and be provided with the pipeline headstock gear, the open/close states of pipeline headstock gear is opposite with the open/close states of the first electric heater unit, and the pipeline headstock gear forms outdoor solar energy air feed or indoor wind-powered electricity generation adds two kinds of warm braw supply forms of Hot swapping by opening or closing.
The shape and size of described pattern conversion cover are corresponding with the shape and size of air inlet of centrifugal fan, and the center of the center of pattern conversion cover and centrifugal blower in the same horizontal line.
described indoor warm-air drier is indoor on-hook, comprise casing, indoor circulation wind air inlet, the second warm air outlet, the slew page of second warm air outlet place's installation, the second electric heater unit and the slew page synchronous motor that is arranged on casing inside, tubular wine wheel, the fixed axis of tubular wine wheel motor and installation tubular wine wheel, set up outdoor wind wind sector above tubular wine wheel, the outdoor wind air inlet of outdoor wind wind sector is by the air outlet of ventilation shaft gusset piece cavate heat collector, the air outlet in the outdoor hot blast air channel of circulation chamber external hot air is arranged on tubular wine wheel top one side, and change the open/close states of the outdoor hot blast duct outlet of baffle controls by pattern, offer indoor circulation wind air inlet on the front end face of casing, tubular wine wheel below arranges the second electric heater unit, and is provided with respectively indoor point for measuring temperature and electrical heating point for measuring temperature at indoor circulation wind air inlet place and the second electric heater unit place.
Described outdoor wind wind sector comprises outdoor wind air inlet, pattern conversion baffle plate and barrier driving mechanism, outdoor hot blast air channel is arranged on the casing top, up/down perforation, outdoor wind air inlet is offered at top, outdoor hot blast air channel, and the air outlet place of bottom, outdoor hot blast air channel arranges pattern conversion baffle plate; Described pattern conversion baffle plate top is the arc that level is installed, the size of the size of arc and outdoor hot blast duct outlet is complementary, pattern conversion baffle plate both sides are the semicircular plate of vertically installing, the pivotable two ends that are arranged on fixed axis of sleeve that two semicircular plates arrange by its side.
Described barrier driving mechanism is electromagnet push-and-pull transmission mechanism, comprises the sleeve of the semicircular plate that two blocks of electromagnet being arranged on pattern conversion baffle plate rear side casing inner wall and every block of electromagnet connect by leash.
Described barrier driving mechanism is gear drive, comprise the pattern conversion motor that is arranged on one of them semicircular plate one side of pattern conversion baffle plate, the travelling gear of pattern conversion motor output by pair of meshing connects semicircular plate, correspondingly on the internal side of shell wall at pattern conversion baffle plate rear is provided with one as the travel switch of pattern conversion baffle plate rotation terminal point.
Described indoor warm-air drier comprises an indoor exhaust fan, and the air intake of indoor exhaust fan is communicated with ventilation shaft, and ventilation shaft is provided with headstock gear.
Described absorber plate is divided into two parts, and the first absorber plate is arranged on the bottom of casing open face, and the second absorber plate tilts is arranged on casing inner top, the corresponding transparent cover plate of installing in casing open face top.
Compared with prior art, the beneficial effect that has of the utility model is:
1, the solar thermal utilization rate is high: plate cavate heat collector is interior by setting up transparent cover plate, form greenhouse effects between transparent cover plate and the absorber plate that is obliquely installed, can be to entering the wind through once heating in casing, carry out post bake, utilize more fully solar energy, guarantee as much as possible the temperature of warm braw and extend as much as possible the supply time of warm braw;
2, energy savings, economical and practical: be combined with by plate cavate heat collector and indoor warm-air drier, the warm braw supply is strengthened the mode that the dependence of degree utilizes the radiant heat of solar energy to add hot-air to be realized, make indoor warm-air drier form solar energy hot blast supply and two kinds of air feed forms of indoor wind heat cycles supply, do not needing to utilize outdoor solar energy hot blast for seasonable, change the outdoor hot blast of flapper closure air channel by pattern, enable the electric heater unit of indoor set, wind heat cycles air feed in priming chamber; Utilize outdoor solar energy hot blast for seasonable at needs, change baffle plate communication chamber external hot air air channel by pattern, the outer solar energy hot blast supply of priming chamber can realize the light conversion of two kinds of air feed patterns, and stability is strong, the scope of application is wide, is fit to popularization on a large scale.
Description of drawings
Fig. 1 is system's annexation schematic diagram of embodiment 1.
Fig. 2 is the indoor warm-air drier cabinet-type air conditioner side view schematic diagram of porous plate cavity-type solar air heat-collecting air feed system embodiment 1.
Fig. 3 is system's annexation schematic diagram of porous plate cavity-type solar air heat-collecting air feed system embodiment 2.
Fig. 4 is the indoor warm-air drier on-hook structural representation of porous plate cavity-type solar air heat-collecting air feed system embodiment 2.
Fig. 5 is the indoor warm-air drier on-hook structural representation of porous plate cavity-type solar air heat-collecting air feed system embodiment 3.
Fig. 6 is system's annexation schematic diagram of porous plate cavity-type solar air heat-collecting air feed system embodiment 4.
wherein: 1, casing 2, air filter 3, warming plate 4, transparent cover plate 5, the first absorber plate 6, air vent 7, air outlet 8, the second absorber plate 9, ventilation shaft 10, centrifugal blower 11, heat-storing device 12, air channel 13, the first electric heater unit 14, pattern conversion cover 15, pushing mechanism 16, the first warm air outlet 17, take over mouth 18, cabinet 19, slew page synchronous motor 20, pattern conversion motor 21, pattern conversion baffle plate 22, outdoor wind air inlet 23, tubular wine wheel 24, tubular wine wheel motor 25, casing 26, electromagnet 27, leash 28, travel switch 29, travelling gear 30, the second warm air outlet 31, fixed axis 32, slew page 33, indoor point for measuring temperature 34, electrical heating point for measuring temperature 35, outdoor hot blast air channel 36, the second electric heater unit 37, indoor circulation wind air inlet 38, heat collector point for measuring temperature 39, indoor exhaust fan 40, headstock gear.
The specific embodiment
Fig. 1 ~ 2nd, most preferred embodiment of the present utility model is described further below in conjunction with 1 ~ 6 pair of the utility model of accompanying drawing.
Embodiment 1
With reference to accompanying drawing 1 ~ 2: this kind porous plate cavity-type solar air heat-collecting air feed system, comprise plate cavate heat collector, indoor warm-air drier and the ventilation shaft 9 that both are communicated with, plate cavate heat collector comprises casing 1, absorber plate and air outlet 7, absorber plate is divided into two parts, the first absorber plate 5 is arranged on the bottom of casing 1 open face, the second absorber plate 8 tilts is arranged on casing 1 inner top, the casing 1 corresponding transparent cover plate 4 of installing in open face top, be fixedly connected casing 1 top, the second absorber plate 8 tops, bottom casing 1 madial wall that is fixedly connected.casing 1 is the rectangular case of a uncovered setting in side, paste one layer of heat preservation plate 3 on casing 1 inwall, an air outlet 7 is offered at casing 1 top, an absorber plate is installed in uncovered side, uniform a plurality of air vents 6 on absorber plate, air vent 6 is circular, triangle, oval, rectangle or polygon, air outlet 7 tops of plate cavate heat collector are provided with an air filter 2, air filter 2 outlets connect ventilation shaft 9, air inlet by warm-air drier in ventilation shaft 9 communication chamber, ventilation shaft 9 is provided with headstock gear 40, warm air outlet by indoor warm-air drier enters warm braw indoor.
Indoor warm-air drier is indoor machine, the first warm air outlet 16 of comprise cabinet 18, be arranged on centrifugal blower 10 in cabinet 18, air channel 12, the first electric heater unit 13 and cabinet 18 tops being offered, set up outdoor wind air supply device in cabinet 18 interior bottom, outdoor wind air supply device is arranged on a side of centrifugal blower 10, and outdoor wind air supply device air-out port connects with the air inlet contact of centrifugal blower 10.
Outdoor wind air supply device comprises pattern conversion cover 14, pushing mechanism 15 and takes over mouth 17, the shape and size of pattern conversion cover 14 are corresponding with the shape and size of centrifugal blower 10 air inlets, and the center of the center of pattern conversion cover 14 and centrifugal blower 10 in the same horizontal line.At pattern conversion cover 14 rear sides, the pushing mechanism 15 that promotes its horizontal movement and dock with centrifugal blower 10 air inlets is installed, pushing mechanism 15 is manually to promote or electronic startup; At pattern conversion cover 14 tops or the bottom offer and take over mouthfuls 17, take over mouthful 17 places and be provided with the pipeline headstock gear, the pipeline headstock gear is manual or electronic keying, the open/close states of pipeline headstock gear is opposite with the open/close states of the first electric heater unit 13, and the pipeline headstock gear forms outdoor solar energy air feed or indoor wind-powered electricity generation adds two kinds of warm braw supply forms of Hot swapping by opening or closing.
The course of work is as follows: the utility model is when work, indoor warm-air drier is divided into two kinds of mode of operations, indoor electric heating circulation pattern and outdoor wind solar energy heating pattern, and the temperature by the indoor point for measuring temperature 33 of Real-Time Monitoring, electrical heating point for measuring temperature 34 and heat collector point for measuring temperature 38 places.
when heat collector point for measuring temperature 38 place's temperature during higher than indoor point for measuring temperature 33 place detected temperatures, enable outdoor wind solar energy heating pattern, at first open the pipeline headstock gear, close simultaneously the first electric heater unit 13, dock with air inlet place's formation of centrifugal blower 10 by pushing mechanism 15 promotion pattern conversion covers 14, outdoor cold wind enters in casing 1 by air vent 6 first absorber plate 5 of flowing through, the air of this moment has certain temperature after once heating through the first absorber plate 5, then, air rises, enter the cavity between transparent cover plate 4 and the second heating plate 8, this cavity forms the greenhouse under the radiation of solar energy corresponding, air stream carries out post bake through the second heating plate 8, enter in ventilation shaft 9 after air filter 2 filters by air outlet 7, at this moment, the adapter mouth 17 of ventilation shaft 9 and pattern conversion cover 14 is communicated with, by taking over mouth 17 to centrifugal blower 10 air feeds, by centrifugal blower 10, the warm braw in ventilation shaft 9 is extracted also flow through successively heat-storing device 11 and air channel 12, heat accumulating in heat-storing device 11 can extend the supply time of warm braw, finally enter indoor by the first warm air outlet 16, be supplied to endlessly the occasion that needs warm braw.
When heat collector point for measuring temperature 38 place's temperature during lower than indoor point for measuring temperature 33 place detected temperatures, enable the indoor electric heating displacement patterns, close the pipeline headstock gear, open simultaneously the first electric heater unit 13, pattern conversion cover 14 air outlets separate with centrifugal blower 10 air inlets, at this moment, utilize 13 pairs of indoor wind that extracted by centrifugal blower 10 of the first electric heater unit to heat, then enter indoor by the first warm air outlet 16.
Embodiment 2
with reference to accompanying drawing 3 and 4: indoor warm-air drier is indoor on-hook, comprise casing 25, indoor circulation wind air inlet 37, the second warm air outlet 30, the slew page 32 of the second warm air outlet 30 places installation, the second electric heater unit 36 and the slew page synchronous motor 19 that is arranged on casing 25 inside, tubular wine wheel 23, the fixed axis 31 of tubular wine wheel motor 24 and installation tubular wine wheel 23, set up outdoor wind wind sector above tubular wine wheel 23, the outdoor wind air inlet 22 of outdoor wind wind sector is by the air outlet 7 of ventilation shaft 9 gusset piece cavate heat collectors, the air outlet in the outdoor hot blast air channel 35 of circulation chamber external hot air is arranged on tubular wine wheel 23 top one sides, and change the open/close states of baffle plate 21 external hot air air channel, control room 35 air outlets by pattern, offer indoor circulation wind air inlet 37 on the front end face of casing 25, tubular wine wheel 23 belows arrange the second electric heater unit 36, and are provided with respectively indoor point for measuring temperature 33 and electrical heating point for measuring temperature 34 at indoor circulation wind air inlet 37 places and the second electric heater unit 36 places.
Outdoor wind wind sector comprises outdoor wind air inlet 22, pattern conversion baffle plate 21 and barrier driving mechanism, outdoor hot blast air channel 35 is arranged on casing 25 tops, up/down perforation, outdoor wind air inlet 22 is offered at 35 tops, outdoor hot blast air channel, and the air outlet place of 35 bottoms, outdoor hot blast air channel arranges pattern conversion baffle plate 21; Described pattern conversion baffle plate 21 tops are the arc that level is installed, the size of the size of arc and outdoor hot blast air channel 35 air outlets is complementary, pattern conversion baffle plate 21 both sides are the semicircular plate of vertically installing, the pivotable two ends that are arranged on fixed axis 31 of sleeve that two semicircular plates arrange by its side.
Barrier driving mechanism is the plug-type or electromagnetic rotating formula of electromagnet, on casing 25 inwalls of pattern conversion baffle plate 21 rear sides, two blocks of electromagnet 26 are installed, every block of electromagnet 26 all passes through the sleeve that a leash 27 connects semicircular plate, rotates by electromagnet 26 and the leash 27 drive patterns conversion baffle plates 21 that are attached thereto; Or in pattern conversion baffle plate 21 one of them semicircular plate one side, a rotary magnet is installed, and rotary magnet is rotatable to be sleeved on the sleeve of semicircular plate, and the pattern that the rotarily drives conversion baffle plate 21 after the rotary magnet energising turns to the position that needs.
The course of work: when outdoor solar energy air-supply pipeline institute monitor temperature lower than 33 monitor temperatures of indoor point for measuring temperature, when also not reaching the room design temperature as indoor temperature, wind heat cycles supplying mode in opening chamber.At first, indoor mode conversion motor 20 starts, by travelling gear 29 drive patterns conversion baffle plates 21 rotations, and the circulation of pattern conversion baffle plate 21 top board disconnection chamber's external hot air air channel 35 air outlets and casing 25 inside; Then open the second electric heater unit 36, indoor wind enters in casing 25 by indoor circulation wind air inlet 37, flow through tubular wine wheel 23 and after the second electric heater unit 36 heating, enter indoor from the second warm air outlet 30, so circulating-heating is supplied warm braw, until after reaching indoor design temperature, the second electric heater unit 36 quits work.
when outdoor solar energy air-supply pipeline institute monitor temperature higher than indoor point for measuring temperature 33 when monitoring the indoor temperature certain numerical value, solar energy hot blast supplying mode outside opening chamber, at this moment, the 21 top boards disengagings of pattern conversion baffle plate contact with outdoor hot blast air channel 35 bottom air outlets, the solar energy hot blast supply line will enter outdoor hot blast air channel 35 by outdoor wind air inlet 22 through the warm braw after solar energy heating, again by outdoor hot blast air channel 35 tubular wine wheel 23 of flowing through, finally enter indoor by the second warm air outlet 30, so circulating-heating is supplied warm braw, until after reaching indoor design temperature, quit work.Other setting and the course of work are identical with embodiment 1.
Embodiment 3
With reference to accompanying drawing 5: barrier driving mechanism is gear drive, comprise the pattern conversion motor 20 that is arranged on pattern conversion baffle plate 21 one of them semicircular plate one side, the travelling gear 29 of pattern conversion motor 20 outputs by pair of meshing connects semicircular plates, correspondingly on casing 25 madial walls at pattern conversion baffle plate 21 rears is provided with one as the travel switch 28 of pattern conversion baffle plate 21 rotation terminal points.Open/close states by pattern conversion motor 20 and travelling gear 29 drive pattern conversion baffle plate 21 external hot air air channel, control room 35 air outlets when pattern conversion motor 20 is stepping or servomotor, does not need to arrange travel switch.Other settings and the course of work are identical with embodiment 2.
In addition, barrier driving mechanism also can be hand push-pull type, in the change lever that one of the sleeve upper joint of pattern conversion baffle plate 21 one of them semicircular plate can drive pattern conversion baffle plate 21 rotates, correspondingly on casing 25 madial walls at pattern conversion baffle plate 21 rears be provided with one as the block of pattern conversion baffle plate 21 rotation terminal points.
Embodiment 4
With reference to accompanying drawing 6: indoor warm-air drier is plain type, comprise an indoor exhaust fan 39, the air intake of indoor exhaust fan 39 is communicated with ventilation shaft 9, brings the hot blast in plate cavate heat collector into indoor the heating by indoor exhaust fan 39, and other settings and the course of work are identical with embodiment 1.
The above, it is only preferred embodiment of the present utility model, be not to be the utility model to be done the restriction of other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the equivalent embodiment of equivalent variations.But every technical solutions of the utility model content that do not break away to any simple modification, equivalent variations and remodeling that above embodiment does, still belongs to the protection domain of technical solutions of the utility model according to technical spirit of the present utility model.

Claims (10)

1. porous plate cavity-type solar air heat-collecting air feed system, it is characterized in that: comprise plate cavate heat collector and indoor warm-air drier, plate cavate heat collector comprises casing (1), absorber plate and air outlet (7), paste one layer of heat preservation plate (3) on casing (1) inwall, an air outlet (7) is offered at casing (1) top, an absorber plate is installed in casing (1) side, uniform a plurality of air vents (6) on absorber plate, the air outlet (7) of plate cavate heat collector is by the air inlet of warm-air drier in ventilation shaft (9) communication chamber, warm air outlet by indoor warm-air drier enters warm braw indoor.
2. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 1, it is characterized in that: described indoor warm-air drier is indoor machine, comprise cabinet (18), be arranged on the centrifugal blower (10) in cabinet (18), air channel (12), the first warm air outlet (16) that the first electric heater unit (13) and cabinet (18) top are offered, outdoor wind air supply device is set up in the bottom in cabinet (18), outdoor wind air supply device is arranged on a side of centrifugal blower (10), outdoor wind air supply device air-out port connects with the air inlet contact of centrifugal blower (10).
3. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 2, it is characterized in that: described outdoor wind air supply device comprises pattern conversion cover (14), pushing mechanism (15) and takes over mouthful (17), at pattern conversion cover (14) rear side, the pushing mechanism (15) that promotes its horizontal movement and dock with centrifugal blower (10) air inlet is installed; Offer adapter mouth (17) at pattern conversion cover (14) top or bottom, take over mouthful (17) and locate to be provided with the pipeline headstock gear, the open/close states of pipeline headstock gear is opposite with the open/close states of the first electric heater unit (13), and the pipeline headstock gear forms outdoor solar energy air feed or indoor wind-powered electricity generation adds two kinds of warm braw supply forms of Hot swapping by opening or closing.
4. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 3, it is characterized in that: the shape and size of described pattern conversion cover (14) are corresponding with the shape and size of centrifugal blower (10) air inlet, and the center of the center of pattern conversion cover (14) and centrifugal blower (10) in the same horizontal line.
5. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 1, it is characterized in that: described indoor warm-air drier is indoor on-hook, comprise casing (25), indoor circulation wind air inlet (37), the second warm air outlet (30), the slew page (32) that the second warm air outlet (30) is located to install, the second electric heater unit (36) and the slew page synchronous motor (19) that is arranged on casing (25) inside, tubular wine wheel (23), the fixed axis (31) of tubular wine wheel motor (24) and installation tubular wine wheel (23), set up outdoor wind wind sector above tubular wine wheel (23), the outdoor wind air inlet (22) of outdoor wind wind sector is by the air outlet (7) of ventilation shaft (9) gusset piece cavate heat collector, the air outlet in the outdoor hot blast air channel (35) of circulation chamber external hot air is arranged on tubular wine wheel (23) top one side, and change the open/close states of external hot air air channel, baffle plate (21) control room (35) air outlet by pattern, offer indoor circulation wind air inlet (37) on the front end face of casing (25), tubular wine wheel (23) below arranges the second electric heater unit (36), and locates to locate to be provided with respectively indoor point for measuring temperature (33) and electrical heating point for measuring temperature (34) with the second electric heater unit (36) at indoor circulation wind air inlet (37).
6. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 5, it is characterized in that: described outdoor wind wind sector comprises outdoor wind air inlet (22), pattern conversion baffle plate (21) and barrier driving mechanism, outdoor hot blast air channel (35) is arranged on casing (25) top, up/down perforation, outdoor wind air inlet (22) is offered at top, outdoor hot blast air channel (35), and the air outlet place of outdoor hot blast air channel (35) bottom arranges pattern conversion baffle plate (21); Described pattern conversion baffle plate (21) top is the arc that level is installed, the size of the size of arc and outdoor hot blast air channel (35) air outlet is complementary, pattern conversion baffle plate (21) both sides are the semicircular plate of vertically installing, the pivotable two ends that are arranged on fixed axis (31) of sleeve that two semicircular plates arrange by its side.
7. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 6, it is characterized in that: described barrier driving mechanism is electromagnet push-and-pull transmission mechanism, comprises that two blocks of electromagnet (26) of being arranged on pattern conversion baffle plate (21) rear side casing (25) inwall and every block of electromagnet (26) are by the sleeve of the semicircular plate of leash (27) connection.
8. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 6, it is characterized in that: described barrier driving mechanism is gear drive, comprise the pattern conversion motor (20) that is arranged on one of them semicircular plate one side of pattern conversion baffle plate (21), the travelling gear (29) of pattern conversion motor (20) output by pair of meshing connects semicircular plate, and on casing (25) madial wall at pattern conversion baffle plate (21) rear, correspondence is provided with one as the travel switch (28) of pattern conversion baffle plate (21) rotation terminal point.
9. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 1, it is characterized in that: described indoor warm-air drier comprises an indoor exhaust fan (39), the air intake of indoor exhaust fan (39) is communicated with ventilation shaft (9), and ventilation shaft (9) is provided with headstock gear (40).
10. a kind of porous plate cavity-type solar air heat-collecting air feed system according to claim 1, it is characterized in that: described absorber plate is divided into two parts, the first absorber plate (5) is arranged on the bottom of casing (1) open face, the second absorber plate (8) tilts is arranged on casing (1) inner top, the corresponding transparent cover plate (4) of installing in casing (1) open face top.
CN 201220643354 2012-11-29 2012-11-29 Perforated plate cavity type solar air heat collecting air supplying system Expired - Lifetime CN202993578U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103017351A (en) * 2012-11-29 2013-04-03 张勇 Perforated plate cavity-type solar energy air heat collecting and air supplying system
CN103398416A (en) * 2013-08-24 2013-11-20 张勇 Cavity type air flue solar air heat-collection and air supply system
CN111306610A (en) * 2020-03-02 2020-06-19 北京宏伟超达科技股份有限公司 Energy-saving climate compensation device for heat supply network
CN113983533A (en) * 2021-10-25 2022-01-28 山东纳宇能源科技有限公司 Solar heating and fresh air purification all-in-one machine and matching device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103017351A (en) * 2012-11-29 2013-04-03 张勇 Perforated plate cavity-type solar energy air heat collecting and air supplying system
CN103398416A (en) * 2013-08-24 2013-11-20 张勇 Cavity type air flue solar air heat-collection and air supply system
CN111306610A (en) * 2020-03-02 2020-06-19 北京宏伟超达科技股份有限公司 Energy-saving climate compensation device for heat supply network
CN113983533A (en) * 2021-10-25 2022-01-28 山东纳宇能源科技有限公司 Solar heating and fresh air purification all-in-one machine and matching device
CN113983533B (en) * 2021-10-25 2022-12-30 山东纳宇能源科技有限公司 Solar heating and fresh air purification all-in-one machine and matching device

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