CN220852113U - Novel structure boiler energy-saving device - Google Patents

Novel structure boiler energy-saving device Download PDF

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Publication number
CN220852113U
CN220852113U CN202322686997.8U CN202322686997U CN220852113U CN 220852113 U CN220852113 U CN 220852113U CN 202322686997 U CN202322686997 U CN 202322686997U CN 220852113 U CN220852113 U CN 220852113U
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China
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energy
wall
heat preservation
heat
saving
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CN202322686997.8U
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王学欣
王承禹
王振泉
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Quanzhou Hengxing Energy Saving Technology Co ltd
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Quanzhou Hengxing Energy Saving Technology Co ltd
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Abstract

The utility model discloses a novel-structure boiler energy-saving device, which relates to the technical field of boiler energy-saving devices and comprises an energy-saving device main body, wherein two supporting blocks are arranged below the inner wall of the energy-saving device main body, a heat preservation chamber is commonly arranged on the upper surfaces of the two supporting blocks, a mounting table is arranged below the inner wall of the heat preservation chamber, an energy-saving component is arranged above the mounting table, an air inlet is formed in the right side surface of the energy-saving device main body, and an air inlet pipe is arranged on the inner wall of the air inlet. According to the utility model, high-temperature hot gas is conveyed into the heat preservation chamber through the air inlet pipe and the air outlet, so that the heat conduction copper pipe in the heat preservation chamber is heated, meanwhile, smoke enters the heat preservation cavity through the flow port and is diffused, so that the heat preservation of the gas in the heat preservation chamber is realized, the high Wen Mofa vertical horses generated in the heat preservation chamber are dissipated, the heat preservation chamber can be maintained for a longer time, the heating effect on the heat conduction copper pipe is improved, and meanwhile, the energy saving effect of the boiler energy saver is also improved.

Description

Novel structure boiler energy-saving device
Technical Field
The utility model relates to the technical field of boiler energy-saving devices, in particular to a novel-structure boiler energy-saving device.
Background
The boiler is an energy conversion device, the energy input to the boiler is chemical energy and electric energy in fuel, the boiler outputs steam, high temperature water or organic heat carrier with certain heat energy, the boiler economizer is arranged at the tail part of the boiler, the heat exchange principle is utilized to reduce the temperature of the discharged smoke of the boiler and improve the temperature of the supplied water of the boiler, so that the purposes of saving fuel, saving energy and protecting environment are achieved.
The existing boiler energy-saving device is provided with a through flue gas channel, a coil pipe is arranged in the flue gas channel, steam generated by a boiler is transmitted to fins and the coil pipe after entering the boiler energy-saving device, so that water in the coil pipe can be heated, but in actual use, the boiler energy-saving device is found out that the heat emitted by flue gas cannot be fully utilized when in use, and part of heat can be dissipated in the process, so that the high-efficiency energy conservation of the boiler energy-saving device is not facilitated, and therefore, the novel-structure boiler energy-saving device is required to meet the demands of people.
Disclosure of utility model
The utility model aims to provide a boiler energy-saving device with a novel structure, which solves the problems that the boiler energy-saving device provided in the background art can not fully utilize heat emitted by smoke when in use, and part of heat can be dissipated in the process, so that the high efficiency and the energy saving of the boiler energy-saving device are not facilitated.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a novel structure boiler energy-saving appliance, includes the energy-saving appliance main part, two supporting shoes are installed to the below of energy-saving appliance main part inner wall, two the heat preservation room is installed jointly to the upper surface of supporting shoe, the mount table is installed to the below of heat preservation room inner wall, the top of mount table is provided with energy-saving component, the air inlet has been seted up on the right side surface of energy-saving appliance main part, the intake pipe is installed to the inner wall of air inlet, a plurality of gas outlets have been seted up on one side surface of intake pipe, the discharge port has been seted up to the top on energy-saving appliance main part right side surface, the discharge pipe is installed to the inner wall of discharge port, fresh air exchanger is installed to the other end of discharge pipe, the right side surface of energy-saving appliance main part is provided with control panel.
Preferably, the energy-saving assembly comprises a lower water tank, the outer wall of the lower water tank is fixed with the inner wall of the mounting table, a plurality of heat conduction copper pipes are mounted on the outer wall of the lower water tank, heat conduction fins are mounted on the outer wall of the heat conduction copper pipes, a water inlet pipe is mounted on the right side surface of the lower water tank, a group of adjacent heat conduction copper pipes are connected in a penetrating mode through connecting pipes above the pipe walls, a water outlet pipe is mounted on the outer wall of the heat conduction copper pipes, a heat preservation cavity is formed in the outer side of the heat preservation chamber, and a flow opening is formed in the left side surface of the heat preservation chamber.
Preferably, the lower surface of the fresh air exchanger is fixed with the upper surface of the energy-saving device main body, and one end of the water inlet pipe penetrates through the right side of the inner wall of the heat preservation chamber and extends to the outside.
Preferably, one end of the water outlet pipe penetrates through the upper part of the inner wall of the heat preservation chamber and extends to the outside of the heat preservation chamber.
Preferably, the outer walls of the plurality of heat conducting fins are coated with graphene paint.
Preferably, the heat collecting plates are arranged on two sides of the front side of the inner wall of the heat preservation chamber, the fixing blocks are arranged on two sides of the lower part of the inner wall of the heat preservation chamber, and the collecting grooves are formed in the upper surfaces of the two fixing blocks.
Preferably, the lower parts of the inner walls of the two collecting tanks are provided with water outlets, the inner walls of the two water outlets are provided with water pipes, and the pipe walls of the two water pipes are provided with drain valves.
The beneficial effects of the utility model are as follows:
The device is firstly with the inside of high-temperature steam through intake pipe and gas outlet transport to the heat preservation room to the realization heats the heat conduction copper pipe of inside, and the flue gas enters into the inside of heat preservation cavity and diffuses through flowing the mouth simultaneously, thereby realizes keeping warm the inside gas of heat preservation room, makes the inside high Wen Mofa that produces of heat preservation room quick-witted loss, and makes it can maintain for a longer time, has improved the heating effect to heat conduction copper pipe, has also improved the energy-conserving effect of boiler energy-saving appliance simultaneously.
According to the utility model, through the arrangement of the heat collecting plate, steam generated by the boiler can pass through the heat collecting plate and leave heat on the heat collecting plate, so that the heat collecting plate can conduct heat to the fin tubes, thereby further improving the effect of high efficiency and energy saving.
Drawings
FIG. 1 is a schematic diagram of a cross-sectional connection structure of an economizer main body 1, a supporting block 2, a heat preservation chamber 3 and a lower water tank 5 of a novel-structure boiler economizer;
FIG. 2 is a schematic diagram of a partial cross-sectional structure of a novel boiler economizer according to the present utility model;
FIG. 3 is a schematic perspective view of a novel boiler economizer;
Fig. 4 is an enlarged schematic view of the structure of fig. 2 a of the boiler economizer with the novel structure according to the present utility model.
In the figure: 1. an economizer main body; 2. a support block; 3. a heat preservation chamber; 4. a mounting table; 5. a lower water tank; 6. a heat conducting copper pipe; 7. a water inlet pipe; 8. a water outlet pipe; 9. a heat conduction fin; 10. a heat-preserving cavity; 11. an air inlet; 12. an air inlet pipe; 13. an air outlet; 14. a flow port; 15. a discharge port; 16. a discharge pipe; 17. fresh air exchanger; 18. a control panel; 19. a heat collecting plate; 20. a fixed block; 21. a collection tank; 22. a water outlet; 23. a water supply pipe; 24. a blow-down valve.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1 to 4, a novel structure boiler economizer comprises an economizer main body 1, two supporting blocks 2 are installed below the inner wall of the economizer main body 1, a heat preservation chamber 3 is installed on the upper surfaces of the two supporting blocks 2 together, a mounting table 4 is installed below the inner wall of the heat preservation chamber 3, an energy-saving component is arranged above the mounting table 4, an air inlet 11 is formed on the right side surface of the economizer main body 1, an air inlet pipe 12 is installed on the inner wall of the air inlet 11, a plurality of air outlets 13 are formed on one side surface of the air inlet pipe 12, an exhaust port 15 is formed on the upper side of the right side surface of the economizer main body 1, a discharge pipe 16 is installed on the inner wall of the exhaust port 15, a fresh air exchanger 17 is installed on the other end of the discharge pipe 16, a control panel 18 is arranged on the right side surface of the economizer main body 1, the energy-saving component comprises a lower water tank 5, the outer wall of the lower water tank 5 is fixed with the inner wall of the mounting table 4, the outer wall of the lower water tank 5 is provided with a plurality of heat conduction copper pipes 6, the outer walls of the plurality of heat conduction copper pipes 6 are provided with heat conduction fins 9, the right side surface of the lower water tank 5 is provided with a water inlet pipe 7, the upper parts of the pipe walls of the adjacent heat conduction copper pipes 6 are all connected in a penetrating way through connecting pipes, the outer wall of the left side heat conduction copper pipe 6 is provided with a water outlet pipe 8, the outer side of the heat preservation chamber 3 is provided with a heat preservation cavity 10, the left side surface of the heat preservation chamber 3 is provided with a flow opening 14, the inside of the heat preservation chamber 3 is conveyed by high-temperature hot air through an air inlet pipe 12 and an air outlet 13, thereby heating the inside heat conduction copper pipes 6, meanwhile, flue gas enters the inside of the heat preservation cavity 10 through the flow opening 14 and is diffused, thereby realizing heat preservation of the gas inside the heat preservation chamber 3, causing a high Wen Mofa generated inside the heat preservation chamber 3 to be scattered and to be maintained for a longer time, the heating effect of the heat conduction copper pipe 6 is improved, and the energy saving effect of the boiler energy economizer is also improved.
As shown in fig. 1, the lower surface of the fresh air exchanger 17 is fixed to the upper surface of the energy-saving device main body 1, one end of the water inlet pipe 7 extends to the outside through penetrating through the right side of the inner wall of the heat preservation chamber 3, one end of the water outlet pipe 8 extends to the outside through penetrating through the upper side of the inner wall of the heat preservation chamber 3, the outer walls of the plurality of heat conducting fins 9 are coated with graphene paint, the graphene paint is coated on the surfaces of the heat conducting fins 9 smoothly, and the graphene paint has strong heat conductivity, so that the heat conducting effect is stronger, the heating effect is better, and the heat utilization is more sufficient.
As shown in fig. 2 and 4, the heat collecting plates 19 are installed on two sides of the front side of the inner wall of the heat preservation chamber 3, so that steam generated by the boiler can pass through the heat collecting plates 19 and leave heat on the heat collecting plates 19, the heat collecting plates 19 can conduct heat to the finned tubes, thereby further improving the effect of high efficiency and energy saving, the fixing blocks 20 are installed on the front side and the rear side below the inner wall of the heat preservation chamber 3, the collecting grooves 21 are formed on the upper surfaces of the two fixing blocks 20, the water draining ports 22 are formed below the inner walls of the two collecting grooves 21, the water draining pipes 23 are installed on the inner walls of the two water draining ports 22, the drain valves 24 are installed on the pipe walls of the two water draining pipes 23, and when the steam is possibly generated, water can flow into the collecting grooves 21 through the outer walls of the heat collecting plates 19 for centralized collection, and when a certain amount of accumulated water is discharged through the drain pipes 23 and the drain valves 24, and the heat preservation chamber is convenient and practical.
The working principle of the utility model is as follows:
All electrical equipment of this device is all opened through external power supply, the device is at first carried the inside of intake pipe 12 with the gas of high temperature when using, and enter the inside of heat preservation room 3 through a plurality of gas outlets 13, simultaneously begin to carry water to the inside of lower water tank 5 through inlet tube 7, water is heated by the gas that has the high temperature through heat conduction copper pipe 6, when simultaneously using in succession, after the inside of whole heat preservation room 3 is full of to the high temperature, pour into the inside of heat preservation cavity 10 through flowing port 14, though the gas temperature after being heated slightly reduced, after the inside of whole heat preservation cavity 10 is full of, can play fine heat preservation effect to the inside temperature of heat preservation room 3 and heat preservation room 3, thereby reduce the dissipation of inside temperature, the temperature of inside temperature heating has been improved, the second water after the heating returns the boiler through outlet pipe 8, thereby the efficiency of boiler re-heating has been improved, simultaneously set up the rotational speed of the inside fan of fresh air exchanger 17 through control panel 18, make the inside of heat preservation cavity 10 more that remains, thereby the high efficiency of energy-saving device, carry the inside the heat preservation room 10 through the heat preservation room 16 and carry out the heat exchange with the inside of heat preservation room 16, the heat preservation room is more practical when the heat exchange is carried out to the inside after the heat preservation room 16, the heat preservation room is discharged.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (7)

1. The utility model provides a novel structure boiler energy-saving appliance, includes energy-saving appliance main part (1), its characterized in that: two supporting blocks (2) are installed to the below of energy-saving appliance main part (1) inner wall, two insulating chamber (3) are installed jointly to the upper surface of supporting block (2), mount table (4) are installed to the below of insulating chamber (3) inner wall, the top of mount table (4) is provided with energy-saving component, air inlet (11) have been seted up on the right side surface of energy-saving appliance main part (1), intake pipe (12) are installed to the inner wall of air inlet (11), a plurality of gas outlets (13) have been seted up on one side surface of intake pipe (12), discharge port (15) have been seted up to the top on energy-saving appliance main part (1) right side surface, discharge pipe (16) are installed to the inner wall of discharge port (15), fresh air exchanger (17) are installed to the other end of discharge pipe (16), the right side surface of energy-saving appliance main part (1) is provided with control panel (18).
2. The boiler economizer of a novel structure according to claim 1, wherein: the energy-saving assembly comprises a lower water tank (5), the outer wall of the lower water tank (5) is fixed with the inner wall of an installation table (4), a plurality of heat conduction copper pipes (6) are installed on the outer wall of the lower water tank (5), a plurality of heat conduction fins (9) are all installed on the outer wall of the heat conduction copper pipes (6), a water inlet pipe (7) is installed on the right side surface of the lower water tank (5), a group of adjacent heat conduction copper pipes (6) are all connected through connecting pipes in a penetrating mode above the pipe walls, a water outlet pipe (8) is installed on the outer wall of the heat conduction copper pipes (6), a heat preservation cavity (10) is formed in the outer side of the heat preservation chamber (3), and a flowing port (14) is formed in the left side surface of the heat preservation chamber (3).
3. A novel construction boiler economizer according to claim 2 wherein: the lower surface of the fresh air exchanger (17) is fixed with the upper surface of the energy-saving device main body (1), and one end of the water inlet pipe (7) penetrates through the right side of the inner wall of the heat preservation chamber (3) and extends to the outside.
4. A novel construction boiler economizer according to claim 2 wherein: one end of the water outlet pipe (8) penetrates through the upper part of the inner wall of the heat preservation chamber (3) and extends to the outside.
5. A novel construction boiler economizer according to claim 2 wherein: the outer walls of the plurality of heat conducting fins (9) are coated with graphene paint.
6. The boiler economizer of a novel structure according to claim 1, wherein: the solar heat insulation system is characterized in that heat collecting plates (19) are arranged on two sides of the front side of the inner wall of the heat insulation chamber (3), fixing blocks (20) are arranged on two sides of the lower part of the inner wall of the heat insulation chamber (3), and collecting grooves (21) are formed in the upper surfaces of the two fixing blocks (20).
7. The boiler economizer of a novel structure according to claim 6, wherein: a water outlet (22) is formed below the inner walls of the two collecting tanks (21), a water outlet pipe (23) is arranged on the inner walls of the two water outlet (22), and a drain valve (24) is arranged on the pipe walls of the two water outlet pipes (23).
CN202322686997.8U 2023-10-08 2023-10-08 Novel structure boiler energy-saving device Active CN220852113U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322686997.8U CN220852113U (en) 2023-10-08 2023-10-08 Novel structure boiler energy-saving device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322686997.8U CN220852113U (en) 2023-10-08 2023-10-08 Novel structure boiler energy-saving device

Publications (1)

Publication Number Publication Date
CN220852113U true CN220852113U (en) 2024-04-26

Family

ID=90785536

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322686997.8U Active CN220852113U (en) 2023-10-08 2023-10-08 Novel structure boiler energy-saving device

Country Status (1)

Country Link
CN (1) CN220852113U (en)

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