CN107192166A - Environment-friendly type dual intensity integration supplies collecting system - Google Patents
Environment-friendly type dual intensity integration supplies collecting system Download PDFInfo
- Publication number
- CN107192166A CN107192166A CN201710598521.5A CN201710598521A CN107192166A CN 107192166 A CN107192166 A CN 107192166A CN 201710598521 A CN201710598521 A CN 201710598521A CN 107192166 A CN107192166 A CN 107192166A
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- China
- Prior art keywords
- housing
- air
- environment
- friendly type
- type dual
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B27/00—Machines, plants or systems, using particular sources of energy
- F25B27/002—Machines, plants or systems, using particular sources of energy using solar energy
- F25B27/005—Machines, plants or systems, using particular sources of energy using solar energy in compression type systems
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B29/00—Combined heating and refrigeration systems, e.g. operating alternately or simultaneously
- F25B29/003—Combined heating and refrigeration systems, e.g. operating alternately or simultaneously of the compression type system
-
- 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
- F26B21/002—Drying-air generating units, e.g. movable, independent of drying enclosure heating the drying air indirectly, i.e. using a heat exchanger
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Drying Of Solid Materials (AREA)
Abstract
Collecting system is supplied the invention discloses a kind of environment-friendly type dual intensity integration, including:Air energy heat pump is integrated, freezer and dryer;Air energy heat pump is integrated including multiple heat pump modules, and one end of heat pump module is connected by cold air duct with freezer, and the other end is connected by hot air duct with dryer;Heat pump module includes being provided with air intake on housing A and housing B, housing A and housing B;Air energy converter structure is provided with the integrative-structure of housing A and housing B compositions, air in housing A can be converted to cold air and is discharged into cold air duct by air energy converter structure, and air in housing B can be converted to hot-air and and is discharged into hot air duct by air energy converter structure;The outside of air intake is provided with heating tube, and heating tube is internally provided with spiral duct, and heating tube end is provided with the collecting plate of opening.Environment-friendly type dual intensity integration has the utilization rate of excellent energy for collecting system.
Description
Technical field
The present invention relates to energy-collecting device, in particular it relates to which a kind of environment-friendly type dual intensity integration supplies collecting system.
Background technology
Energy-collecting device can be divided into heater and refrigerating plant, in the prior art, and current energy-collecting device is generally
It is to be run by electric energy or chemical energy, although electric energy or chemical energy disclosure satisfy that general demand, but exists certain
Advantage and defect, be specially:Consume energy big and pollute although requirement of the chemical energy device to equipment is relatively low, during use
Environment;Electrical energy devices have that power is big, free of contamination advantage, but its cost is larger, especially needs to set up in heater
Electrically heated component and then improve production cost;Meanwhile, electrical energy devices also suffer from the influence of weather (such as heating component
On form frost), especially under extremely low temperature, electrical energy devices start it is more difficult, while energy conversion rate is relatively low.
The content of the invention
Collecting system is supplied it is an object of the invention to provide a kind of environment-friendly type dual intensity integration, environment-friendly type dual intensity integration is for collection
System can provide energy to freezer and dryer simultaneously using electric energy and solar energy, and then improve the utilization rate of energy.
To achieve these goals, the invention provides be for collection the invention provides a kind of integration of environment-friendly type dual intensity
System, including:Air energy heat pump is integrated, freezer and dryer;Air energy heat pump is integrated including multiple heat pump modules, heat pump module
One end is connected by cold air duct with freezer, and the other end is connected by hot air duct with dryer;Heat pump module includes shell
Air intake is provided with body A and housing B, housing A and housing B;It is provided with the integrative-structure of housing A and housing B compositions
Air in housing A can be converted to cold air and is discharged into cold air duct by air energy converter structure, air energy converter structure,
Air in housing B can be converted to hot-air and and is discharged into hot air duct by air energy converter structure;The outside of air intake
It is provided with heating tube, the heating tube is internally provided with spiral duct, and the heating tube end is provided with the collecting plate of opening.
Preferably, be provided with multiple continuous wave protruding blocks on collecting plate, wave protruding block and spiral duct it is interior
External coating has collection thermosphere.
Preferably, collection thermosphere is from bottom to top disposed with layer of mineral wool and black chrome coating.
Preferably, air energy converter structure include by pipeline circulate successively the expansion valve of connection, evaporator, condenser and
Compressor;Wherein, expansion valve, evaporator are located in housing A, and condenser and compressor are arranged in housing B.
Preferably, heat pump module also includes thermal insulation board, and housing A is arranged on the side of thermal insulation board, and housing B is arranged at heat-insulated
On the opposite side of plate.
Preferably, multiple ventilating fans are provided with housing A housing, the outlet of ventilating fan is connected with cold air duct.
Preferably, housing B both sides are provided between air intake, and two air intakes and are provided with hot-blast outlet,
Hot-blast outlet is connected with hot air duct.
Preferably, the warm thermostat of automatic benefit is additionally provided with housing B.
Preferably, the outer wrap of cold air duct has asbestos heat-insulation layer, and the outside of the pipeline of hot air duct is provided with carbon black
Heat-sink shell.
Preferably, collecting plate is articulated with the end of heating tube, and the top of heating tube is transparent panel.
In the above-mentioned technical solutions, the environment-friendly type dual intensity integration that the present invention is provided is made by collecting plate first for collecting system
Obtain air to enter in heating tube, in the process, collecting plate simultaneously can heat air with heating tube, pair after heating
Air is heated and then causes the air after heating to enter housing A and housing B, by more hot air can customer service cold
The defect of air energy converter structure difficulty in starting under cold day gas, and then air energy converter structure enables to the air in housing A
Be converted to cold air and be discharged into the cold air duct to provide cold air to freezer, meanwhile, air energy converter structure can be by
Air is converted to hot-air and and is discharged into the hot air duct to provide hot-air to dryer in the housing B.In this base
On plinth, i.e., cold air and hot-air are provided to freezer and dryer respectively by the dual energy of electric energy and solar energy, thus just
It may be such that solar energy is fully utilized, and then energy utilization rate be greatly improved.
Other features and advantages of the present invention will be described in detail in subsequent embodiment part.
Brief description of the drawings
Accompanying drawing is, for providing a further understanding of the present invention, and to constitute a part for specification, with following tool
Body embodiment is used to explain the present invention together, but is not construed as limiting the invention.In the accompanying drawings:
Fig. 1 is the structural representation that the environment-friendly type dual intensity integration that the present invention is provided supplies collecting system;
Fig. 2 is the structural representation of the preferred embodiment of heat pump module in Fig. 1.
Description of reference numerals
1st, heat pump module 2, cold air duct
3rd, freezer 4, hot air duct
5th, dryer 6, housing A
7th, housing B 8, expansion valve
9th, evaporator 10, condenser
11st, compressor 12, air intake
14th, hot-blast outlet 15, thermal insulation board
16th, ventilating fan 17, collecting plate
18th, wave protruding block 19, the warm thermostat of automatic benefit
20th, heating tube
Embodiment
The embodiment of the present invention is described in detail below in conjunction with accompanying drawing.It should be appreciated that this place is retouched
The embodiment stated is merely to illustrate and explain the present invention, and is not intended to limit the invention.
In the present invention, in the case where not making opposite explanation, the noun of locality that " inside and outside " etc. is included in term is only represented
Orientation of the term under normal service condition, or be skilled artisan understands that be commonly called as, and be not construed as to the term
Limitation.
Collecting system is supplied the invention provides a kind of environment-friendly type dual intensity integration, as depicted in figs. 1 and 2, including:Air energy thermal
Pump is integrated, freezer 3 and dryer 5;Air energy heat pump is integrated including multiple heat pump modules 1, and one end of heat pump module 1 passes through cold wind
Pipeline 2 is connected with freezer 3, and the other end is connected by hot air duct 4 with dryer 5;Heat pump module 1 includes housing A6 and shell
Air intake 12 is provided with body B7, housing A6 and housing B7;It is provided with the integrative-structure of housing A6 and housing B7 compositions
Air in housing A6 can be converted to cold air and is discharged into cold air duct by air energy converter structure, air energy converter structure
2, air in housing B7 can be converted to hot-air and and is discharged into hot air duct 4 by air energy converter structure;Air intake 12
Outside be provided with heating tube 20, the heating tube 20 is internally provided with spiral duct, and the end of heating tube 20 is provided with
Open collecting plate 17 (collecting plate 17 can not only play a part of heating, also act as the effect of guiding).
Above-mentioned environment-friendly type dual intensity integration causes air to enter in heating tube 20 by collecting plate 17 first for collecting system,
In the process, collecting plate 17 and heating tube 20 can be heated to air simultaneously, the air after heating enter housing A6 with
Housing B7, the defect of customer service air energy converter structure difficulty in starting in cold weather is capable of by more hot air, and then
Air energy converter structure enables to the air in housing A6 to be converted to cold air and be discharged into the cold air duct 2 with to freezer
3 provide cold air, meanwhile, air in the housing B7 can be converted to hot-air and and is discharged into institute by air energy converter structure
Hot air duct 4 is stated to provide hot-air to dryer 5.On this basis, i.e., distinguished by the dual energy of electric energy and solar energy
Cold air and hot-air are provided to freezer 3 and dryer 5, thus just may be such that solar energy is fully utilized, and then cause
Energy utilization rate is greatly improved.
In above-mentioned collecting plate 17, the concrete structure of collecting plate 17 can be selected in wide scope, but in order to enter one
Step improves heating effect of the collecting plate 17 for air, it is preferable that multiple continuous wave protruding blocks are provided with collecting plate 17
18, the inner surface of wave protruding block 18 and spiral duct is painted with collection thermosphere.It just can so pass through the recessed of wave protruding block 18
The helical structure of male structure and spiral duct can improve the area of inner surface, and then improve the collection face for sunshine
Product and heating surface (area) (HS, and then cause the air after thermal-arrest that there is higher temperature, so that the integration of environment-friendly type dual intensity is supplied
Collecting system has more excellent collection energy efficiency.
Wherein, the concrete structure of above-mentioned collection thermosphere can also be selected in wide scope, but in order to further improve
The heating effect of air, it is preferable that collection thermosphere is from bottom to top disposed with layer of mineral wool and black chrome coating, one side layer of mineral wool energy
The effect of insulation is enough played, another aspect black chrome coating has the effect of heat absorption and then can improve the heating effect of air.
In the present invention, the specific mounting structure of collecting plate 17 can be selected in wide scope, but in order to further
Improve the heating effect of air, it is preferable that collecting plate 17 is articulated with the end of heating tube 20, and the top of heating tube 20 is
Isotropic disk;, just can be by adjusting the angle of two collecting plates 17 so in the case of different wind speed, and then cause air just
Heating tube 20 can be more rapidly introduced into, the heated at high speed of air is realized, can be added while the top of heating tube 20 is transparent panel
Enter the more excellent collection of sunshine, and then improve the utilization rate of solar energy, that is, cause the integration of environment-friendly type dual intensity for collection system
System has more excellent solar energy utilization rate.
In the present invention, the concrete structure of air energy converter structure can be selected in wide scope, but in order to enter one
Step ground enables housing A6 to provide temperature lower cold air, and housing B7 can provide temperature higher hot-air, it is preferable that
As shown in Fig. 2 air energy converter structure includes the expansion valve 8, evaporator 9, the and of condenser 10 for circulating connection successively by pipeline
Compressor 11;Wherein, expansion valve 8, evaporator 9 are located in housing A6, and condenser 10 and compressor 11 are arranged in housing B7.This
Sample, hot-air, which enters in housing A6 and housing B7, can be easy to the startup of evaporator 9, condenser 10 and compressor 11, once steam
Send out after device 9, condenser 10 and the startup of compressor 11, the refrigerant in pipeline just can be converted to gaseous state by liquid and entered by evaporator 9
And cause housing A6 air themperature reduction, then refrigerant enter condenser 10 and compressor 11, and then cause refrigerant by
Gaseous state is converted to liquid, so just can raise the temperature of the air in housing B7.
In the present invention, housing A6 and the specific installation sites of housing B7 and annexation can be selected in wide scope
Select, but in order to save device take up space and avoid energy scatter and disappear, it is preferable that heat pump module 1 also include thermal insulation board
15, housing A6 is arranged on the side of thermal insulation board 15, and housing B7 is arranged on the opposite side of thermal insulation board 15.Thus just can be by housing
A6 and housing B7, which are arranged to integral mechanism, just can greatly reduce its space occupied, while the presence of thermal insulation board 15 can also be kept away
Exempt from scattering and disappearing for energy, and then improve the utilization rate of energy.
In addition, the expulsion efficiency of the cold air in order to further improve housing A6, it is preferable that set on housing A6 housing
Multiple ventilating fans 16 are equipped with, the outlet of ventilating fan 16 is connected with cold air duct 2;Thus just can be very big by ventilating fan 16
Efficient cold air is discharged into cold air duct 2.
Meanwhile, the discharge mode of housing B7 hot-air can also be selected in wide scope, but in order to further
Improve the expulsion efficiency of hot-air, it is preferable that housing B7 both sides are provided with air intake 12, and two air intakes 12 it
Between be provided with hot-blast outlet 14, hot-blast outlet 14 is connected with hot air duct 4.Pass through hot-blast outlet 14 and air intake 12
Set, the formation efficiency and expulsion efficiency of hot-air can be greatly enhanced.
On the basis of the above, it is contemplated that under rainy weather, the utilization rate of solar energy is relatively low, in order to be further ensured that
The discharge rate of hot-air in housing B7, it is preferable that the warm thermostat 19 of automatic benefit is additionally provided with housing B7.So just can be by certainly
Move and mend the electrical heating of warm thermostat 19 to overcome rainy weather solar energy utilization ratio to there is low defect.
On the basis of the above, in order to further improve the utilization rate of energy, it is preferable that cold air duct 2 it is outer
Portion is enclosed with asbestos heat-insulation layer, and the outside of the pipeline of hot air duct 4 is provided with carbon black heat-sink shell, just can so overcome air in biography
The defect of energy dissipation during defeated.
The preferred embodiment of the present invention is described in detail above in association with accompanying drawing, still, the present invention is not limited to above-mentioned reality
The detail in mode is applied, in the range of the technology design of the present invention, a variety of letters can be carried out to technical scheme
Monotropic type, these simple variants belong to protection scope of the present invention.
It is further to note that each particular technique feature described in above-mentioned embodiment, in not lance
In the case of shield, can be combined by any suitable means, in order to avoid unnecessary repetition, the present invention to it is various can
The combination of energy no longer separately illustrates.
In addition, various embodiments of the present invention can be combined randomly, as long as it is without prejudice to originally
The thought of invention, it should equally be considered as content disclosed in this invention.
Claims (10)
1. a kind of environment-friendly type dual intensity integration supplies collecting system, it is characterised in that including:Air energy heat pump is integrated, freezer (3) and dry
Dry machine (5);The air energy heat pump is integrated including multiple heat pump modules (1), and one end of the heat pump module (1) passes through cool air hose
Road (2) is connected with the freezer (3), and the other end is connected by hot air duct (4) with the dryer (5);The heat pump
Module (1) includes being provided with air intake (12) on housing A (6) and housing B (7), the housing A (6) and housing B (7);Institute
Air energy converter structure, the air energy converter structure energy are provided with the integrative-structure for stating housing A (6) and housing B (7) compositions
It is enough that air in the housing A (6) is converted into cold air and is discharged into the cold air duct (2), the air energy converter
The interior air of the housing B (7) can be converted to hot-air and and is discharged into the hot air duct (4) by structure;The air intake
(12) outside is provided with heating tube (20), and the heating tube (20) is internally provided with spiral duct, the heating tube (20)
End is provided with the collecting plate (17) of opening.
2. environment-friendly type dual intensity integration according to claim 1 supplies collecting system, it is characterised in that on the collecting plate (17)
It is provided with multiple continuous wave protruding blocks (18), the inner surface of the wave protruding block (18) and spiral duct is painted with collection
Thermosphere.
3. environment-friendly type dual intensity integration according to claim 1 supplies collecting system, it is characterised in that the collection thermosphere by lower and
On be disposed with layer of mineral wool and black chrome coating.
4. the environment-friendly type dual intensity integration according to any one in claim 1-3 supplies collecting system, it is characterised in that described
Air energy converter structure includes circulating expansion valve (8), evaporator (9), condenser (10) and the compression of connection successively by pipeline
Machine (11);Wherein, the expansion valve (8), evaporator (9) are located in the housing A (6), the condenser (10) and compressor
(11) it is arranged in the housing B (7).
5. environment-friendly type dual intensity integration according to claim 4 supplies collecting system, it is characterised in that the heat pump module (1)
Also include thermal insulation board (15), the housing A (6) is arranged on the side of the thermal insulation board (15), and the housing B (7) is arranged at
On the opposite side of the thermal insulation board (15).
6. environment-friendly type dual intensity integration according to claim 4 supplies collecting system, it is characterised in that the shell of the housing A (6)
Multiple ventilating fans (16) are provided with body, the outlet of the ventilating fan (16) is connected with the cold air duct (2).
7. environment-friendly type dual intensity integration according to claim 4 supplies collecting system, it is characterised in that the two of the housing B (7)
Side is provided between the air intake (12), and two air intakes (12) and is provided with hot-blast outlet (14), described
Hot-blast outlet (14) is connected with the hot air duct (4).
8. environment-friendly type dual intensity integration according to claim 4 supplies collecting system, it is characterised in that in the housing B (7) also
It is provided with the warm thermostat (19) of automatic benefit.
9. environment-friendly type dual intensity integration according to claim 1 supplies collecting system, it is characterised in that the cold air duct (2)
Outer wrap have asbestos heat-insulation layer, the outside of the pipeline of the hot air duct (4) is provided with carbon black heat-sink shell.
10. environment-friendly type dual intensity integration according to claim 1 supplies collecting system, it is characterised in that the collecting plate (17)
The end of the heating tube (20) is articulated with, and the top of the heating tube (20) is transparent panel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201710598521.5A CN107192166A (en) | 2017-07-21 | 2017-07-21 | Environment-friendly type dual intensity integration supplies collecting system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201710598521.5A CN107192166A (en) | 2017-07-21 | 2017-07-21 | Environment-friendly type dual intensity integration supplies collecting system |
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Publication Number | Publication Date |
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CN107192166A true CN107192166A (en) | 2017-09-22 |
Family
ID=59884789
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CN201710598521.5A Withdrawn CN107192166A (en) | 2017-07-21 | 2017-07-21 | Environment-friendly type dual intensity integration supplies collecting system |
Country Status (1)
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CN (1) | CN107192166A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108887456A (en) * | 2018-08-06 | 2018-11-27 | 德清笑堂食品有限公司 | Drying unit is used in a kind of production of candy |
-
2017
- 2017-07-21 CN CN201710598521.5A patent/CN107192166A/en not_active Withdrawn
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108887456A (en) * | 2018-08-06 | 2018-11-27 | 德清笑堂食品有限公司 | Drying unit is used in a kind of production of candy |
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Application publication date: 20170922 |