CN201513882U - Controllable eddy wide coal micro-oil ignition burner - Google Patents

Controllable eddy wide coal micro-oil ignition burner Download PDF

Info

Publication number
CN201513882U
CN201513882U CN2009201987301U CN200920198730U CN201513882U CN 201513882 U CN201513882 U CN 201513882U CN 2009201987301 U CN2009201987301 U CN 2009201987301U CN 200920198730 U CN200920198730 U CN 200920198730U CN 201513882 U CN201513882 U CN 201513882U
Authority
CN
China
Prior art keywords
pulverized coal
combustor
coal powder
coal
oil
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN2009201987301U
Other languages
Chinese (zh)
Inventor
闫志勇
吴阿塞
海洋
孙笑茹
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Jiliang University
Original Assignee
China Jiliang University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Jiliang University filed Critical China Jiliang University
Priority to CN2009201987301U priority Critical patent/CN201513882U/en
Application granted granted Critical
Publication of CN201513882U publication Critical patent/CN201513882U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Abstract

The utility model discloses a controllable eddy wide coal micro-oil ignition burner, which is characterized in that a primary air pipeline is communicated with a secondary coal powder combustor by a coal powder concentrator; a primary coal powder combustor is arranged in the secondary coal powder combustor; the secondary coal powder combustor extends into a tertiary coal powder combustor; and a plurality of secondary air inlets are arranged at equal distance on the side surface of the tertiary coal powder combustor connected with the secondary coal powder combustor. One end of the central air pipe of a controllable eddy bluff body is provided with a cavity cone; the central air pipe penetrates through the primary air pipeline, the coal powder concentrator and the primary coal powder combustor; the cavity cone extends out of the end surface of the primary coal powder combustor; a plurality of circular holes are evenly arranged on the circumference of the bottom of the cavity cone; and a plurality of oil combustors are arranged on the primary coal powder combustor after obliquely passing through the secondary coal powder combustor at equal distance. The retention time of the powder coal in the combustors is prolonged and the ignition stability is improved by adopting the controllable eddy bluff body. The ignition burner not only can be used as the ignition burner but also can be used as a main burner and a low-load stable combustion burner.

Description

A kind of coal type less oil ignition burner capable of controlling vortex width
Technical field
The utility model relates to a kind of coal burner, especially relates to a kind of coal type less oil ignition burner capable of controlling vortex width.
Background technology
The conventional method of heat power station boiler startup and low-load combustion-stabilizing is to adopt big oil gun to throw oily radiator, combustion-supporting mode.According to type of furnace difference, the boiler cold-state startup needs to drop into fuel oil 50~200T throw the coal dust on-load from lighting a fire to during.And adopt the tiny-oil ignition combustion supporting technology, according to the principle that energy amplifies step by step, available high energy oil gun is directly lighted a small amount of coal dust, lights more coal dust then step by step; Thereby can realize ignition of the boiler with the oil of trace when realizing the startup of boiler black furnace, and stablize boiler combustion with the oil of trace when blowing out, underload and ultra-low load steady combustion, according to the difference of coal, oil-saving effect generally can reach 60~98%.At present, China has obtained considerable achievement in the tiny-oil ignition technical field, has accumulated rich experience.Chinese patent ZL03255982.8, ZL200520145352.2 etc. have announced several multi-form little oil burners, and these burners are in the strong point that all has aspect realization tiny-oil ignition and the low-load combustion-stabilizing separately; But this class burner has generally all adopted the mode of single-sided arrangement oil gun, and therefore the heating to coal dust is the single face heating; This just causes heat time heating time long, requires the longer dimension of whole coal burner.This is difficult to accomplish for considerable power plant, because for the power plant that has put into operation, the position (i.e. the flange position of the flange position in an airduct road and pulverized coal combustor) of placing whole coal burner is fixing, and the higher limit of promptly whole coal burner length is fixed.So when the actual Len req of whole coal burner surpasses higher limit, will cause the reduction of burner outlet coal dust burn-off rate; This just greatly reduces the stability of igniting, even cause can't normal ignition.ZL200710156019.5 adopts the heavy wool rifle to arrange and has solved the problem of single face heating, but its adaptability to coal still has limitation, lacks adjustability.
Summary of the invention
The purpose of this utility model is to provide a kind of coal type less oil ignition burner capable of controlling vortex width, and it can significantly improve combustion stability, and has the micro-oil ignition coal powder combusting device of good fuel tolerance.
In order to solve the problems of the technologies described above, the technical solution adopted in the utility model is:
The utility model comprises that cross section is an airduct road, pulverized coal concentrator, one-level pulverized coal combustor, secondary pulverized coal combustor and three grades of pulverized coal combustors that an end of circle and axis coinciding has elbow; One section in airduct road caves in and the pulverized coal concentrator that forms the tapered pipeline of throat is communicated with the secondary pulverized coal combustor, it is indoor that the one-level pulverized coal combustor is installed in the secondary coal dust firing, the secondary pulverized coal combustor stretches at three grades of coal dust firings indoor, and three grades of pulverized coal combustor side five equilibriums that are connected with the secondary pulverized coal combustor have a plurality of secondary wind inlets.Controlled whirlpool bluff body is a central air hose, one end of central air hose is the cavity cone, it is indoor that central air hose is applied in airduct road, pulverized coal concentrator and an one-level coal dust firing, the cavity cone of central air hose stretches out outside one-level pulverized coal combustor end face, have a plurality of circular holes uniformly on the circumference of cavity cone bottom, the oblique five equilibrium of a plurality of oil combustion chambers is installed on the one-level pulverized coal combustor after passing the secondary pulverized coal combustor.
Circularhole diameter on the circumference of described cone bottom is 1~2mm.
Described oil combustion chamber is three, angle between per two oil combustion chamber axis is 120 °, each oil combustion chamber outlet axis and one-level coal dust firing chamber internal surface meet at a bit, crossing the normal of this point and the angle between oil combustion chamber outlet axis is 6~12 °, concrete numerical value will be decided according to the pulverized coal combustor diameter, and three oil combustion chamber outlet axis are tangential on an indoor imaginary circle of coal dust firing.
The beneficial effect that the utlity model has is:
Adopt three oil gun arranged tangential, at the feasible one-tenth one rotation torch of one-level coal dust firing chamber interior, this torch can carry out strong turbulent matter, heat exchange with breeze airflow, heats coal dust rapidly, and can to a certain degree prolong the time of staying of coal dust; Though bluff body size in controlled whirlpool is certain, but can be by adjusting the air quantity of central air hose, the circular cone build air curtain size that bluff body is outwards sprayed changes, objectively be equivalent to be provided with the bluff body of adjustable size, therefore, can control the high temperature recirculation zone size that the one-level combustor exit forms, like this, just can adjust the air quantity in the central air hose, reach the effect that adapts to coal dust firing according to coal-fired volatile matter size.
In addition, the existence of controlled whirlpool bluff body has further prolonged the time of staying of coal dust in burner, improves combustion stability.The micro-oil ignition coal powder combusting device that the utility model provides not only can be used as start-up burner, but also can be used as the burner of main burner and low-load combustion-stabilizing.
Description of drawings
Fig. 1 is the sectional structure schematic diagram of micro-oil ignition coal powder combusting device of the present utility model.
Fig. 2 is that schematic diagram is looked on the right side of Fig. 1.
Fig. 3 is the vertical profile structural representation of controlled whirlpool bluff body.
Fig. 4 is the A-A partial sectional view of Fig. 3.
Among the figure: 1, airduct road, 2, pulverized coal concentrator, 3, oil combustion chamber, 4, the one-level pulverized coal combustor, 5, controlled whirlpool bluff body, 6, the secondary pulverized coal combustor, 7, three grades of pulverized coal combustors, 5.1, central air hose, 5.2, the cavity cone, 5.3, circular hole, 7.1, the secondary wind inlet.
The specific embodiment
Below in conjunction with drawings and Examples the utility model is further described.
As shown in Figure 1 and Figure 2, the utility model comprises that cross section is an airduct road, pulverized coal concentrator 2, one-level pulverized coal combustor 4, secondary pulverized coal combustor 6 and three grades of pulverized coal combustors 7 that an end of circle and axis coinciding has elbow; Airduct road 1 is communicated with secondary pulverized coal combustor 6 through one section pulverized coal concentrator 2 that caves in and form the tapered pipeline of throat, one-level pulverized coal combustor 4 is installed in the secondary pulverized coal combustor 6, secondary pulverized coal combustor 6 stretches in three grades of pulverized coal combustors 7, and three grades of pulverized coal combustors, the 7 side five equilibriums that are connected with secondary pulverized coal combustor 6 have a plurality of circles or square secondary wind inlet 7.1.Controlled whirlpool bluff body 5 is a central air hose 5.1, one end of central air hose 5.1 is a cavity cone 5.2, central air hose 5.1 is applied in airduct road 1 one time, in pulverized coal concentrator 2 and the one-level pulverized coal combustor 4, the cavity cone 5.2 of central air hose 5.1 stretches out outside one-level pulverized coal combustor 4 end faces, on cavity cone 5.2 bottom circumference, have a plurality of circular holes 5.3 uniformly, after passing secondary pulverized coal combustor 6, a plurality of oil combustion chamber 3 oblique five equilibriums are installed on the one-level pulverized coal combustor 4, central air hose is connected with pressure-air or industrial oxygen source, gas can spray into the combustion chamber from the micropore of bluff body, form the air curtain of a cone shape.
As shown in Figure 3, Figure 4, circular hole 5.3 diameters on the described cone 5.2 bottom circumference are generally 1~2mm, and pitch of holes can be 5~10mm.
As shown in Figure 2, described oil combustion chamber 3 is three, angle between per two oil combustion chamber axis is 120 °, each oil combustion chamber outlet axis and one-level pulverized coal combustor 4 inner surfaces meet at a bit, crossing the normal of this point and the angle between oil combustion chamber outlet axis is 6~12 °, concrete numerical value will be decided according to the pulverized coal combustor diameter, and three oil combustion chamber outlet axis are tangential on an indoor imaginary circle of coal dust firing.
Situation is as follows during micro-oil ignition coal powder combusting device real work of the present utility model:
A wind carries coal dust and enters wind passage 1 one time, and when by pulverized coal concentrator 2, breeze airflow is concentrated.According to principle of inertia, when the flow area sudden enlargement of breeze airflow, the thick coal culm air-flow will keep inertia and the concentrated one-level pulverized coal combustor 4 that enters, and circumferential weld entered secondary pulverized coal combustor 6 in the middle of the thin powdered coal air-flow then can deflect and pass the firsts and seconds pulverized coal combustor.From the oily flame of oil combustion chamber 3 ejection will the breeze airflow outside form one directly be washed into around torch the thick coal culm air-flow around, forms violent mass transfer, diabatic process, make the coal dust fire burns that heating up rapidly also; High-temperature product enters secondary pulverized coal combustor 6 after passing controlled whirlpool bluff body, heats and lights residue breeze airflow in the secondary pulverized coal combustor 6.Through bluff body the time, because the flow-disturbing effect of bluff body will make high-temperature flue gas and the deflection of unburned breeze airflow generation umbrella, its effect has three: one, the contact heat transfer process of enhancing and peripheral thin powdered coal air-flow, and reinforcement is caught fire; The 2nd, prolong the time of staying of coal dust in secondary pulverized coal combustor 6, promote the process of catching fire; The 3rd, form a stable high temperature recirculation zone at the bluff body rear portion, thereby improve the combustion stability of breeze airflow.The angle of the umbrella deflection that air-flow produces can be adjusted by the gas flow in the increase and decrease central air hose, as to the less anthracite that is difficult to catch fire of volatile matter, can strengthen the gas flow in the central air hose, thereby entrainment more high-temperature flue gas to form bigger vortex, thereby and make stronger hybrid perturbation and strengthen ignition process.Because the content of air only accounted for 20%~40% of total blast volume during one time general mood flowed, and in the thick coal culm, AIR Proportional is littler, so the indoor further burning that might hinder fuel owing to anoxic of one-level coal dust firing, and this part eddy current wind then can partly remedy this deficiency.Resultant product after the burning of secondary pulverized coal combustor enters three grades of pulverized coal combustors 7 and mixes back further burning, after-flame with the secondary wind that enters by secondary wind inlet 7.1, and final high-temperature flue gas sprays into burner hearth by three grades of pulverized coal combustor outlets.
At last, it is also to be noted that what more than enumerate only is a specific embodiment of the present utility model.Obviously, the utility model is not limited to above embodiment, and many distortion can also be arranged.All distortion that those of ordinary skill in the art can directly derive or associate from the disclosed content of the utility model all should be thought protection domain of the present utility model.

Claims (3)

1. coal type less oil ignition burner capable of controlling vortex width comprises that cross section is an airduct road (1), pulverized coal concentrator (2), one-level pulverized coal combustor (4), secondary pulverized coal combustor (6) and the three grades of pulverized coal combustors (7) that an end of circle and axis coinciding has elbow; An airduct road (1) is communicated with secondary pulverized coal combustor (6) through one section pulverized coal concentrator (2) that caves in and form the tapered pipeline of throat, one-level pulverized coal combustor (4) is installed in the secondary pulverized coal combustor (6), secondary pulverized coal combustor (6) stretches in three grades of pulverized coal combustors (7), and three grades of pulverized coal combustors (7) side five equilibrium that is connected with secondary pulverized coal combustor (6) has a plurality of secondary wind inlets (7.1); It is characterized in that: controlled whirlpool bluff body (5) is a central air hose (5.1), one end of central air hose (5.1) is cavity cone (5.2), central air hose (5.1) is applied in an airduct road (1), in pulverized coal concentrator (2) and the one-level pulverized coal combustor (4), the cavity cone (5.2) of central air hose (5.1) stretches out outside one-level pulverized coal combustor (4) end face, have a plurality of circular holes (5.3) uniformly on the circumference of cavity cone (5.2) bottom, the oblique five equilibrium of a plurality of oil combustion chambers (3) is installed on the one-level pulverized coal combustor (4) after passing secondary pulverized coal combustor (6).
2. a kind of coal type less oil ignition burner capable of controlling vortex width according to claim 1 is characterized in that: circular hole (5.3) diameter on the circumference of described cone (5.2) bottom is 1~2mm.
3. a kind of coal type less oil ignition burner capable of controlling vortex width according to claim 1, it is characterized in that: described oil combustion chamber (3) is three, angle between per two oil combustion chamber axis is 120 °, each oil combustion chamber outlet axis and one-level pulverized coal combustor (4) inner surface meet at a bit, crossing the normal of this point and the angle between oil combustion chamber outlet axis is 6~12 °, concrete numerical value will be decided according to the pulverized coal combustor diameter, and three oil combustion chamber outlet axis are tangential on an indoor imaginary circle of coal dust firing.
CN2009201987301U 2009-10-22 2009-10-22 Controllable eddy wide coal micro-oil ignition burner Expired - Lifetime CN201513882U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201987301U CN201513882U (en) 2009-10-22 2009-10-22 Controllable eddy wide coal micro-oil ignition burner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009201987301U CN201513882U (en) 2009-10-22 2009-10-22 Controllable eddy wide coal micro-oil ignition burner

Publications (1)

Publication Number Publication Date
CN201513882U true CN201513882U (en) 2010-06-23

Family

ID=42485294

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009201987301U Expired - Lifetime CN201513882U (en) 2009-10-22 2009-10-22 Controllable eddy wide coal micro-oil ignition burner

Country Status (1)

Country Link
CN (1) CN201513882U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102563636A (en) * 2012-02-27 2012-07-11 中国计量学院 Controllable vortex flame spreader cone
CN103988019A (en) * 2011-11-25 2014-08-13 Fl史密斯公司 Cyclone burner with conical combustion chamber

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103988019A (en) * 2011-11-25 2014-08-13 Fl史密斯公司 Cyclone burner with conical combustion chamber
CN102563636A (en) * 2012-02-27 2012-07-11 中国计量学院 Controllable vortex flame spreader cone

Similar Documents

Publication Publication Date Title
CN101696802B (en) Coal type less oil ignition burner capable of controlling vortex width
CN205592954U (en) One -level gas injection type low NOx burner
CN101725969B (en) Low-NOx pulverized coal burner
CN102537951B (en) Central diffusion type tiny-oil ignition combustor
CN101644431A (en) Self-stabilizing three-stage air-distribution low-NOx pulverized coal burner
CN102679337B (en) Cyclone combustor with adjustable flame shape and mixing strength
CN102418922B (en) Oxygen-enriched ignition and low-load stable combustion coal combustor
WO2015103831A1 (en) Fuel/gas-saving ignition and stable-combustion low-nitrogen swirling pulverized coal combustor
CN201475997U (en) Coal dust burner with self-stabilizing capability, three-stage air-distribution and low NOx content
CN201606876U (en) Low-NOx coal burner
CN201513882U (en) Controllable eddy wide coal micro-oil ignition burner
CN206145669U (en) Swirling flow pulverized coal burner
CN106439801B (en) A kind of reverse spray type bluff body vortex burner
CN202303364U (en) Novel pulverized coal combustor by adopting oxygen enrichment ignition and underload stable combustion
CN204987008U (en) Bispin STREAMING low heat value gas combustion ware
CN202501618U (en) Hot blast stove device
CN201496958U (en) W-flame cyclone separation low-oil ignition burner
CN100585276C (en) Side direction multilevel open type igniting center powder feeding vortex combustor of small oil mass gasification combustion
CN210601622U (en) Adjustable staged ignition burner suitable for gas fuel
CN210801184U (en) High-pressure-drop multistage strong-turbulence low-NOx emission gas burner
CN100532936C (en) Multiple oil gun rounding arrangement micro-oil ignition coal power combusting device
CN202546752U (en) Central diffusion type micro oil ignition burner
CN201507924U (en) Micro-oil ignition burner for combined double-sided ignition blunt body
CN201885214U (en) Temperature-concentrating combustion furnace self-preheated oxygen-enriched combustion system with oxygen-enriching nozzles
CN102261649A (en) Temperature-gathering type combustion furnace self-preheating oxygen enriched burner with oxygen enriched nozzle

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20100623

Effective date of abandoning: 20091022