CN219797339U - Energy-saving heating system - Google Patents
Energy-saving heating system Download PDFInfo
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- CN219797339U CN219797339U CN202321114016.6U CN202321114016U CN219797339U CN 219797339 U CN219797339 U CN 219797339U CN 202321114016 U CN202321114016 U CN 202321114016U CN 219797339 U CN219797339 U CN 219797339U
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Abstract
The utility model belongs to the technical field of household heating equipment, and discloses an energy-saving heating system which comprises a hot water tank, an electric water heater, a solar water heater and a radiator, wherein the electric water heater is connected with a radiator pipeline, a first electric valve is arranged on a water outlet pipeline of the electric water heater, a first water pump and a second electric valve are arranged on a water outlet pipeline of the radiator, the water outlet pipeline of the radiator is connected with a cold water inlet of the electric water heater, the cold water inlet of the electric water heater is externally connected with a water source through a pipeline, a third electric valve is arranged on a pipeline externally connected with the water source, and the hot water tank is connected with a water inlet pipeline of the radiator. According to the utility model, the solar water heater is used for injecting water into the hot water tank, and the second water pump is used for pumping water to the radiator, so that the radiator pumps water to the hot water tank, the radiated water is recovered into the solar water heater, and the energy saving and heat supply are facilitated by the heating mode of the solar water heater.
Description
Technical Field
The utility model relates to the technical field of household heating equipment, in particular to an energy-saving heating system.
Background
The household water heating equipment mainly adopts an electric water heater or a gas water heater to guide hot water into a radiator, and then the water of the radiator is recycled into the water heater through a water pump to be heated.
Because only the electric water heater or the gas water heater is adopted to consume electric energy or gas energy, if the solar water heater is adopted to recover cold water, the heat of residual hot water in solar energy is directly dispersed, and therefore the problem that the conventional heating system wastes energy is caused.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides an energy-saving heating system, and the conventional heating system has the problem of energy waste.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an energy-saving heating system, includes hot-water tank, electric water heater, solar water heater and radiator, electric water heater links to each other with the radiator pipeline, install first motorised valve on the outlet conduit of electric water heater, install first water pump and second motorised valve on the outlet conduit of radiator, the outlet conduit of radiator is connected with electric water inlet of electric water heater, electric water inlet of electric water heater still passes through the external water source of pipeline, and installs the third motorised valve on the pipeline of external water source, the hot-water tank is connected with the water inlet pipeline of radiator, and installs the fourth motorised valve on the pipeline between hot-water tank and the radiator, the delivery port and the hot-water tank pipeline of solar water heater are connected, install the fifth motorised valve on the pipeline of solar water heater and hot-water tank, the water inlet and the external water source pipeline of solar water heater are connected, install the sixth motorised valve on the external water source pipeline of solar water heater, the water inlet of solar water heater still is connected with the delivery port pipeline of radiator, and install the third motorised valve on the pipeline between the water inlet of solar water heater and the radiator.
The solar water heater is used for injecting water into the hot water tank, and the second water pump is used for pumping water to the radiator, so that the radiator pumps water to the hot water tank, the radiated water is recovered into the solar water heater, and the solar water heater is used for heating, so that energy conservation and heat supply are facilitated.
Preferably, a water level sensor is installed on the hot water tank.
The water level information of the hot water tank is collected by utilizing the water level sensor, so that the intelligent equipment can conveniently judge that the hot water tank is full of water.
Preferably, a temperature sensor is also installed on the hot water tank.
When the water temperature of the hot water tank is less than 30 ℃, the second water pump, the seventh electric valve and the fourth electric valve are closed, the electric water heater is started again, and meanwhile, the first water pump, the second electric valve and the first electric valve are opened for supplying heat continuously, so that the intelligent judgment of replacement heat supply is facilitated.
Preferably, the hot water tank comprises a tank body, a gas pipe, a first butt joint mouth and a second butt joint mouth, wherein the gas pipe is fixedly connected to the upper end of the tank body, the gas pipe is communicated with the inner space of the tank body, the first butt joint mouth and the second butt joint mouth are fixedly connected to the lower portion of the tank body, and the inner spaces of the tank body, the first butt joint mouth and the second butt joint mouth are communicated.
The air pipe is utilized for ventilation, so that the water injection or drainage of the box body is facilitated.
Preferably, a first elastic heat-preserving cover is arranged at the upper part of the air pipe.
The first elastic heat-insulating cover is used for blocking the outside of the outlet of the gas pipe, so that the temperature loss of the box body and the gas pipe is reduced.
Preferably, the first elastic heat-insulating cover comprises an elastic frame and a first heat-insulating block, and the upper end of the elastic frame is fixedly connected with the first heat-insulating block.
The first thermal insulation block is utilized to reduce temperature loss.
Preferably, the lower end cover of the first elastic heat-preserving cover is provided with a second elastic heat-preserving cover, the second elastic heat-preserving cover is positioned in the air pipe, and one end of the second elastic heat-preserving cover is fixedly connected with the air pipe.
The second elastic heat-insulating cover is used for shielding the heat-insulating effect of the gap of the first elastic heat-insulating cover.
Preferably, the second elastic heat-insulating cover comprises a second heat-insulating block and an elastic sheet, the first heat-insulating block is annular, the second heat-insulating block is movably covered at the opening of the lower part of the first heat-insulating block, and the second heat-insulating block and the elastic sheet are mutually fixed.
The elastic piece provides elastic force for the second heat insulation block, so that the second heat insulation block is conveniently maintained at the lower end of the first heat insulation block.
1. The solar water heater is used for injecting water into the hot water tank, and the second water pump is used for pumping water to the radiator, so that the radiator pumps water to the hot water tank, the radiated water is recovered into the solar water heater, and the solar water heater is used for heating, so that energy conservation and heat supply are facilitated.
2. When the water temperature of the hot water tank is less than 30 ℃, the second water pump, the seventh electric valve and the fourth electric valve are closed, the electric water heater is started again, and meanwhile, the first water pump, the second electric valve and the first electric valve are opened for supplying heat continuously, so that the intelligent judgment of replacement heat supply is facilitated.
Drawings
FIG. 1 is a schematic diagram of the overall piping structure of the present utility model;
FIG. 2 is a schematic diagram of a split structure of the hot water tank according to the present utility model;
FIG. 3 is a schematic view of a first elastic thermal insulation cover according to the present utility model;
fig. 4 is a schematic structural view of a second elastic thermal insulation cover according to the present utility model.
In the figure: 2. a hot water tank; 3. a first elastic heat-insulating cover; 4. a second elastic heat-insulating cover; 5. a first water pump; 6. a second electrically operated valve; 7. a third electrically operated valve; 8. a sixth electrically operated valve; 9. a first electrically operated valve; 10. a fifth electrically operated valve; 11. a seventh electric valve; 12. a fourth electrically operated valve; 13. a water level sensor; 14. a temperature sensor; 15. a second water pump; 21. a case; 22. a gas pipe; 23. a first docking nozzle; 24. a second butt joint mouth; 31. an elastic rack; 32. a first thermal block; 41. a second heat-insulating block; 42. and the elastic sheet.
Detailed Description
For a better understanding of the objects, structure and function of the present utility model, a muffler for a supercharger according to the present utility model will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, an energy-saving heating system comprises a hot water tank 2, an electric water heater, a solar water heater and a radiator, wherein the electric water heater is connected with the radiator pipeline, a first electric valve 9 is installed on the water outlet pipeline of the electric water heater, a first water pump 5 and a second electric valve 6 are installed on the water outlet pipeline of the radiator, the water outlet pipeline of the radiator is connected with the cold water inlet of the electric water heater, the cold water inlet of the electric water heater is also connected with a water source through a pipeline, a third electric valve 7 is installed on the pipeline of the external water source, the hot water tank 2 is connected with the water inlet pipeline of the radiator, a fourth electric valve 12 is installed on the pipeline between the hot water tank 2 and the radiator, a water outlet of the solar water heater is connected with the hot water tank 2, a fifth electric valve 10 is installed on the pipeline between the solar water heater and the hot water tank 2, a water inlet of the solar water heater is connected with the external water source pipeline, a sixth electric valve 8 is installed on the external water source pipeline of the solar water heater, the water inlet of the solar water heater is also connected with the water outlet pipeline of the radiator, and a seventh electric valve 11 is installed between the water inlet of the solar water heater and the radiator. The solar water heater is used for injecting water into the hot water tank until the water tank is filled, and then the second water pump 15 is used for pumping water to the radiator, so that the radiator pumps water to the hot water tank, and the water after heat radiation is recovered into the solar water heater.
Referring to fig. 1, a water level sensor 13 is installed on the hot water tank 2. The water level information of the hot water tank 2 is collected by the water level sensor 13, and when the hot water tank 2 is full of water, the fifth electric valve 10 is closed to stop water injection.
Referring to fig. 1, a temperature sensor 14 is further installed on the hot water tank 2. When the water temperature of the hot water tank 2 is less than 30 degrees, the second water pump 15, the seventh electric valve 11 and the fourth electric valve 12 are closed, the electric water heater is restarted, and meanwhile the first water pump 5, the second electric valve 6 and the first electric valve 9 are opened to consume electricity to continue heating.
Referring to fig. 2, the hot water tank 2 includes a tank 21 and an air pipe 22, a first docking nozzle 23 and a second docking nozzle 24, the tank 21 is connected with a solar water heater and a radiator pipeline through the first docking nozzle 23 and the second docking nozzle 24, the water level sensor 13 and the temperature sensor 14 are fixedly connected to the tank 21, the air pipe 22 is fixedly connected to the upper end of the tank 21, the air pipe 22 is communicated with the inner space of the tank 21, the first docking nozzle 23 and the second docking nozzle 24 are fixedly connected to the lower portion of the tank 21, and the inner spaces of the tank 21, the first docking nozzle 23 and the second docking nozzle 24 are communicated. The air pipe 22 is utilized for ventilation, so that water injection or drainage of the box body 21 is facilitated.
Referring to fig. 2, a first elastic thermal insulation cover 3 is disposed at an upper portion of the air pipe 22. The first elastic heat-preserving cover 3 is used for blocking outside the outlet of the air delivery pipe 22, so that the temperature loss of the box body 21 and the air delivery pipe 22 is reduced.
Referring to fig. 2 and 3, the first elastic thermal insulation cover 3 includes an elastic frame 31 and a first thermal insulation block 32, the lower end of the elastic frame 31 is fixedly connected with the air pipe 22, the first thermal insulation block 32 is movably covered on the upper end of the air pipe 22, and the upper end of the elastic frame 31 is fixedly connected with the first thermal insulation block 32. The first thermal block 32 is utilized to reduce temperature loss.
Referring to fig. 2, a second elastic thermal insulation cover 4 is disposed at a lower end of the first elastic thermal insulation cover 3, the second elastic thermal insulation cover 4 is located inside the air pipe 22, and one end of the second elastic thermal insulation cover 4 is fixedly connected with the air pipe 22. The second elastic heat-insulating cover 4 is used for insulating heat at the lower end of the first elastic heat-insulating cover 3, the second elastic heat-insulating cover 4 is opened by air when the air pipe 22 sucks air, and the first elastic heat-insulating cover 3 is opened by air when the air pipe 22 discharges air.
Referring to fig. 2, 3 and 4, the second elastic thermal insulation cover 4 includes a second thermal insulation block 41 and an elastic piece 42, the elastic piece 42 is fixedly connected with the inner wall of the air pipe 22, the first thermal insulation block 32 is annular, the second thermal insulation block 41 is movably covered at the opening of the lower portion of the first thermal insulation block 32, and the second thermal insulation block 41 and the elastic piece 42 are mutually fixed. The elastic piece 42 is used for providing elastic force for the second heat insulation block 41.
Working principle: the solar water heater is used for filling water into the hot water tank until the water tank is filled, the second water pump 15 is used for pumping water to the radiator, the radiator is used for pumping water to the hot water tank, the water after heat radiation is recovered into the solar water heater, the water level sensor 13 is used for collecting the water level information of the hot water tank 2, the fifth electric valve 10 is closed after the hot water tank 2 is filled with water, the water filling is stopped, when the water temperature of the hot water tank 2 is less than 30 ℃, the second water pump 15, the seventh electric valve 11 and the fourth electric valve 12 are closed, the electric water heater is started again, and meanwhile the first water pump 5, the second electric valve 6 and the first electric valve 9 are opened for continuously supplying heat.
It will be understood that the utility model has been described in terms of several embodiments, and that various changes and equivalents may be made to these features and embodiments by those skilled in the art without departing from the spirit and scope of the utility model; the present utility model thus makes a brief mention of the direction of application in relation to the prior art, which is known to the person skilled in the art and which does not make any changes, and the combination with the present utility model forms a complete technology, improving the understanding speed for the person skilled in the art. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the utility model without departing from the essential scope thereof. Therefore, it is intended that the utility model not be limited to the particular embodiment disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.
Claims (8)
1. The utility model provides an energy-saving heating system, includes hot-water tank (2), electric water heater, solar water heater and radiator, its characterized in that: the electric water heater is connected with a radiator pipeline, a first electric valve (9) is arranged on a water outlet pipeline of the electric water heater, a first water pump (5) and a second electric valve (6) are arranged on a water outlet pipeline of the radiator, the water outlet pipeline of the radiator is connected with a cold water inlet of the electric water heater, the cold water inlet of the electric water heater is also externally connected with a water source through a pipeline, a third electric valve (7) is arranged on a pipeline of the externally connected water source, a hot water tank (2) is connected with a water inlet pipeline of the radiator, a fourth electric valve (12) is arranged on a pipeline between the hot water tank (2) and the radiator, a water outlet of the solar water heater is connected with the hot water tank (2) through a pipeline, a fifth electric valve (10) is arranged on a pipeline between the solar water heater and the hot water tank (2), a water inlet of the solar water heater is connected with an externally connected water source pipeline, a sixth electric valve (8) is arranged on the externally connected water source pipeline of the solar water heater, and the water inlet of the solar water heater is also connected with a water outlet pipeline of the radiator, and a water outlet of the electric valve (11) is arranged between the water inlet of the solar water heater and the electric valve and the radiator.
2. An energy efficient heating system according to claim 1, wherein: the hot water tank (2) is provided with a water level sensor (13).
3. An energy efficient heating system according to claim 1, wherein: the hot water tank (2) is also provided with a temperature sensor (14).
4. An energy efficient heating system according to claim 1, wherein: the hot water tank (2) comprises a tank body (21) and a gas pipe (22), a first butt joint mouth (23) and a second butt joint mouth (24), the gas pipe (22) is fixedly connected to the upper end of the tank body (21), the gas pipe (22) is communicated with the inner space of the tank body (21), the first butt joint mouth (23) and the second butt joint mouth (24) are fixedly connected to the lower portion of the tank body (21), and the inner spaces of the tank body (21), the first butt joint mouth (23) and the second butt joint mouth (24) are communicated.
5. An energy efficient heating system as defined in claim 4, wherein: the upper part of the air pipe (22) is provided with a first elastic heat-preserving cover (3).
6. An energy efficient heating system as defined in claim 5, wherein: the first elastic heat preservation cover (3) comprises an elastic frame (31) and a first heat preservation block (32), and the upper end of the elastic frame (31) is fixedly connected with the first heat preservation block (32).
7. An energy efficient heating system as defined in claim 6, wherein: the lower end cover of the first elastic heat preservation cover (3) is provided with a second elastic heat preservation cover (4), the second elastic heat preservation cover (4) is positioned in the air pipe (22), and one end of the second elastic heat preservation cover (4) is fixedly connected with the air pipe (22).
8. An energy efficient heating system as defined in claim 7, wherein: the second elastic heat-insulating cover (4) comprises a second heat-insulating block (41) and an elastic sheet (42), the first heat-insulating block (32) is annular, the second heat-insulating block (41) is movably covered at the opening of the lower part of the first heat-insulating block (32), and the second heat-insulating block (41) and the elastic sheet (42) are mutually fixed.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202321114016.6U CN219797339U (en) | 2023-05-10 | 2023-05-10 | Energy-saving heating system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202321114016.6U CN219797339U (en) | 2023-05-10 | 2023-05-10 | Energy-saving heating system |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN219797339U true CN219797339U (en) | 2023-10-03 |
Family
ID=88151645
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202321114016.6U Active CN219797339U (en) | 2023-05-10 | 2023-05-10 | Energy-saving heating system |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN219797339U (en) |
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2023
- 2023-05-10 CN CN202321114016.6U patent/CN219797339U/en active Active
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