CN217654097U - High-efficient low energy consumption type gas hanging stove - Google Patents
High-efficient low energy consumption type gas hanging stove Download PDFInfo
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- CN217654097U CN217654097U CN202221271088.7U CN202221271088U CN217654097U CN 217654097 U CN217654097 U CN 217654097U CN 202221271088 U CN202221271088 U CN 202221271088U CN 217654097 U CN217654097 U CN 217654097U
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Abstract
The utility model discloses a high-efficient low energy consumption type gas hanging stove, including hanging stove box body, the upper end in the hanging stove box body is provided with the combustion chamber, and the upper end in the combustion chamber is provided with the heat exchanger, and the bottom of combustion chamber is provided with the fire row, corresponding in the combustion chamber the position of heat exchanger top is provided with and keeps off the flow board, keep off and be provided with the gas passing hole on the flow board, still be provided with the heat accumulator on the inner wall of combustion chamber. The utility model discloses a set up in the combustion chamber and keep off and flow the board and set up the heat accumulator on the inner wall of combustion chamber, can carry out the separation to the steam in the combustion chamber through keeping off and flowing the board, thereby slow down the flow of steam, reduce the outer thermal loss of arranging of gas, and the setting of heat accumulator can carry out heat accumulation work in the combustion chamber, like this when exhaust causes the temperature to descend, the temperature in the combustion chamber can not too low be guaranteed to the heat accumulator, thereby burn less natural gas alright with reaching preset temperature, greatly reduced the consumption of the energy.
Description
Technical Field
The utility model relates to a hanging stove technical field especially relates to a high-efficient low energy consumption type gas hanging stove.
Background
The gas hanging stove is a water heater using natural gas as energy, it has powerful central heating function, can satisfy the industry workshop, the heating demand of various occasions such as office area, and can also supply with daily hot water and use, at present, common hanging stove in the market is at the during operation, through the burning to the natural gas, make the temperature in the combustion chamber rise, thereby heat the water, and the combustion chamber is heating the during operation, need use the fan to arrange outside its steam, and the quick outer row of steam is arranged, can cause thermal loss greatly, thereby make the inside temperature of combustion chamber descend, and rise required temperature once more, then need consume the natural gas, this has increased the consumption of the energy undoubtedly.
SUMMERY OF THE UTILITY MODEL
The utility model aims to avoid the weak point of prior art, provide a high-efficient low energy consumption type gas hanging stove to effectively solve the weak point that exists among the prior art.
In order to achieve the above purpose, the utility model adopts the technical proposal that: the utility model provides a high-efficient low energy consumption type gas hanging stove, includes the hanging stove box, the bottom of hanging stove box has set gradually gas joint, water connectors, heating return water joint and heating water supply from a left side to the right side and connects, and the upper end in the hanging stove box is provided with the combustion chamber, and the upper end in the combustion chamber is provided with the heat exchanger, and the bottom of combustion chamber is provided with the fire row, the gas joint pass through the gas pipe with the fire row is connected, water connectors reaches water connectors respectively through inlet tube and outlet pipe with the left end intercommunication of heat exchanger, heating return water connects and the heating water supply connects the right-hand member intercommunication through wet return and delivery pipe and heat exchanger respectively, and the top of hanging stove box is provided with the gas vent, correspond in the combustion chamber the position of heat exchanger top is provided with the fender stream board, be provided with the gas pocket on the fender stream board, still be provided with the heat accumulator on the inner wall of combustion chamber.
Further, the heat accumulator is a honeycomb ceramic plate, and the honeycomb ceramic plate is fixedly assembled on the inner wall of the combustion chamber.
Furthermore, be provided with a plurality of fixed pins on the inner wall of combustion chamber, be provided with on the heat accumulator with the perforation of fixed pin looks adaptation, the tip of fixed pin is provided with fixes the round pin cap on the inner wall of combustion chamber with the heat accumulator.
Furthermore, the one end that the round pin cap is connected with the fixed pin is provided with the screwed joint, the tip of fixed pin be provided with the screw thread blind hole of screwed joint looks adaptation.
Furthermore, fireproof asbestos is arranged between the inner wall of the combustion chamber and the heat accumulator.
Furthermore, the cross section of the flow baffle is wavy, the flow baffle is sealed at the upper end of the heat exchanger, and the air passing holes are uniformly distributed on the inclined plate surface and the protrusions of the flow baffle.
Further, a circulating water pump is arranged in the wall-mounted boiler box body, and the water return pipe and the water supply pipe are connected with the circulating water pump.
Further, be provided with the proportional valve in the hanging stove box body, the gas pipe with the proportional valve is connected.
Further, the top of combustion chamber is provided with the fan, the fan will the combustion chamber with the gas vent intercommunication.
Further, be provided with the baffle in the hanging stove box, the baffle will the combustion chamber is separated in the top of hanging stove box.
The above technical scheme of the utility model following beneficial effect has: the utility model discloses a set up in the combustion chamber and keep off and flow the board and set up the heat accumulator on the inner wall of combustion chamber, can carry out the separation to the steam in the combustion chamber through keeping off and flowing the board, thereby slow down the flow of steam, reduce the loss of gaseous outer heat of arranging, and the setting of heat accumulator, can carry out heat accumulation work in the combustion chamber, like this when the exhaust causes the temperature to descend, the heat accumulator can guarantee that the temperature in the combustion chamber can not be too low, thereby burn less natural gas alright with reach and predetermine the temperature, greatly reduced the consumption of the energy.
Drawings
Fig. 1 is a schematic plan view of the embodiment of the present invention;
FIG. 2 is a schematic sectional view of a heat accumulator according to an embodiment of the present invention;
fig. 3 is a schematic top plan view of a flow baffle according to an embodiment of the present invention.
Detailed Description
In order to make the above objects, features and advantages of the present invention more clearly understood, the following detailed description of the present invention is made in conjunction with the accompanying drawings and the detailed description, it is to be noted that the features of the embodiments and examples of the present invention may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the scope of the present invention is not limited by the specific embodiments disclosed below.
As shown in fig. 1-3, the wall-mounted gas stove with high efficiency and low energy consumption in the present embodiment includes a wall-mounted stove box 1, a gas joint 2, a water outlet joint 3, a water inlet joint 4, a heating water return joint 5 and a heating water supply joint 6 are sequentially disposed from left to right on the bottom of the wall-mounted stove box 1, a combustion chamber 7 is disposed at the upper end in the wall-mounted stove box 1, a heat exchanger 8 is disposed at the upper end in the combustion chamber 7, a fire grate 9 is disposed at the bottom of the combustion chamber 7, the gas joint 2 is connected to the fire grate 9 through a gas pipe 22, the water outlet joint 3 and the water inlet joint 4 are respectively communicated with the left end of the heat exchanger 8 through a water inlet pipe 10 and a water outlet pipe 11, the heating water return joint 5 and the heating water supply joint 6 are respectively communicated with the right end of the heat exchanger 8 through a water return pipe 12 and a water supply pipe 13, an exhaust port 14 is disposed at the top of the wall-mounted stove box 1, a heat baffle plate 15 is disposed at a position corresponding to the upper side of the heat exchanger 8 in the combustion chamber 7, an air hole 15 is disposed on the heat baffle 15, and a heat accumulator 16 is further disposed on the inner wall of the combustion chamber 7.
The heat accumulator 16 is a honeycomb ceramic plate fixedly assembled on the inner wall of the combustion chamber 7.
The inner wall of the combustion chamber 7 is provided with a plurality of fixing pins 17, the heat accumulator 16 is provided with through holes matched with the fixing pins 17, and the end part of each fixing pin 17 is provided with a pin cap 18 for fixing the heat accumulator 16 on the inner wall of the combustion chamber 7.
One end of the pin cap 18 connected with the fixing pin 17 is provided with a threaded joint 18a, and the end part of the fixing pin 17 is provided with a threaded blind hole matched with the threaded joint 18 a.
After fixing the heat accumulator 16 on the inner wall of combustion chamber 7, when the burning of fire bank 9 heats in the combustion chamber 7, heat accumulator 16 can absorb the heat and accumulate the heat, when combustion chamber 7 outwards discharges fume, the heat can run off, but the temperature in the combustion chamber 7 can not descend too fast in the existence of heat accumulator 16 can be guaranteed, like this, when the fire bank 9 is worked once more, can consume less energy and reach predetermined temperature, thereby reduce the consumption of the energy.
Fireproof asbestos is arranged between the inner wall of the combustion chamber 7 and the heat accumulator 16.
The cross section of the flow baffle 15 is wavy, the flow baffle 15 is sealed at the upper end of the heat exchanger 8, and the air holes 15a are uniformly distributed on the inclined plate surface and the bulge of the flow baffle 15.
The flow baffle 15 can effectively separate hot air in the combustion chamber 7, so that the temperature in the combustion chamber 7 is ensured, and when smoke is discharged outwards, the loss of heat is effectively reduced, thereby saving the energy consumption.
A circulating water pump 18 is arranged in the wall-mounted boiler box body 1, the water return pipe 12 and the water supply pipe 13 are both connected with the circulating water pump 18, and the circulating water pump 18 is used for circulating the heat supply water.
A proportional valve 19 is arranged in the wall-mounted furnace box body 1, a gas pipe 22 is connected with the proportional valve 19, and the proportional valve 19 is used for controlling the size of flame on the fire grate 9.
The top of the combustion chamber 7 is provided with a fan 20, and the fan 20 communicates the combustion chamber 7 with the exhaust port 14.
Be provided with baffle 21 in the hanging stove box 1, baffle 21 separates combustion chamber 7 in the top of hanging stove box 1, and baffle 21 can effectively insulate against heat, prevents that the heat stream from scurrying and causing the influence to circulating water pump 8 and proportional valve 19, also can be better preserves the heat to supply heat for the circulating water.
The utility model discloses a theory of operation does: open the valve of inlet tube 10 and delivery pipe 13 for the circulating water enters into in the heat exchanger 8, then opens fire row 9, and the flame of burning can heat combustion chamber 7 on the fire row, thereby makes the hot water rising in the heat exchanger 8, and the water heating intensifies the back, and the circulating water that is used for the heat supply is through the circulation of delivery pipe 13 with wet return 12, carries out heating work in to the building, and through the cooperation of inlet tube 10 with outlet pipe 11, can guarantee that people use hot water.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to practitioners skilled in this art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.
Claims (10)
1. The utility model provides a high-efficient low energy consumption type gas hanging stove, includes the hanging stove box body, the bottom of hanging stove box body has set gradually gas joint, water connectors, heating return water joint and heating water supply from a left side to the right side and has connected, and the upper end in the hanging stove box body is provided with the combustion chamber, and the upper end in the combustion chamber is provided with the heat exchanger, and the bottom of combustion chamber is provided with the fire and arranges, the gas joint pass through the gas pipe with the fire is arranged and is connected, the water connectors that go out reach the water connectors respectively through inlet tube and outlet pipe with the left end intercommunication of heat exchanger, the heating return water joint reaches the heating water supply connects the right-hand member intercommunication through return water pipe and delivery pipe and heat exchanger respectively, and the top of hanging stove box body is provided with gas vent, its characterized in that: the combustion chamber is internally provided with a flow baffle at a position corresponding to the upper part of the heat exchanger, the flow baffle is provided with an air hole, and the inner wall of the combustion chamber is also provided with a heat accumulator.
2. The efficient low-energy-consumption wall-mounted gas boiler as claimed in claim 1, wherein the boiler is characterized in that: the heat accumulator is a honeycomb ceramic plate, and the honeycomb ceramic plate is fixedly assembled on the inner wall of the combustion chamber.
3. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 2, characterized in that: the inner wall of the combustion chamber is provided with a plurality of fixing pins, the heat accumulator is provided with through holes matched with the fixing pins, and the end parts of the fixing pins are provided with pin caps for fixing the heat accumulator on the inner wall of the combustion chamber.
4. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 3, characterized in that: the one end that the round pin cap is connected with the fixed pin is provided with the screwed joint, the tip of fixed pin be provided with the screw thread blind hole of screwed joint looks adaptation.
5. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 4, characterized in that: fireproof asbestos is arranged between the inner wall of the combustion chamber and the heat accumulator.
6. The efficient low-energy-consumption wall-mounted gas boiler as claimed in claim 1, wherein the boiler is characterized in that: the cross section of the flow baffle is wavy, the flow baffle is sealed at the upper end of the heat exchanger, and the air passing holes are uniformly distributed on the inclined plate surface and the protrusions of the flow baffle.
7. The efficient low-energy-consumption wall-mounted gas boiler as claimed in claim 1, wherein the boiler is characterized in that: and a circulating water pump is arranged in the wall-mounted furnace tank body, and the water return pipe and the water supply pipe are connected with the circulating water pump.
8. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 1, characterized in that: a proportional valve is arranged in the wall-mounted furnace box body, and the fuel gas pipe is connected with the proportional valve.
9. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 1, characterized in that: the top of combustion chamber is provided with the fan, the fan will the combustion chamber with the gas vent intercommunication.
10. The high-efficiency low-energy consumption type gas wall-mounted boiler according to claim 1, characterized in that: the wall-mounted boiler comprises a wall-mounted boiler body, and is characterized in that a partition plate is arranged in the wall-mounted boiler body and divides a combustion chamber above the wall-mounted boiler body.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221271088.7U CN217654097U (en) | 2022-05-25 | 2022-05-25 | High-efficient low energy consumption type gas hanging stove |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221271088.7U CN217654097U (en) | 2022-05-25 | 2022-05-25 | High-efficient low energy consumption type gas hanging stove |
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CN217654097U true CN217654097U (en) | 2022-10-25 |
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Family Applications (1)
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CN202221271088.7U Active CN217654097U (en) | 2022-05-25 | 2022-05-25 | High-efficient low energy consumption type gas hanging stove |
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2022
- 2022-05-25 CN CN202221271088.7U patent/CN217654097U/en active Active
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