CN205641675U - Cold -stored multifunctional integral machine group of stoving hot water - Google Patents
Cold -stored multifunctional integral machine group of stoving hot water Download PDFInfo
- Publication number
- CN205641675U CN205641675U CN201620286124.5U CN201620286124U CN205641675U CN 205641675 U CN205641675 U CN 205641675U CN 201620286124 U CN201620286124 U CN 201620286124U CN 205641675 U CN205641675 U CN 205641675U
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- mouth
- heat exchanger
- electromagnetic valve
- hot water
- cross valve
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- Devices That Are Associated With Refrigeration Equipment (AREA)
Abstract
The utility model discloses a cold -stored multifunctional integral machine group of stoving hot water, including controller, compressor, separator, cross valve, first, two solenoid valves, throttling arrangement and first, two, three heat exchangers, the compressor respectively with the communicateing with the separator of cross valve, the cross valve still communicates first, two heat exchangers, and the solenoid valve is used for controlling heat exchanger work, first heat exchanger and second solenoid valve are all through throttling arrangement and third heat exchanger intercommunication, the third heat exchanger still with the intercommunication of cross valve, the controller is used for control. The utility model discloses a setting up three heat exchanger and share a set of compressor, separator, throttling arrangement etc. In the unit, controlling the switching -over of three heat exchanger work and cross valve respectively through the solenoid valve, the function conversion of stoving, hot water or three kind cold -stored modes is realized on low -cost, low -power consumption ground. The utility model relates to a but a cold -stored multifunctional integral machine group of stoving hot water wide application in agricultural product and processing field.
Description
Technical field
This utility model relates generally to processing of farm products field, especially a kind of drying multifunctional integrated unit of hot water cold preservation.
Background technology
Heat pump drying is to utilize inverse Carnot's principle, absorbs the heat of baking room outer air and transfers in baking room, it is achieved the temperature of baking room improves, and coordinates corresponding equipment to realize the dehydrate of material.In work process, heat pump heat exchanger absorbs the heat in outside air, or the used heat of aerofluxus in recovery dry run, through compressor work, by energy carrying (transfer) to baking room, the hot-air in baking room is heated through iterative cycles, constantly absorb the moisture in material, and through hot air dehumidifying or the process of condensed water outlet, the moisture in material is discharged, finally realizes the continuous drying of material.A lot of processing of farm products techniques not only need dry, also have part to need agricultural product to carry out deepfreeze fresh-keeping, but Normal practice need to additionally increase refrigerating equipment and couveuse, so will be greatly improved device initial cost cost and energy consumption.Additionally now life in the countryside level improves constantly, living-hygienic hot water usage amount the biggest (not just shower, also wash dish, laundry etc.), although the most universal coal gas, electric hot water is clean and initial cost is less but energy consumption high, there is also potential safety hazard;Although produce health hot water energy-saving, safe and environment-friendly with air energy or solar energy, but by installation region or position limitation, it is often more important that initial cost is relatively costly.
Utility model content
In order to solve above-mentioned technical problem, the purpose of this utility model is: provide a kind of drying multifunctional integrated unit of hot water cold preservation realizing the switching of flexible function.
nullThis utility model be the technical scheme is that a kind of drying multifunctional integrated unit of hot water cold preservation,Include controller、Compressor、Separator、Cross valve、First electromagnetic valve、Second electromagnetic valve、Throttling arrangement、First Heat Exchanger、Second heat exchanger、3rd heat exchanger and blower fan,Described cross valve includes S、C、D、Tetra-interfaces of E,Described compressor connects with D mouth and the separator of cross valve respectively,Described separator also connects with the S mouth of cross valve,The C mouth of described cross valve is connected with First Heat Exchanger by the first electromagnetic valve,The C mouth of described cross valve is connected by the second heat exchanger and the second electromagnetic valve,Described First Heat Exchanger and the second electromagnetic valve are all connected by throttling arrangement and the 3rd heat exchanger,Described 3rd heat exchanger also connects with the E mouth of cross valve,Described controller is used for controlling cross valve、First electromagnetic valve、Second electromagnetic valve、Compressor and blower fan.
Further, described First Heat Exchanger is arranged in closing insulated space, and described 3rd heat exchanger is placed in outside closing insulated space.
Further, also including and be arranged at the wet and dry bulb temperature sensor closed in insulated space, described wet and dry bulb temperature sensor is connected with controller.
Further, also including and be arranged at the hot water thermal insulating water tank closed in insulated space, described second heat exchanger is placed at hot water thermal insulating water tank.
Further, described first electromagnetic valve is normally opened in no power state.
Further, described second electromagnetic valve is normally closed in no power state.
Further, when this unit works in drying pattern, described controller control cross valve C mouth connect with D mouth, E mouth connects with S mouth, described controller control the first electromagnetic valve open, the second closed electromagnetic valve.
Further, when this unit works in hot-water mode, the C mouth of described controller control cross valve connects with D mouth, E mouth connects with S mouth, and described controller controls the first closed electromagnetic valve, the second electromagnetic valve is opened.
Further, when this unit works in cold preservation pattern, described controller control cross valve C mouth connect with S mouth, D mouth connects with E mouth, described controller control the first electromagnetic valve open, the second closed electromagnetic valve.
Effect of the present utility model is: this utility model is by arranging three heat exchangers in systems and sharing one group of compressor, separator, throttling arrangement etc., three heat exchanger work and the commutation of cross valve is controlled respectively by electromagnetic valve, low cost, realize drying pattern, hot-water mode or the power and energy of cold preservation pattern with low power, improve capacity utilization.
Accompanying drawing explanation
Fig. 1 is this utility model systematic schematic diagram;
Fig. 2 is that this utility model drying pattern coolant flows to schematic diagram;
Fig. 3 is that this utility model hot-water mode's coolant flows to schematic diagram;
Fig. 4 is that this utility model cold preservation pattern coolant flows to schematic diagram.
Detailed description of the invention
Below in conjunction with the accompanying drawings detailed description of the invention of the present utility model is described further:
nullWith reference to Fig. 1,A kind of drying multifunctional integrated unit of hot water cold preservation,Include controller (not shown)、Compressor 1、Separator 2、Cross valve 3、First electromagnetic valve 7、Second electromagnetic valve 8、Throttling arrangement 9、First Heat Exchanger 5、Second heat exchanger 4 and the 3rd heat exchanger 6 and blower fan (not shown),Described cross valve 3 includes S、C、D、Tetra-interfaces of E,Described compressor 1 connects with D mouth and the separator 2 of cross valve 3 respectively,Described separator 2 also connects with the S mouth of cross valve 3,The C mouth of described cross valve 3 is connected with First Heat Exchanger 5 by the first electromagnetic valve 7,The C mouth of described cross valve 3 is connected with the second electromagnetic valve 8 by the second heat exchanger 4,Described First Heat Exchanger 5 is all connected with the 3rd heat exchanger 6 by throttling arrangement 9 with the second electromagnetic valve 8,Described 3rd heat exchanger 6 also connects with the E mouth of cross valve 3,Described controller is used for controlling cross valve 3、First electromagnetic valve 7、Second electromagnetic valve 8、Compressor 1、Separator 2 and blower fan.
By controller, the control of cross valve the 3, first electromagnetic valve 7 and the second electromagnetic valve 8 can be realized the difference in functionality switching of drying pattern, hot-water mode and cold preservation pattern.
Being further used as preferred embodiment, described First Heat Exchanger 5 is arranged in closing insulated space, and described 3rd heat exchanger 6 is placed in outside closing insulated space.Described closing insulated space such as baking room, drying baker, couveuse etc..
Being further used as preferred embodiment, also include and be arranged at the wet and dry bulb temperature sensor closed in insulated space, described wet and dry bulb temperature sensor is connected with controller.
Being further used as preferred embodiment, also include and be arranged at the hot water thermal insulating water tank closed in insulated space, described second heat exchanger 4 is placed at hot water thermal insulating water tank.
Being further used as preferred embodiment, described first electromagnetic valve 7 is normally opened in no power state.
Being further used as preferred embodiment, described second electromagnetic valve 8 is normally closed in no power state.
Described multi-mode includes drying pattern, hot-water mode and cold preservation pattern, is described in detail the detailed description of the invention of above-mentioned Three models below:
With reference to Fig. 2, it is further used as preferred embodiment, when this unit works in drying pattern, described controller controls cross valve the 3, first electromagnetic valve 7 and the second electromagnetic valve 8 no power, i.e. the C mouth of cross valve 3 connects with D mouth, E mouth connects with S mouth, and the first electromagnetic valve 7 is opened, and the second electromagnetic valve 8 cuts out;Now the second heat exchanger 4 does not works, and is usually placed in the internal coolant of the First Heat Exchanger 5 closed in insulated space and externally releases heat, continuous heating material due to condensation, plays the effect of drying.
With reference to Fig. 3, it is further used as preferred embodiment, when this unit works in hot-water mode, described controller controls cross valve 3 no power, the first electromagnetic valve 7 and the second electromagnetic valve 8 and is energized, i.e. the C mouth of cross valve 3 connects with D mouth, E mouth connects with S mouth, first electromagnetic valve 7 cuts out, and the second electromagnetic valve 8 is opened;Now First Heat Exchanger 5 does not works, and is usually placed in coolant inside the second heat exchanger 4 at the hot water thermal insulating water tank of indoor and, due to the external heat release of condensation, is usually placed in the water in neighbouring hot water thermal insulating water tank for continuous heating.
With reference to Fig. 4, it is further used as preferred embodiment, when this unit works in cold preservation pattern, described controller control cross valve 3 is energized, the first electromagnetic valve 7 and the second electromagnetic valve 8 no power, i.e. the C mouth of cross valve 3 connects with S mouth, D mouth connects with E mouth, first electromagnetic valve 7 is opened, and the second electromagnetic valve 8 cuts out;Now the second heat exchanger 4 does not works, and cross valve 3 commutates, and the internal coolant of First Heat Exchanger 5 being usually placed in closing insulated space is due to the heat near evaporation absorption, thus persistently reduces indoor temperature, it is achieved the effect of cold preservation.
It is above preferable enforcement of the present utility model is illustrated, but this utility model is created and is not limited to described embodiment, those of ordinary skill in the art can also make all equivalents or replacement on the premise of this utility model spirit, and conversion or the replacement of these equivalents are all contained in the application claim limited range.
Claims (9)
- null1. dry the multifunctional integrated unit of hot water cold preservation for one kind,It is characterized in that: include controller、Compressor、Separator、Cross valve、First electromagnetic valve、Second electromagnetic valve、Throttling arrangement、First Heat Exchanger、Second heat exchanger、3rd heat exchanger and blower fan,Described cross valve includes S、C、D、Tetra-interfaces of E,Described compressor connects with D mouth and the separator of cross valve respectively,Described separator also connects with the S mouth of cross valve,The C mouth of described cross valve is connected with First Heat Exchanger by the first electromagnetic valve,The C mouth of described cross valve is connected by the second heat exchanger and the second electromagnetic valve,Described First Heat Exchanger and the second electromagnetic valve are all connected by throttling arrangement and the 3rd heat exchanger,Described 3rd heat exchanger also connects with the E mouth of cross valve,Described controller is used for controlling cross valve、First electromagnetic valve、Second electromagnetic valve、Compressor and blower fan.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterised in that: described First Heat Exchanger is arranged in closing insulated space, and described 3rd heat exchanger is placed in outside closing insulated space.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 2, it is characterised in that: also including and be arranged at the wet and dry bulb temperature sensor closed in insulated space, described wet and dry bulb temperature sensor is connected with controller.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 2, it is characterised in that: also including and be arranged at the hot water thermal insulating water tank closed in insulated space, described second heat exchanger is placed at hot water thermal insulating water tank.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterised in that: described first electromagnetic valve is normally opened in no power state.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterised in that: described second electromagnetic valve is normally closed in no power state.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterized in that: when this unit works in drying pattern, described controller control cross valve C mouth connect with D mouth, E mouth connects with S mouth, described controller control the first electromagnetic valve open, the second closed electromagnetic valve.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterized in that: when this unit works in hot-water mode, the C mouth of described controller control cross valve connects with D mouth, E mouth connects with S mouth, and described controller controls the first closed electromagnetic valve, the second electromagnetic valve is opened.
- A kind of drying multifunctional integrated unit of hot water cold preservation the most according to claim 1, it is characterized in that: when this unit works in cold preservation pattern, described controller control cross valve C mouth connect with S mouth, D mouth connects with E mouth, described controller control the first electromagnetic valve open, the second closed electromagnetic valve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620286124.5U CN205641675U (en) | 2016-04-07 | 2016-04-07 | Cold -stored multifunctional integral machine group of stoving hot water |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620286124.5U CN205641675U (en) | 2016-04-07 | 2016-04-07 | Cold -stored multifunctional integral machine group of stoving hot water |
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CN205641675U true CN205641675U (en) | 2016-10-12 |
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CN201620286124.5U Expired - Fee Related CN205641675U (en) | 2016-04-07 | 2016-04-07 | Cold -stored multifunctional integral machine group of stoving hot water |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112197570A (en) * | 2020-10-29 | 2021-01-08 | 张勇 | Composite heat pump drying system |
-
2016
- 2016-04-07 CN CN201620286124.5U patent/CN205641675U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112197570A (en) * | 2020-10-29 | 2021-01-08 | 张勇 | Composite heat pump drying system |
CN112197570B (en) * | 2020-10-29 | 2023-08-25 | 张勇 | Composite heat pump drying system |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP01 | Change in the name or title of a patent holder |
Address after: 510006 Guangdong city of Guangzhou province Panyu District city science and Technology Park Road No. 8 bridge cross layer two Patentee after: Guangzhou spring intelligent Polytron Technologies Inc Address before: 510006 Guangdong city of Guangzhou province Panyu District city science and Technology Park Road No. 8 bridge cross layer two Patentee before: GUANGZHOU QUANNENG ENERGY TECHNOLOGY CO., LTD. |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20161012 Termination date: 20190407 |
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CF01 | Termination of patent right due to non-payment of annual fee |