CN203224042U - Groove-type solar water heater heat collecting system - Google Patents
Groove-type solar water heater heat collecting system Download PDFInfo
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- CN203224042U CN203224042U CN2013202182838U CN201320218283U CN203224042U CN 203224042 U CN203224042 U CN 203224042U CN 2013202182838 U CN2013202182838 U CN 2013202182838U CN 201320218283 U CN201320218283 U CN 201320218283U CN 203224042 U CN203224042 U CN 203224042U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
- Y02E10/44—Heat exchange systems
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- Heat-Pump Type And Storage Water Heaters (AREA)
Abstract
The utility model relates to a system for converting solar into heat energy, in particular to a groove-type solar water heater heat collecting system. The groove-type solar water heater heat collecting system comprises a water inlet pipeline, a water inlet electromagnetic valve, an air valve, a groove-type spot lamp, a vacuum heat collecting pipe, a middle pipeline, a water outlet electromagnetic valve, a water tank, a water outlet pipeline, and a central processing unit, wherein the water inlet electromagnetic valve and the air valve are arranged on the water inlet pipeline, the groove-type spot lamp is installed on the ground through a spot lamp support, an inner cavity of the vacuum heat collecting pipeline is communicated with the water inlet pipeline, the inner portion of the vacuum heat collecting pipeline is provided with a vacuum pipe temperature probe and a vacuum pipe water-level probe, one end of the middle pipeline is connected to the bottom portion of the vacuum heat collecting pipe, the water outlet electromagnetic valve is arranged on the middle pipeline, the inner cavity of the water tank is communicated with the middle pipeline, a water tank temperature probe, a water tank electric heater, a water tank water-level probe and an air discharging pipe are arranged inside the water tank, the water outlet pipeline is communicated with the cavity of the water tank, a switch is arranged on the water outlet pipeline, and the central processing unit is used for controlling all electrical apparatus elements. The system for converting the solar into the heat energy overcomes the defects that through a traditional collecting method, high temperature of water cannot be achieved, and a spotlight water heater is expensive, and has certain advantages.
Description
Technical field
It is the system of heat energy with conversion of solar energy that the utility model relates to a kind of, especially a kind of trough type solar water heater heat-collecting system.
Background technology
Solar water heater mainly is divided into all-glass vacuum tube type and metal plate type heat collector at present, and the receiving efficiency of these heat collectors is difficult to realize high temperature in 50%, generally be used for bathing, and can not use at rainy weather; Another kind is light collecting water heater, and collecting efficiency is higher, and generally more than 70%, but because solar furnace need be followed the tracks of sun Three dimensional rotation, price is comparatively expensive, and can not realize heating continuously automatically, and the heat of reception is difficult for transmitting and storage.
The utility model content
The utility model is intended to address the above problem, and providing a kind of is the system of heat energy with conversion of solar energy, and it has overcome traditional acquisition mode and is difficult to realize making water high temperature and the expensive drawback of light collecting water heater, and its technical scheme that adopts is as follows:
A kind of trough type solar water heater heat-collecting system comprises:
Inlet pipeline;
Entering water electromagnetic valve, it is located on the inlet pipeline;
Air valve, it is located on the inlet pipeline, is used for discharging hot gas;
The slot light collection lamp, it is installed on the ground by the spotlight support;
Vacuum heat collection pipe, its inner chamber communicates with inlet pipeline, and described vacuum heat collection pipe inside is provided with for detection of the vacuum tube temp probe of water temperature in the vacuum heat collection pipe with for detection of the vacuum tube water-level probe of water level in the vacuum heat collection pipe;
Intermediate duct, one end are connected in the vacuum heat collection pipe bottom;
Go out water solenoid valve, it is located on the intermediate duct;
Water tank, its inner chamber is connected with intermediate duct, is provided with water tank temperature probe for detection of the water tank water temperature, water tank electric heater in the described water tank, for detection of cistern water level probe and the blast pipe of cistern water level;
Outlet pipeline, it communicates with water tank cavity, and described outlet pipeline is provided with switch;
Central processing unit, be used for each electric elements of control, described entering water electromagnetic valve, air valve, vacuum tube temp probe, vacuum tube water-level probe, go out water solenoid valve, water tank temperature probe, water tank electric heater and cistern water level probe and all be connected with central processing unit by lead.
On the technique scheme basis, this trough type solar water heater heat-collecting system also comprises dynamo-electric machine of step and two the sunshine signal receivers that drive the rotation of slot type spotlight, described slot light collection lamp and spotlight support are rotationally connected, dynamo-electric machine of described step is connected with the slot light collection lamp with shaft joint by turning cylinder and is connected with central processing unit by lead, be placed in slot light collection lamp both sides and be connected with central processing unit by lead of described sunshine signal receiver, described vacuum heat collection pipe are by the thermal-collecting tube support and the slot light collection lamp is affixed rotates synchronously with the slot light collection lamp.
On the technique scheme basis, described water tank mainly is made up of the water tank vacuum layer of outer field water tank foam casings and internal layer.
On the technique scheme basis, the inboard of described water tank vacuum layer and the outside are all plated and are connected to silver coating.
On the technique scheme basis, described vacuum heat collection pipe is positioned at the focus place of slot light collection lamp.
On the technique scheme basis, described slot light collection lamp and angle that ground is are 45 degree.
On the technique scheme basis, this trough type solar water heater heat-collecting system also comprises manual water intaking valve, and it is located on the inlet pipeline.
On the technique scheme basis, this trough type solar water heater heat-collecting system also comprises the cold water pipeline, and it is communicated with inlet pipeline, which is provided with switch.
The utlity model has following advantage: adopt groove type heat collector, the dimension of following the tracks of the sun drops to one dimension from three-dimensional, and the slot type reflective mirror is compared the easier processing of butterfly simultaneously, and price is few; Heat collector adopts existing vacuum heat collection pipe, is easy to industrialization production; The use device is few, directly connects running water pipe, and without water pump, cost reduces greatly; Water storage box adopts the double-layer vacuum INSULATION DESIGN, also can guarantee normally to provide hot water under conditions such as cloudy day, winter, night; Use cold and hot two taps, can adjust water temperature according to user's needs.
Description of drawings
Fig. 1: structural representation of the present utility model;
Fig. 2: vacuum heat collection pipe described in the utility model is placed the schematic diagram in orientation;
Symbol description:
1. inlet pipeline, 2. manually water intaking valve, 3. entering water electromagnetic valve, 4. air valve 5. goes on foot dynamo-electric machine, 6. vacuum tube temp probe, 7. vacuum heat collection pipe, 8. slot light collection lamp, 9. sunshine signal receiver, 10. vacuum tube water-level probe, 11. intermediate duct, 12. go out water solenoid valve, 13. spotlight support, 14. the thermal-collecting tube support, 16. central processing units, 20. water tanks, 21. water tank foam casings, 22. the water tank vacuum layer, 23. water tank temperatures probe, 24. water tank electric heaters, 25. cistern water level probe, 26. blast pipe, 30. outlet pipelines, 40. cold water pipelines.
The specific embodiment
The utility model is described in further detail below in conjunction with accompanying drawing and example:
As depicted in figs. 1 and 2, a kind of trough type solar water heater heat-collecting system comprises:
Inlet pipeline 1;
Entering water electromagnetic valve 3, it is located on the inlet pipeline 1;
Slot light collection lamp 8, it is installed on the ground by spotlight support 13;
Vacuum heat collection pipe 7, its inner chamber communicates with inlet pipeline 1, and described vacuum heat collection pipe 7 inside are provided with for detection of the vacuum tube temp probe 6 of water temperatures in the vacuum heat collection pipe 7 with for detection of the vacuum tube water-level probe 10 of water levels in the vacuum heat collection pipe 7;
Go out water solenoid valve 12, it is located on the intermediate duct 11;
Outlet pipeline 30, it communicates with water tank 20 inner chambers, and described outlet pipeline 30 is provided with switch;
Preferably, this trough type solar water heater heat-collecting system also comprises dynamo-electric machine 5 of step and two the sunshine signal receivers 9 that drive 8 rotations of slot type spotlight, described slot light collection lamp 8 is rotationally connected with spotlight support 13, dynamo-electric machine 5 of described step is connected with slot light collection lamp 8 with shaft joint by turning cylinder and is connected with central processing unit 16 by lead, be placed in slot light collection lamp 8 both sides and be connected with central processing unit 16 by lead of described sunshine signal receiver 9, described vacuum heat collection pipe 7 is affixed and rotate synchronously with slot light collection lamp 8 by thermal-collecting tube support 14 and slot light collection lamp 8, when sunlight deflection, about can produce voltage difference between two sunshine signal receivers 9, signal feedback is in central processing unit 16, slot light collection lamp 8 turns an angle under the driving of stepper motor 5, stops when both sides voltage equates.
Preferably, described water tank 20 mainly is made up of the water tank vacuum layer 22 of outer field water tank foam casings 21 and internal layer.
Preferably, the inboard of described water tank vacuum layer 22 and the outside are all plated and are connected to silver coating.
Preferably, described vacuum heat collection pipe 7 is positioned at the focus place of slot light collection lamp 8, so is convenient to daylighting.
Preferably, described slot light collection lamp 8 is 45 degree with angle that ground is, and is convenient to sunlight collecting.
Further, this trough type solar water heater heat-collecting system also comprises manual water intaking valve 2, and it is located on the inlet pipeline 1.
Further again, this trough type solar water heater heat-collecting system also comprises cold water pipeline 40, and it is communicated with inlet pipeline 1, which is provided with switch.
During use, open manual water intaking valve 2, open central processing unit 16, it is T that setting needs the temperature of hot water, and entering water electromagnetic valve 3 and air valve 4 are opened, and go out water solenoid valve 12 and close.When treating that vacuum tube water-level probe 10 detects water and fills with, signal feedback is closed entering water electromagnetic valve 3 and air valve 4 to central processing unit 16.After heating a period of time, after treating that vacuum tube temp probe 6 detects temperature and reaches T, signal feedback is to central processing unit 16, open air valve 4 and go out water solenoid valve 12, when treating that vacuum tube water-level probe 10 detects the water emptying, signal feedback is to central processing unit 16, control entering water electromagnetic valve 3 and air valve 4 are opened, so move in circles, when cistern water level probe 25 detected water and has been full of water tank 20, system quit work.When the cloudy day, if in vacuum heat collection pipe 7, can not be heated to assigned temperature T, then water tank temperature probe 23 survey obtain in one default period water temperature do not have rising then with signal feedback in central processing unit 16, going out water solenoid valve 12 opens, water enters in the water tank 20, water in 24 pairs of water tanks 20 of water tank electric heater heats simultaneously, detects temperature up to water tank temperature probe 23 and reaches assigned temperature T, and water tank electric heater 24 quits work.Close after 30 a period of times when opening outlet pipeline, cistern water level probe 25 detects the water underfill, then with signal feedback in central processing unit 16, system continues the above-mentioned works of circulation, is full of again until water tank 20.When water was full of water tank 20 gradually, the air in the water tank was discharged by blast pipe 26.
The utility model is not limited to above-mentioned specific embodiment, and all any change or modification of doing based on the utility model all belong to the claimed scope of the utility model.
Claims (8)
1. a trough type solar water heater heat-collecting system is characterized in that, comprising:
Inlet pipeline (1);
Entering water electromagnetic valve (3), it is located on the inlet pipeline (1);
Air valve (4), it is located on the inlet pipeline (1), is used for discharging hot gas;
Slot light collection lamp (8), it is installed on the ground by spotlight support (13);
Vacuum heat collection pipe (7), its inner chamber communicates with inlet pipeline (1), and described vacuum heat collection pipe (7) inside is provided with for detection of the vacuum tube temp probe (6) of the interior water temperature of vacuum heat collection pipe (7) with for detection of the vacuum tube water-level probe (10) of the interior water level of vacuum heat collection pipe (7);
Intermediate duct (11), one end are connected in vacuum heat collection pipe (7) bottom;
Go out water solenoid valve (12), it is located on the intermediate duct (11);
Water tank (20), its inner chamber is connected with intermediate duct (11), is provided with in the described water tank (20) for detection of the water tank temperature of water tank water temperature probe (23), water tank electric heater (24), for detection of cistern water level probe (25) and the blast pipe (26) of cistern water level;
Outlet pipeline (30), it communicates with water tank (20) inner chamber, and described outlet pipeline (30) is provided with switch;
Central processing unit (16), be used for each electric elements of control, described entering water electromagnetic valve (3), air valve (4), vacuum tube temp probe (6), vacuum tube water-level probe (10), go out water solenoid valve (12), water tank temperature probe (23), water tank electric heater (24) and cistern water level pop one's head in (25) all be connected with central processing unit (16) by lead.
2. a kind of trough type solar water heater heat-collecting according to claim 1 system, it is characterized in that: also comprise driving dynamo-electric machine (5) of step and two the sunshine signal receivers (9) that slot type spotlight (8) rotates, described slot light collection lamp (8) is rotationally connected with spotlight support (13), dynamo-electric machine of described step (5) is connected with slot light collection lamp (8) with shaft joint by turning cylinder and is connected with central processing unit (16) by lead, be placed in slot light collection lamp (8) both sides and be connected with central processing unit (16) by lead of described sunshine signal receiver (9), described vacuum heat collection pipe (7) rotates with slot light collection lamp (8) synchronously by thermal-collecting tube support (14) and slot light collection lamp (8) are affixed.
3. a kind of trough type solar water heater heat-collecting according to claim 1 and 2 system, it is characterized in that: described water tank (20) mainly is made up of the water tank vacuum layer (22) of outer field water tank foam casings (21) and internal layer.
4. a kind of trough type solar water heater heat-collecting according to claim 3 system, it is characterized in that: the inboard of described water tank vacuum layer (22) and the outside are all plated and are connected to silver coating.
5. a kind of trough type solar water heater heat-collecting according to claim 2 system, it is characterized in that: described vacuum heat collection pipe (7) is positioned at the focus place of slot light collection lamp (8).
6. a kind of trough type solar water heater heat-collecting according to claim 1 system is characterized in that: described slot light collection lamp (8) and angle that ground is are 45 to spend.
7. a kind of trough type solar water heater heat-collecting according to claim 1 system, it is characterized in that: also comprise manual water intaking valve (2), it is located on the inlet pipeline (1).
8. a kind of trough type solar water heater heat-collecting according to claim 1 system, it is characterized in that: also comprise cold water pipeline (40), it is communicated with inlet pipeline (1), which is provided with switch.
Priority Applications (1)
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CN2013202182838U CN203224042U (en) | 2013-04-26 | 2013-04-26 | Groove-type solar water heater heat collecting system |
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CN2013202182838U CN203224042U (en) | 2013-04-26 | 2013-04-26 | Groove-type solar water heater heat collecting system |
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CN2013202182838U Expired - Fee Related CN203224042U (en) | 2013-04-26 | 2013-04-26 | Groove-type solar water heater heat collecting system |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106440398A (en) * | 2016-11-24 | 2017-02-22 | 桂林星蓝节能环保科技有限公司 | Superpowers solar water heater |
CN106440399A (en) * | 2016-11-24 | 2017-02-22 | 桂林星蓝节能环保科技有限公司 | Super-energy solar hot water supply system |
-
2013
- 2013-04-26 CN CN2013202182838U patent/CN203224042U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106440398A (en) * | 2016-11-24 | 2017-02-22 | 桂林星蓝节能环保科技有限公司 | Superpowers solar water heater |
CN106440399A (en) * | 2016-11-24 | 2017-02-22 | 桂林星蓝节能环保科技有限公司 | Super-energy solar hot water supply system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20131002 Termination date: 20150426 |
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EXPY | Termination of patent right or utility model |