CN214275837U - High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel - Google Patents

High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel Download PDF

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Publication number
CN214275837U
CN214275837U CN202120387638.0U CN202120387638U CN214275837U CN 214275837 U CN214275837 U CN 214275837U CN 202120387638 U CN202120387638 U CN 202120387638U CN 214275837 U CN214275837 U CN 214275837U
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furnace body
liquid fuel
furnace
gasification
layer
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王兴光
王莹
黄和格
王祥
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Guizhou Yijiaxin Environmental Protection And Energy Saving Technology Co ltd
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Guizhou Yijiaxin Environmental Protection And Energy Saving Technology Co ltd
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Abstract

The utility model relates to a biological liquid fuel technical field discloses a high-efficient environmental protection and energy saving combustion furnace structure for biological liquid fuel, the induction cooker comprises a cooker bod, be provided with furnace on the furnace body, the four corners of furnace body below all is provided with the landing leg, the inside of furnace body is provided with the gasification layer, the outside on gasification layer is provided with the zone of heating, one side of furnace body is provided with the inlet, the one end of inlet is run through the furnace body and is connected with the gasification layer, one side of gasification layer top all is provided with the intake pipe. The utility model discloses a be provided with the intake pipe, the bottom of intake pipe is provided with the gas receiver, be convenient for store the gas that the in situ bio-liquid fuel of gasification changes in the gas receiver through the intake pipe, the top of gas receiver sets up combustor and burner nozzle, the furnace body of being convenient for can be with the liquid fuel gathering and the voltage-sharing air feed of gasification when using, gaseous use more fully and smoothly, can provide the gas in succession, the intensity of a fire can the homodisperse, more abundant of burning.

Description

High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel
Technical Field
The utility model relates to the technical field of biological liquid fuel, in particular to a high-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel.
Background
At present, most of combustion furnaces use diesel oil, coal or wood chips as energy sources, the heat energy use efficiency is low and is only 20-30%, a large amount of smoke and dust can be generated, serious environmental pollution is caused, and the manufacturing cost is relatively high.
At present, most of the existing biological liquid fuels are directly combusted and atomized combusted, so that the combustion efficiency is low, the fuels are wasted, the fire is not uniform enough when the biological liquid fuels are used, the combustion is insufficient, and the phenomenon of gas cut-off is easy to occur. Therefore, those skilled in the art have provided an efficient, environmentally friendly and energy-saving combustion furnace structure for bio-liquid fuel to solve the problems set forth in the background art described above.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high-efficient environmental protection and energy saving burning furnace structure for biological liquid fuel to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides a high-efficient environmental protection and energy saving burning furnace structure for biological liquid fuel, includes the furnace body, be provided with furnace on the furnace body, the four corners of furnace body below all is provided with the landing leg, the inside of furnace body is provided with the gasification layer, the outside on gasification layer is provided with the zone of heating, one side of furnace body is provided with the inlet, the one end of inlet runs through furnace body and gasification layer and connects, one side of gasification layer top all is provided with the intake pipe, the bottom of intake pipe all is provided with the gas receiver, the both ends of gas receiver top all are provided with the outlet duct, be provided with the combustor on the outlet duct, be provided with a plurality of burning nozzle on the combustor, the top that the inside both sides of furnace body are close to the gasification layer all is provided with the support, the support is connected with furnace's bottom.
As a further aspect of the present invention: the liquid inlet is provided with a valve.
As a further aspect of the present invention: and a heat insulation layer is arranged between the inner side of the furnace body and the heating layer.
As a further aspect of the present invention: and a heat transfer layer is arranged at the bottom end of the hearth.
As a further aspect of the present invention: and the air inlet pipes are provided with electromagnetic valves.
As a further aspect of the present invention: the rear side of the furnace body is provided with a heat release port.
Compared with the prior art, the beneficial effects of the utility model are that:
1. through the inside gasification layer that sets up at the furnace body, the outside on gasification layer sets up the zone of heating, be convenient for continuously heat the inside biological liquid fuel in gasification layer, make liquid fuel gasify, avoid directly burning biological liquid fuel and atomizing burning, make combustion efficiency ratio lower, extravagant fuel, set up the insulating layer that keeps warm between zone of heating and the furnace body simultaneously, be convenient for keep warm to the heat that the zone of heating produced, thermal loss has been avoided, thereby reach energy-efficient effect, set up the inlet through the one side at the furnace body, set up the valve on the inlet, be convenient for through valve control liquid fuel's flow size, thereby can control the size of firepower in the furnace body, high durability and convenient use, energy conservation and environmental protection, excellent in application effect, the staff of being more convenient for uses.
2. Through all being provided with the intake pipe in one side of gasification layer top, the bottom of intake pipe is provided with the gas receiver, be convenient for store the gas of gasification in situ biological liquid fuel conversion in the gas receiver through the intake pipe, the top of gas receiver sets up combustor and burning nozzle, the furnace body of being convenient for when using, can be with the liquid fuel gathering and the pressure-equalizing air feed of gasification, gaseous use is more abundant and smooth and easy, can provide the gas in succession, the intensity of a fire can the homodisperse, the more abundant of burning, the heating effect is good, energy is saved, time saving, avoid in use to produce gaseous gas outage, the uneven phenomenon of intensity of a fire distribution, influence the use of firing burning furnace.
Drawings
FIG. 1 is a schematic structural diagram of a high-efficiency environment-friendly energy-saving combustion furnace for biological liquid fuel;
FIG. 2 is a sectional front view of a high-efficiency environment-friendly energy-saving combustion furnace for biological liquid fuel;
fig. 3 is a side view of a high-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel.
In the figure: 1. a furnace body; 2. a support leg; 3. a hearth; 4. a liquid inlet; 5. a valve; 6. a support; 7. a heat transfer layer; 8. a heat insulation layer; 9. a heating layer; 10. a gasification layer; 11. an air inlet pipe; 12. an electromagnetic valve; 13. an air outlet pipe; 14. a burner; 15. a combustion nozzle; 16. an air storage chamber; 17. a heat release port.
Detailed Description
Referring to fig. 1-3, in an embodiment of the present invention, a high-efficiency, environment-friendly and energy-saving combustion furnace structure for bio-liquid fuel includes a furnace body 1, a furnace chamber 3 is disposed on the furnace body 1, supporting legs 2 are disposed at four corners of the lower portion of the furnace body 1 for supporting the furnace body 1, a gasification layer 10 is disposed inside the furnace body 1 for continuously heating the bio-liquid fuel inside the gasification layer 10 to gasify the liquid fuel, thereby avoiding direct combustion and atomization combustion of the bio-liquid fuel, resulting in low combustion efficiency and fuel waste, a heating layer 9 is disposed outside the gasification layer 10, a liquid inlet 4 is disposed at one side of the furnace body 1, one end of the liquid inlet 4 penetrates through the furnace body 1 and is connected to the gasification layer 10, an air inlet pipe 11 is disposed at one side above the gasification layer 10, an air storage chamber 16 is disposed at the bottom end of the air inlet pipe 11 for storing gas converted from the bio-liquid fuel in the gasification layer 10 in the air storage chamber 16 through the air inlet pipe 11, the both ends of 16 tops of gas reservoirs all are provided with outlet duct 13, be provided with combustor 14 on the outlet duct 13, be provided with a plurality of burning nozzle 15 on the combustor 14, be convenient for furnace body 1 when using, can be with the gathering of gasified liquid fuel and voltage-sharing air feed, gaseous more abundant and smooth and easy to use, can provide the gas in succession, the intensity of a fire can the homodisperse, more abundant of burning, heating effect is good, the energy saving, save time, avoid producing gaseous disconnected gas in use, the uneven phenomenon of intensity of a fire distribution, influence the use of burning furnace, also overcome simultaneously and had to burn the insufficient of burning furnace to liquid fuel, the thermal efficiency is low, the polluted environment, the problem of the energy of waste, the both sides of furnace body 1 inside are close to the top of gasification layer 10 and all are provided with support 6, support 6 is connected with the bottom of furnace 3, be convenient for supporting furnace 3.
In fig. 1 and 2: be provided with valve 5 on the inlet 4, be convenient for through the flow size of valve 5 control liquid fuel to can control the size of firepower in the furnace body 1, make the burning can be more abundant, overcome existing combustion furnace to the liquid fuel burning insufficient, the thermal efficiency is low, the polluted environment, the problem of extravagant energy, convenience simple to use, energy-concerving and environment-protective, application effect is good, the staff of being more convenient for uses.
In fig. 2: be provided with thermal insulation layer 8 between the inboard of furnace body 1 and zone of heating 9, be convenient for keep warm to the heat that zone of heating 9 produced, avoid making combustion efficiency ratio lower, extravagant fuel causes the problem of thermal loss to can reach energy-efficient effect, use environmental protection more, the application effect is good, the staff of being more convenient for uses.
In fig. 2: the bottom of furnace 3 is provided with heat transfer layer 7, is convenient for carry out the heat conduction for furnace 3 through heat transfer layer 7 can be quick with the gas of 15 outputs of burner nozzle, and heating effect is good, fast, and the energy saving, save time, the staff of being more convenient for uses.
In fig. 2: the air inlet pipes 11 are provided with electromagnetic valves 12, so that the electromagnetic valves 12 can be conveniently used for controlling the on-off of the gas converted from the biological liquid fuel in the gasification layer 10, and the gas can be closed in time when the furnace body 1 is not used, thereby ensuring the service life of the furnace body 1.
In fig. 3: the rear side of furnace body 1 is provided with heat release 17, is convenient for release heat to furnace body 1 and ventilate, and furnace body 1's safe in utilization, convenience simple to use, energy-concerving and environment-protective, the application is effectual, the staff of being more convenient for uses.
The utility model discloses a theory of operation is: when the device is used, the gasification layer 10 is arranged in the furnace body 1, the heating layer 9 is arranged outside the gasification layer 10, so that the biological liquid fuel in the gasification layer 10 can be continuously heated, the liquid fuel can be gasified, the direct combustion and atomization combustion of the biological liquid fuel can be avoided, the combustion efficiency is lower, the fuel is wasted, meanwhile, the heat insulation layer 8 is arranged between the heating layer 9 and the furnace body 1, the heat generated by the heating layer 9 can be conveniently insulated, the loss of heat can be avoided, the high-efficiency and energy-saving effects can be achieved, the liquid inlet 4 is arranged at one side of the furnace body 1, the valve 5 is arranged on the liquid inlet 4, the flow of the liquid fuel can be conveniently controlled through the valve 5, the fire power in the furnace body 1 can be controlled, the device is simple and convenient to use, energy conservation and environmental protection, the application effect is good, the device is more convenient for workers to use, the air, the bottom of intake pipe 11 is provided with gas receiver 16, be convenient for store the gaseous of biological liquid fuel conversion in gasification layer 10 in gas receiver 16 through intake pipe 11, gas receiver 16's top sets up combustor 14 and burner nozzle 15, be convenient for furnace body 1 when using, can be with the liquid fuel gathering and the pressure-equalizing air feed of gasification, gaseous use is more abundant and smooth and easy, can provide the gas in succession, the intensity of a fire can the homodisperse, the more abundant of burning, the heating effect is good, energy saving, save time, avoid in use to produce gaseous gas outage, the uneven phenomenon of intensity of a fire distribution, influence the use of firing burning furnace.
The above-mentioned, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. The high-efficiency environment-friendly energy-saving combustion furnace structure for the biological liquid fuel comprises a furnace body (1) and is characterized in that a hearth (3) is arranged on the furnace body (1), supporting legs (2) are arranged at four corners below the furnace body (1), a gasification layer (10) is arranged inside the furnace body (1), a heating layer (9) is arranged outside the gasification layer (10), a liquid inlet (4) is arranged at one side of the furnace body (1), one end of the liquid inlet (4) penetrates through the furnace body (1) and is connected with the gasification layer (10), an air inlet pipe (11) is arranged at one side above the gasification layer (10), air storage chambers (16) are arranged at the bottom ends of the air inlet pipe (11), air outlet pipes (13) are arranged at two ends above the air storage chambers (16), a combustor (14) is arranged on the air outlet pipes (13), and a plurality of combustion nozzles (15) are arranged on the combustor (14), the gasification furnace is characterized in that supports (6) are arranged above two sides inside the furnace body (1) close to the gasification layer (10), and the supports (6) are connected with the bottom end of the hearth (3).
2. The furnace structure of claim 1, wherein the liquid inlet (4) is provided with a valve (5).
3. The high-efficiency environment-friendly energy-saving combustion furnace structure for the biological liquid fuel as claimed in claim 1, characterized in that a heat preservation and insulation layer (8) is arranged between the inner side of the furnace body (1) and the heating layer (9).
4. An environment-friendly and energy-saving efficient combustion furnace structure for biological liquid fuel as claimed in claim 1, characterized in that the bottom end of the hearth (3) is provided with a heat transfer layer (7).
5. The furnace structure of claim 1, wherein the air inlet pipes (11) are provided with electromagnetic valves (12).
6. The furnace structure of high-efficiency environmental-friendly energy-saving combustion furnace for biological liquid fuel according to claim 1, characterized in that the rear side of the furnace body (1) is provided with a heat discharging port (17).
CN202120387638.0U 2021-02-22 2021-02-22 High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel Active CN214275837U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120387638.0U CN214275837U (en) 2021-02-22 2021-02-22 High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120387638.0U CN214275837U (en) 2021-02-22 2021-02-22 High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel

Publications (1)

Publication Number Publication Date
CN214275837U true CN214275837U (en) 2021-09-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120387638.0U Active CN214275837U (en) 2021-02-22 2021-02-22 High-efficiency environment-friendly energy-saving combustion furnace structure for biological liquid fuel

Country Status (1)

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CN (1) CN214275837U (en)

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