CN107036403A - A kind of air can circulate baking room - Google Patents
A kind of air can circulate baking room Download PDFInfo
- Publication number
- CN107036403A CN107036403A CN201710373640.0A CN201710373640A CN107036403A CN 107036403 A CN107036403 A CN 107036403A CN 201710373640 A CN201710373640 A CN 201710373640A CN 107036403 A CN107036403 A CN 107036403A
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- Prior art keywords
- air
- room
- drying
- heat
- unit
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- 238000001035 drying Methods 0.000 claims abstract description 148
- 239000000463 material Substances 0.000 claims abstract description 71
- 239000007789 gas Substances 0.000 claims abstract description 57
- 239000011229 interlayer Substances 0.000 claims abstract description 41
- 238000010438 heat treatment Methods 0.000 claims abstract description 35
- 238000011084 recovery Methods 0.000 claims abstract description 31
- 239000002918 waste heat Substances 0.000 claims abstract description 23
- 230000001105 regulatory Effects 0.000 claims abstract description 22
- 238000007789 sealing Methods 0.000 claims description 7
- 230000004301 light adaptation Effects 0.000 claims description 5
- 230000015572 biosynthetic process Effects 0.000 claims description 3
- 230000005611 electricity Effects 0.000 claims description 3
- 238000005755 formation reaction Methods 0.000 claims description 3
- 230000000694 effects Effects 0.000 abstract description 17
- 238000000605 extraction Methods 0.000 abstract description 6
- 238000000338 in vitro Methods 0.000 abstract description 2
- 240000008962 Nicotiana tabacum Species 0.000 description 1
- 235000002637 Nicotiana tabacum Nutrition 0.000 description 1
- 244000269722 Thea sinensis Species 0.000 description 1
- 239000006227 byproduct Substances 0.000 description 1
- 238000007791 dehumidification Methods 0.000 description 1
- 239000002274 desiccant Substances 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 235000013305 food Nutrition 0.000 description 1
- 241000411851 herbal medicine Species 0.000 description 1
- 238000009776 industrial production Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000000047 product Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
- F26B21/001—Drying-air generating units, e.g. movable, independent of drying enclosure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B25/00—Details of general application not covered by group F26B21/00 or F26B23/00
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B9/00—Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards
- F26B9/06—Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards in stationary drums or chambers
Abstract
The present invention, which provides a kind of air, can circulate baking room, baking room is provided with waste-heat recovery device in vitro, baking room body includes heating source of the gas room, drying materials room and interlayer reclaim air channel, the drying unit of homonymy air intake is installed on heating source of the gas room, positive portion's circulated air unit is installed on drying materials room, sidepiece circulated air unit and top circulated air unit, the wind inlet end that interlayer reclaims air channel is connected with drying materials room, the outlet air end that interlayer reclaims air channel is connected with heating source of the gas room, air channel is reclaimed with interlayer and is connected in the recovery hot-wind inlet end of waste-heat recovery device, the recovery cold wind port of export of waste-heat recovery device is connected with the air intake vent of drying unit, fixed air quantity regulating part and movable air quantity regulating part are separately installed with heating source of the gas room;Ensure air circulation quality, improve effect on moisture extraction, can make drying materials indoor temperature distribution uniform again, and make full use of the sensible heat of discharge gas and latent heat to preheat make-up gas, improve the drying unit thermal efficiency, it is ensured that drying effect.
Description
Technical field
Field is manufactured the present invention relates to air-source baking room, specifically a kind of air can circulate baking room.
Background technology
Big portion is required for desiccant dehumidification, special timber during present industrial production, food production and agricultural byproducts processing
Drying, aquatic products drying, tobacco drying, Chinese herbal medicine drying, drying tea leaves etc..
Current air-source baking room generally comprises baking room body and drying unit, and the drying unit generally comprises dehumidifying group
Part and heat exchanger assembly, heat exchange compressor assembly, dehumidifying component and heat exchanger assembly are respectively arranged in baking room body.It will dry
Air in stove room body is heated by heat exchanger assembly, and the air of heating is delivered in baking room body.Meanwhile, the sky of heating
Gas removes central moisture by dehumidifying component, so as to reach drying high-temperature gas required in baking room body.
However, the baking room of traditional structure has the following disadvantages:
1) indoor heat-exchanging component and dehumidifying component are respectively arranged in the diverse location in the outside of baking room body, make baking room body
Interior damp-heat is difficult to handle;
2) one group of exhausting unit is only installed, exhausting unit is typically mounted at the wherein side wall of baking room body in baking room body
On, side of the temperature only close to exhausting unit in baking room body is relatively high, and the position temperature of other baking room bodies is relatively low, high
Warm air Cycle Difference, it is difficult to reach thermally equivalent in baking room body, especially larger baking room body, the effect of drying is worse.For
This, can only increase drying heat, extend drying time, material is reached required drying effect, and drying efficiency is low, drying
Cost is high;
3) that takes out dehumidifying component enters that air quantity is constant, causes the drying humidity in baking room body also constant, it is difficult to adapt to different
Change needed for material and cause drying temperature and humidity in baking room body, using single, effect on moisture extraction is poor;And, indoor heat exchange group
Part carry out heat exchange continuous to air-source, is due in baking room body although thermal source air is constantly inputted to baking room body
Thermal source air constantly walks toward outside with circulation air, causes the temperature in baking room body to be difficult to improve, it is impossible to needed for reaching material
High temperature drying environment, reduces drying materials quality;
4) air entered in baking room body is heated by drying unit, and the high-temperature gas after heating is by baking room body
It is external that baking room is directly discharged to after drying materials.The gas of discharge still contains at a relatively high temperature, it is therefore apparent that this is high
Sensible heat in wet body does not make full use of.Even more noteworthy, high-temperature gas can discharge substantial amounts of in heat exchange
Latent heat is not utilized then completely.Therefore, the heat that traditional baking room discharge gas mode is easily caused in baking room body scatters and disappears sternly
Weight, and need increasing drying unit heating power to heat make-up gas, otherwise it is difficult to the temperature for reaching material drying, shadow
Ring drying effect.
The content of the invention
Baking room can be circulated it is an object of the invention to overcome the deficiencies of the prior art and provide a kind of air, the letter of its structure
It is single, the dehumidifying air quantity and air circulation in drying unit homonymy air intake, and controllable baking room body can be made and good dehumidifying is reached
Effect, guarantee dries quantity, and the sensible heat and latent heat of discharge gas can be made full use of, energy recovery efficiency is improved, to reach
The thermal efficiency of drying unit is improved, drying time is reduced and also ensures that drying materials effect.
What the goal of the invention of the present invention was realized in:A kind of air can circulate baking room, including baking room body and can give
The drying unit of hot wind supply in baking room body, wherein, the baking room is provided with waste-heat recovery device, baking room body bag in vitro
Include heating source of the gas room, drying materials room and interlayer and reclaim the drying unit that homonymy air intake is provided with air channel, heating source of the gas room, institute
State positive portion's circulated air unit, sidepiece circulated air unit and the top being provided with drying materials room including can hot blast be uniformly distributed
Circulated air unit, the wind inlet end that interlayer reclaims air channel is connected by top circulated air unit with drying materials room, and interlayer reclaims wind
The outlet air end in road is connected with heating source of the gas room, and recovery hot-wind inlet end and the interlayer of the waste-heat recovery device reclaim air channel and connected
Logical, the recovery cold wind port of export of waste-heat recovery device is connected with the air intake vent of drying unit, is pacified respectively on the heating source of the gas room
The activity of fixation air quantity regulating part and regulation material drying chamber interior circulation air quantity equipped with adjustment drying unit dehumidifying air quantity
Air quantity regulating part.
Optimized according to above-mentioned, the waste-heat recovery device include heat exchange chamber, blast pipe and exhaust duct, blast pipe with
Exhaust duct is installed on heat exchange chamber, and the heat exchange chamber carries air inlet, the exhaust outlet connected with blast pipe, exhaust duct, enters
Adaptation is equipped with adaptation on air inlet fan, exhaust outlet and exhaust blower, the outlet air end of the blast pipe and entering for drying unit is housed in airduct
Wind end connect, the air intake of exhaust duct with interlayer reclaim air channel connect.
Optimized according to above-mentioned, the air inlet, heat exchange chamber, air inlet fan, blast pipe are formed into drying materials room
Input the recuperation of heat air intake path of make-up gas, the exhaust duct, heat exchange chamber, exhaust blower, exhaust outlet formation energy and recuperation of heat
The recuperation of heat air draft path that air intake path crosses.
Optimized according to above-mentioned, the heating source of the gas room, positive portion's circulated air unit, sidepiece circulated air unit, material dry
Dry chamber, top circulated air unit, interlayer reclaim air circulation path in the forming chamber of air channel.
Optimized according to above-mentioned, the heating source of the gas room be provided with the wind inlet end that can make drying unit, outlet air end respectively with
Interlayer reclaims the outlet air end in air channel, the division board and sealing plate of the air intake connection of drying materials room, and division board is arranged at drying
The top of device is simultaneously connected with the outlet air end that interlayer reclaims air channel, and sealing plate is sealedly attached to bottom and the heating gas of drying unit
The junction of the internal face of source chamber.
Optimized according to above-mentioned, positive portion's circulated air unit is installed on the drying materials of correspondence drying unit outlet air end
On the front side wall of room, the sidepiece circulating fan group is respectively arranged in the left side wall of drying materials room, on right side wall, the top
Circulated air unit is installed on the upper side wall rear end with the symmetrical drying materials room of positive portion's circulated air unit.
Optimized according to above-mentioned, the side interlayer air-supply in drying materials room both sides is additionally provided with the baking room body
Road, side interlayer air delivery duct is connected with drying materials room, heating source of the gas room respectively, and the wind inlet end of side interlayer air delivery duct, which matches, to be provided with
Movable air quantity regulating part.
Optimized according to above-mentioned, the fixed air quantity regulating part, which matches, is installed on the wind inlet end of drying unit.
Optimized according to above-mentioned, the drying unit includes containing the auxiliary hot indoor heat-exchanging component of electricity and contains condensate pipe
Dehumidifying component, indoor heat-exchanging component and dehumidifying component be respectively arranged in heating source of the gas room, indoor heat-exchanging component provided with exchange heat into
Air port, dehumidifying component is on the horizontal plane of the same side provided with dehumidifying air intake vent, heat exchange air intake vent with dehumidifying air intake vent, the fixation
Air quantity regulating part is installed on the dehumidifying air intake vent of dehumidifying component, and the outlet air end of dehumidifying component is separately installed with movable air quantity regulation
Part.
Optimized according to above-mentioned, the indoor heat-exchanging component is mounted side by side in the both sides of dehumidifying component respectively, and it is indoor
The wind inlet end of heat-exchanging component, the wind inlet end of dehumidifying component reclaim air channel, the blast pipe of waste-heat recovery device with interlayer respectively and entered
Wind end is connected.
The advantage of the invention is that:
1) drying unit, drying materials room are integrally installed in shell body, and heat exchange air intake vent and dehumidifying air intake vent are same
On the horizontal plane of side, promote the indoor heat-exchanging component of drying unit and the homonymy air intake of dehumidifying component, it is ensured that air circulation quality
While improve effect on moisture extraction, it is ensured that dries quantity, it is ensured that material sanitary edible safety;
2) by positive portion's circulated air unit, sidepiece circulated air unit, top circulated air unit structure, make baking room body
Drying materials indoor temperature is uniformly distributed, and is heated evenly the material in drying materials room, while reducing drying time, is improved and is dried
Dry efficiency, reduces drying cost;And coordinate the structure of air quantity controllable register, the air circulation in baking room body is can control, with
The demand of drying temperature is reached, drying time is equally reduced, dries quantity is effectively ensured;
3) can be according to the intake of the dehumidifying component of temperature control drying unit, so as to control using fixed air quantity regulating part
Dehumidifying air quantity in baking room body, reaches good effect on moisture extraction;And the structure of cooperation activity air quantity regulating part, can control drying
Air circulation in room body, to reach the demand of drying temperature, is effectively ensured the air quantity of dries quantity;
4) gas of the discharge in baking room body is reclaimed by recuperation of heat switch, made containing the gas recovery having surplus heat
Heat exchange is carried out in recuperation of heat switch with the cold air of supplement, the sensible heat and latent heat of discharge gas is made full use of to supplement
Gas is preheated, and improves the drying unit thermal efficiency, equally reduces drying time, reduces drying cost, while ensureing drying materials effect
Really.
Brief description of the drawings
Accompanying drawing 1 is the stereogram of first embodiment of the invention.
Accompanying drawing 2 is the top view of first embodiment of the invention.
Accompanying drawing 3 is the sectional view of first embodiment of the invention.
Accompanying drawing 4 is the partial enlarged drawing of first embodiment of the invention.
Accompanying drawing 5 is the left view of first embodiment of the invention.
Accompanying drawing 6 is the sectional view of another angle of first embodiment of the invention.
Accompanying drawing 7 is the stereogram of second embodiment of the invention.
Embodiment
The invention will be further described below in conjunction with the accompanying drawings.
With reference to the accompanying drawings shown in 1 to Fig. 6, air of the invention can circulate baking room, and it includes baking room body 1 and drying unit
2, drying unit 2 is installed in baking room body 1, is heated the air in baking room body 1 using drying unit 2, and hot wind supply is to baking
In stove room body 1.
Wherein, the baking room body 1 includes heating source of the gas room 11, drying materials room 12 and interlayer recovery air channel 13.Heating
The drying unit 2 of homonymy air intake is installed on source of the gas room 11.The drying unit 2 is included containing the auxiliary hot indoor heat-exchanging component 22 of electricity
With dehumidifying component 21, indoor heat-exchanging component 22 is respectively arranged in heating source of the gas room 11 with dehumidifying component 21.In practical operation, institute
Indoor heat-exchanging component 22 is stated to be mounted side by side respectively in the both sides of dehumidifying component 21, the wind inlet end of indoor heat-exchanging component 22, dehumidifying group
The wind inlet end of part 21 reclaims air channel 13 with interlayer respectively and connected.Moreover, indoor heat-exchanging component 22 is provided with heat exchange air intake vent 24, dehumidifying
Component 21 is on the horizontal plane of the same side provided with dehumidifying air intake vent 25, the heat exchange air intake vent 24 with dehumidifying air intake vent 25.
So, drying unit 2, drying materials room 12 are integrally installed in shell body, reduce installation site, and heat exchange inlet air
Mouth 24 and dehumidifying air intake vent 25 promote the indoor heat-exchanging component 22 and dehumidifying component 21 of drying unit 2 on the horizontal plane of the same side
Homonymy air intake, it is ensured that improve effect on moisture extraction while air circulation quality, it is ensured that dries quantity, it is ensured that the sanitary edible of material
Safety.
Period, condensate pipe 23 is installed on dehumidifying component 21, it is using condensate pipe 23 that indoor heat-exchanging component 22 is warm
The condensed water produced during exchange is exclusive.Reduce the moisture in drying materials room 12, it is ensured that dries quantity.
Reference picture 3 is followed to shown in Fig. 6, being provided with the positive portion including can hot blast be uniformly distributed on the drying materials room 12
Ring blower fan group 4, sidepiece circulated air unit 5 and top circulated air unit 6.Positive portion's circulated air unit 4 is installed on correspondence drying
On the front side wall of the drying materials room 12 of the outlet air end of device 2, the sidepiece circulated air unit 5 is respectively arranged in drying materials room 12
Left side wall, on right side wall, the top circulated air unit 6 is installed on and the symmetrical drying materials room of positive portion's circulated air unit 4
On 12 upper side wall rear end.
In actual applications, the wind inlet end in the interlayer recovery air channel 13 passes through top circulated air unit 6 and drying materials
Room 12 is connected, and the outlet air end that interlayer reclaims air channel 13 is connected with heating source of the gas room 11.The heating source of the gas room 11, which is provided with, can make baking
Wind inlet end, the outlet air end of equipment for drying 2 reclaim the outlet air end in air channel 13, the air intake of drying materials room 12 with interlayer respectively and are connected
Division board 15 and sealing plate 16, the outlet air end that division board 15 is arranged at the top of drying unit 2 and reclaims air channel 13 with interlayer connect
Connect, sealing plate 16 is sealedly attached to the bottom and the junction of the internal face of heating source of the gas room 11 of drying unit 2.
Using the respective outer side edges of division board 15 and sealing plate 16, heating source of the gas room 11, positive portion's circulated air unit 4, side can be made
Portion's circulated air unit 5, drying materials room 12, top circulated air unit 6, interlayer reclaim air circulation path in the forming chamber of air channel 13
14.Accelerate the air circulation in baking room body 1, in time for the dry-heat air of drying materials room 12, promote in material drying chamber
Even heat is distributed, and is heated evenly the material in drying materials room 12, and extension heat stops the time of drying materials room 12, fills
Divide and utilize heat, reduce drying time, improve drying efficiency, reduce drying cost.
In addition, the fixation air quantity that the adjustment dehumidifying air quantity of drying unit 2 is separately installed with the heating source of the gas room 11 is adjusted
Save the movable air quantity regulating part 8 of part 7 and the interior circulation air quantity of regulation material drying chamber 12.The fixed air quantity regulating part 7 is installed
In the dehumidifying air intake vent 25 of dehumidifying component 21, the fixed air quantity regulating part 7, which matches, is installed on the wind inlet end of drying unit 2.Profit
Can be according to the intake of the dehumidifying component 21 of temperature control drying unit 2, so as to control baking room body with fixed air quantity regulating part 7
Dehumidifying air quantity in 1, reaches good effect on moisture extraction.And, the movable air quantity regulating part 8 is installed on the air-out of dehumidifying component 21
End.In prioritization scheme, the side interlayer air delivery duct 17 in the both sides of drying materials room 12 is additionally provided with the baking room body 1.Side
Interlayer air delivery duct 17 is connected with drying materials room 12, heating source of the gas room 11 respectively, and the wind inlet end of side interlayer air delivery duct 17, which matches, pacifies
Equipped with movable air quantity regulating part 8.The air circulation entered in drying materials room 12 is adjusted by movable air quantity regulating part 8, with up to
To the demand of the drying temperature of drying materials room 12, particular for will higher drying temperature material, reduction enters drying materials
Air circulation in room 12, improves drying temperature, reduces drying time, dries quantity is effectively ensured.
Referring to figs. 1 to shown in Fig. 6, waste-heat recovery device 3 is installed outside the baking room body 1, indoor heat-exchanging component 22
Wind inlet end, the wind inlet end of dehumidifying component 21 reclaim air channel 13, the wind inlet end of the blast pipe 32 of waste-heat recovery device 3 with interlayer respectively
Connection.Wherein, the waste-heat recovery device 3 includes heat exchange chamber 31, blast pipe 32 and exhaust duct 33.Blast pipe 32 and exhaust duct
33 are installed on heat exchange chamber 31, and the heat exchange chamber 31 carries the air inlet 34 connected with blast pipe 32, exhaust duct 33, air draft
Mouth 35.Exhaust blower 37, the blast pipe 32 are housed moreover, being adapted in blast pipe 32 and adaptation on air inlet fan 36, exhaust outlet 35 being housed
Outlet air end connected with the wind inlet end of drying unit 2, the air intake of exhaust duct 33 with interlayer reclaim air channel 13 connect.Operation
When, in the presence of air inlet fan 36, the air inlet 34, heat exchange chamber 31, air inlet fan 36, blast pipe 32 are formed to drying materials
The recuperation of heat air intake path 9 of input make-up gas in room 12.In the presence of exhaust blower 37, the exhaust duct 33, heat exchange chamber
31st, the recuperation of heat air draft path 10 that exhaust blower 37, the formation of exhaust outlet 35 can cross with recuperation of heat air intake path 9.
That is, according to needed for drying materials temperature, when conveying make-up gas to drying materials room 12, waste-heat recovery device 3 is transported
OK.Period, make-up gas enters heating source of the gas room 11 by recuperation of heat air intake path 9.Meanwhile, in drying materials room 12 part
Air channel 13 can be reclaimed containing the gas having surplus heat by way of interlayer and enters recuperation of heat air draft path 10, and waste heat gas is on recuperation of heat air draft road
Intersection and make-up gas heat exchange of the footpath 10 with recuperation of heat air intake path 9.Dropped using the sensible heat and waste heat gas of waste heat gas
The latent heat discharged when warm, is realized and make-up gas is preheated, and improves the thermal efficiency of drying unit 2, reduces drying time, and reduction is dried into
This, while ensureing material drying effect.
It is worth noting that, waste-heat recovery device 3, which also can apply to split type baking room, i.e. drying unit 2, is installed on baking
Outside stove room body 1, waste-heat recovery device 3 is installed on baking room body 1, the recuperation of heat cold wind port of export of the waste-heat recovery device 3
Connected with the air intake of the drying materials room 12 of baking room body 1, the recuperation of heat hot-wind inlet end of waste-heat recovery device 3 and baking room
The outlet air end connection of the drying materials room 12 of body 1, as shown in Figure 7.
Above-mentioned specific embodiment is only the preferable embodiment of effect of the present invention, all to be circulated with air of the invention
The identical or equivalent structure of baking room, within the scope of the present invention.
Claims (10)
1. a kind of air can circulate baking room, including baking room body (1) and it can be filled to the drying of baking room body (1) interior hot wind supply
Put (2), it is characterised in that:Waste-heat recovery device (3) is installed, baking room body (1) includes heating gas outside the baking room body (1)
Source chamber (11), drying materials room (12) and interlayer reclaim air channel (13), and the baking of homonymy air intake is provided with heating source of the gas room (11)
Be provided with equipment for drying (2), the drying materials room (12) positive portion's circulated air unit (4) including can hot blast be uniformly distributed,
Sidepiece circulated air unit (5) and top circulated air unit (6), the wind inlet end that interlayer reclaims air channel (13) pass through top circulating fan
Group (6) is connected with drying materials room (12), and the outlet air end that interlayer reclaims air channel (13) is connected with heating source of the gas room (11), described remaining
The recovery hot-wind inlet end of heat reclamation device (3) is reclaimed air channel (13) with interlayer and connected, the recovery cold wind of waste-heat recovery device (3)
The port of export is connected with the air intake vent of drying unit (2), and adjustment drying unit (2) is separately installed with heating source of the gas room (11)
Dehumidify the fixation air quantity regulating part (7) of air quantity and the movable air quantity regulating part of regulation material drying chamber (12) interior circulation air quantity
(8)。
2. air can circulate baking room according to claim 1, it is characterised in that:The waste-heat recovery device (3) includes heat
Inverting chamber (31), blast pipe (32) and exhaust duct (33), blast pipe (32) are installed on heat exchange chamber (31) with exhaust duct (33),
The heat exchange chamber (31) carries air inlet (34), the exhaust outlet (35), blast pipe connected with blast pipe (32), exhaust duct (33)
(32) adaptation is equipped with adaptation on air inlet fan (36), exhaust outlet (35) and exhaust blower (37), the air-out of the blast pipe (32) is housed in
End connected with the wind inlet end of drying unit (2), the air intake of exhaust duct (33) with interlayer recovery air channel (13) connect.
3. air can circulate baking room according to claim 2, it is characterised in that:The air inlet (34), heat exchange chamber
(31), air inlet fan (36), blast pipe (32) form the recuperation of heat air intake path of the input make-up gas into drying materials room (12)
(9), the exhaust duct (33), heat exchange chamber (31), exhaust blower (37), exhaust outlet (35) formation can be with recuperation of heat air intake path
(9) the recuperation of heat air draft path (10) crossed.
4. air can circulate baking room according to claim 1, it is characterised in that:Heating source of the gas room (11), positive portion are followed
Ring blower fan group (4), sidepiece circulated air unit (5), drying materials room (12), top circulated air unit (6), interlayer reclaim air channel
(13) air circulation path (14) in forming chamber.
5. air can circulate baking room according to claim 4, it is characterised in that:Heating source of the gas room (11) is provided with and can made
Wind inlet end, the outlet air end of drying unit (2) reclaim the outlet air end of air channel (13), the air intake of drying materials room (12) with interlayer respectively
The division board (15) and sealing plate (16) of connection are held, division board (15) is arranged at the top of drying unit (2) and reclaimed with interlayer
The outlet air end connection in air channel (13), sealing plate (16) is sealedly attached to bottom and heating source of the gas room (11) of drying unit (2)
The junction of internal face.
6. air can circulate baking room according to claim 1, it is characterised in that:Positive portion's circulated air unit (4) is installed
In on the front side wall of the drying materials room (12) of correspondence drying unit (2) outlet air end, the sidepiece circulated air unit (5) is pacified respectively
On left side wall, right side wall loaded on drying materials room (12), the top circulated air unit (6) is installed on and positive portion's circulating fan
On the upper side wall rear end of the symmetrical drying materials room (12) of group (4).
7. air can circulate baking room according to claim 1, it is characterised in that:Place is additionally provided with the baking room body (1)
Side interlayer air delivery duct (17) in drying materials room (12) both sides, side interlayer air delivery duct (17) respectively with drying materials room (12),
Source of the gas room (11) connection is heated, the wind inlet end of side interlayer air delivery duct (17), which matches, is provided with movable air quantity regulating part (8).
8. air can circulate baking room according to claim 6, it is characterised in that:The fixed air quantity regulating part (7) matches
It is installed on the wind inlet end of drying unit (2).
9. air can circulate baking room according to any one of claim 1 to 7 claim, it is characterised in that:It is described to dry
Equipment for drying (2) includes the dehumidifying component (21) containing the auxiliary hot indoor heat-exchanging component (22) of electricity and containing condensate pipe (23), indoor
Heat-exchanging component (22) and dehumidifying component (21) are respectively arranged in heating source of the gas room (11), indoor heat-exchanging component (22) provided with exchange heat into
Air port (24), dehumidifying component (21) is in same provided with dehumidifying air intake vent (25), heat exchange air intake vent (24) with dehumidifying air intake vent (25)
On the horizontal plane of side, the fixed air quantity regulating part (7) is installed on the dehumidifying air intake vent (25) of dehumidifying component (21), dehumidifying component
(21) outlet air end is separately installed with movable air quantity regulating part (8).
10. air can circulate baking room according to claim 9, it is characterised in that:The indoor heat-exchanging component (22) is respectively
It is mounted side by side in the both sides of dehumidifying component (21), and wind inlet end, the wind inlet end of dehumidifying component (21) of indoor heat-exchanging component (22)
Air channel (13) are reclaimed with interlayer, the wind inlet end of the blast pipe (32) of waste-heat recovery device (3) is connected respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201710373640.0A CN107036403A (en) | 2017-05-24 | 2017-05-24 | A kind of air can circulate baking room |
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CN201710373640.0A CN107036403A (en) | 2017-05-24 | 2017-05-24 | A kind of air can circulate baking room |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112460954A (en) * | 2020-11-27 | 2021-03-09 | 安徽众盛农业发展有限公司 | Drying device of middle chicken feed for broiler breeding |
CN113418356A (en) * | 2021-07-02 | 2021-09-21 | 重庆朗福环保科技有限公司 | Energy-saving and carbon-reducing technology and device for building material enterprises |
-
2017
- 2017-05-24 CN CN201710373640.0A patent/CN107036403A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112460954A (en) * | 2020-11-27 | 2021-03-09 | 安徽众盛农业发展有限公司 | Drying device of middle chicken feed for broiler breeding |
CN113418356A (en) * | 2021-07-02 | 2021-09-21 | 重庆朗福环保科技有限公司 | Energy-saving and carbon-reducing technology and device for building material enterprises |
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