WO2019112210A1 - Chambre de combustion à cyclone haute-température - Google Patents

Chambre de combustion à cyclone haute-température Download PDF

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Publication number
WO2019112210A1
WO2019112210A1 PCT/KR2018/014424 KR2018014424W WO2019112210A1 WO 2019112210 A1 WO2019112210 A1 WO 2019112210A1 KR 2018014424 W KR2018014424 W KR 2018014424W WO 2019112210 A1 WO2019112210 A1 WO 2019112210A1
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WO
WIPO (PCT)
Prior art keywords
combustor
incineration
coupled
steam
outer cylinder
Prior art date
Application number
PCT/KR2018/014424
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English (en)
Korean (ko)
Inventor
채재우
박영수
Original Assignee
채재우
박영수
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 채재우, 박영수 filed Critical 채재우
Publication of WO2019112210A1 publication Critical patent/WO2019112210A1/fr

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/32Incineration of waste; Incinerator constructions; Details, accessories or control therefor the waste being subjected to a whirling movement, e.g. cyclonic incinerators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/44Details; Accessories
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/44Details; Accessories
    • F23G5/442Waste feed arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23LSUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
    • F23L3/00Arrangements of valves or dampers before the fire
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23LSUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
    • F23L5/00Blast-producing apparatus before the fire
    • F23L5/02Arrangements of fans or blowers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23LSUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
    • F23L7/00Supplying non-combustible liquids or gases, other than air, to the fire, e.g. oxygen, steam
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23LSUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
    • F23L7/00Supplying non-combustible liquids or gases, other than air, to the fire, e.g. oxygen, steam
    • F23L7/002Supplying water
    • F23L7/005Evaporated water; Steam
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G2203/00Furnace arrangements
    • F23G2203/30Cyclonic combustion furnace
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
    • Y02A50/2351Atmospheric particulate matter [PM], e.g. carbon smoke microparticles, smog, aerosol particles, dust

Definitions

  • the present invention relates to a high-temperature cyclone combustor, and more particularly, to a high-temperature cyclone combustor, which is applicable to general combustibles, medical wastes, food wastes, special wastes, combustible wastes such as industrial wastes, Temperature cyclone combustor in which various incineration objects and the like are automatically injected while completely burning in three stages.
  • incinerator or combustor only incineration objects defined by a predetermined incineration object and a special incinerator are incinerated.
  • these incinerators mainly use a large incinerator, thereby completely burning incineration objects such as medical wastes and animal carcasses It is difficult to incinerate, and even if incinerated, incineration of incomplete incinerator and air pollution and toxic gas emission are serious, so that installation of unit incinerator is avoided.
  • a large incinerator has problems in that it is not visually good in appearance, and is exposed to harmful and infectious germs and viruses, which are badly odorous if they are buried in a yard or a certain space in advance to incinerate the incineration object.
  • a conventional small-sized incinerator or a combustor has been developed and applied to incinerate an incineration object.
  • the incineration object can not be extinguished at a time, or incomplete combustion may cause air pollution and harmful gas It is exposed to the surroundings of the installation place and is discharged.
  • the incineration object is incinerated in a batch type, and thus it is inevitably accumulated in a field or a certain space, so that odor is generated or harmful germs or viruses are exposed to people.
  • Patent Document 1 Korean Patent Publication No. 10-1385303
  • Patent Document 2 Prior Art 2: Registered Utility Model No. 20-0374218
  • Patent Document 3 Prior Art 3: Utility Model Registration Bulletin 20-0299712
  • Patent Document 4 Korean Patent Registration No. 10-1041747
  • the present invention has been made in order to solve the above problems, and it is an object of the present invention to provide a high temperature cyclone combustor in which various incineration objects are automatically injected through three-stage combustion and incinerated by complete combustion to suppress air pollution and noxious gas, In particular, not only does incomplete combustion of various incineration objects be reduced while achieving complete combustion, but also steam is sprayed to reduce nitrogen oxide, which is a harmful exhaust gas generated by complete combustion and high temperature combustion, and various incineration objects are automatically and continuously To prevent odor removal and to prevent the spread of harmful germs and the like.
  • Another problem is to supply the optimum amount of combustion air by the damper and the angle adjusting means because the amount of combustion air required for burning and incineration is different according to the properties of various incineration objects.
  • Another object of the present invention is to reduce the cost by not forming a fireproof wall, which is a heat insulating material, for the incineration target supply unit provided for automatically and continuously injecting the incineration object.
  • the incinerator is incinerated irrespective of various characteristics of the object to be incinerated, it is another object to install the unit in a small area.
  • a combustor support coupled to the pedestal and the support
  • a combustor lower body coupled to the combustor receiving portion
  • An inner cylinder 202 and an outer cylinder 202 having an inlet formed at one side thereof; the outer cylinder 201 and the lower housing 209 connected to the support;
  • a pilot burner mounted on the other side through the inner cylinder 202 and the outer cylinder 201, a primary air supply fan 203 coupled to the upper portion of the outer cylinder 201, A combustor lower body formed with a damper 205 and angle adjusting means and connected to the connecting pipe 204;
  • a damper and an angle adjusting means 305 mounted between the second supply fan 303 and the connecting pipe 304.
  • the connecting pipe 304 is coupled to the lower portion of the outer cylinder 301, A combustor main body coupled to the combustor lower body and having a gap 308 formed between the top plate 307 and an upper portion of the inner cylinder 302;
  • a damper and an angle adjusting means 405 mounted between the third supply fan 403 and the connecting pipe 404 and the connecting pipe 404 are coupled to the upper portion of the outer cylinder 401, A ring shaped steam supply device connected to the steam supply line in the inner pipe 402, a gap 408 formed between the bottom of the outer pipe 401 and the lower portion of the inner pipe 402, A temperature rising burner mounted on the side surface of the bottom plate and inclined to the side surface of the bottom plate, a combustor upper body coupled with the combustor main body;
  • a connecting pipe 501 connected to the lower housing 209 of the lower body of the combustor, a re-housing 502 and a water supply unit, a re-take-out unit including a plate;
  • a hopper having an opening and closing door
  • An incinerator object supply unit coupled to a lower end of the hopper
  • a steam supply unit connected to the steam supply line at an upper end of the incineration object supply unit, a steam opening / closing door formed at a lower end of the steam supply unit, And
  • a steam curtain connected to the incineration object supply part and a steam supply line on the side of the lower body of the combustor,
  • an automatic incineration section transfer means for transferring the automatic injection section of the incineration object to the left and right.
  • the incineration object can be automatically and continuously introduced by adjusting the angle of the opening / closing door and the steam supply opening / closing door, and the first, second, and third supply fans and the connection pipes 204, 304,
  • Each of the dampers and the angle adjusting means 205, 305, and 405 can independently adjust the air pressure and the combustion air amount.
  • the damper of the first and second supply fans and the angle adjusting means 205 are adjusted so that the pressure of the primary combustion portion of the lower body of the combustor becomes larger than the pressure of the lower space 210 of the lower portion of the grate,
  • the ring-shaped steam supply device is constituted by a plurality of ring mechanisms, and the ring mechanism is configured such that steam is sprayed by a plurality of nozzles in the direction of the flame center of the inner cylinder 402 Lt; / RTI >
  • the high-temperature cyclone combustor according to the present invention having the above-described features suppresses air pollution and noxious gas by incinerating various incineration objects with complete combustion by means of a damper and its angle adjusting means in addition to the three-stage combustion, In addition to achieving complete combustion while reducing incomplete combustion of the object, steam is sprayed to reduce nitrogen oxide, which is a harmful exhaust gas generated by complete combustion or high temperature combustion, and various incineration objects are automatically and continuously introduced into the incinerator Odor removal and prevention of harmful germs and the like.
  • the incineration target supply unit provided for automatically and continuously introducing the incineration object does not form a refractory wall, which is an insulating material, there is an effect of reducing the cost.
  • incineration is performed irrespective of various properties of the incineration object. It is possible to install the unit in the unit area and to remove the ashes without incurring additional process after the incineration object is incinerated, thereby providing convenience to the user.
  • FIG. 1 is a cross-sectional view of a high temperature cyclone combustor according to the present invention.
  • FIG. 2 is a cross-sectional view of the air flow for combustion of a high temperature cyclone combustor according to the present invention.
  • 3A, 3B and 3C are cross-sectional views of primary, secondary and tertiary combustion chambers of a high temperature cyclone combustor according to the present invention.
  • the term used in the present invention is a general term that is widely used at present. However, in some cases, there is a term selected arbitrarily by the applicant. In this case, the term used in the present invention It is necessary to understand the meaning.
  • the high temperature cyclone combustor includes an automatic incineration object injection unit A for automatically and continuously injecting various incineration objects;
  • a primary combustion section (B) for initially igniting or firstly burning an incineration object;
  • a secondary combustion section (C) for combusting unburnt gas in the primary combustion section;
  • a tertiary combustion section (D) for burning unburned combustion gas in the secondary combustion section and lowering the temperature of the flame at the subsequent stage to reduce nitrogen oxides;
  • An exhaust unit for exhausting the combusted gas;
  • a re-take-out unit 500 for burning the object to be burned and then removing the ash.
  • An automatic incineration object injection unit (A) for automatically and continuously injecting various incineration objects includes a hopper (100) having a space capable of storing a certain amount of incineration object by injecting an incineration object, an incinerator An incinerator object supply portion 103 and a space portion 106 which are dried and passed through the incineration object before being injected into the secondary combustion portion B; An incinerating object supply unit 103 and an opening and closing door 101 capable of opening and closing the outlet of the hopper 100, a cylinder 102 capable of opening and closing the opening and closing door 101, and steam 110 to the space unit 106 A steam supply opening 104 for opening and closing the steam supply opening 104, a cylinder 109 for opening and closing the steam opening 105, a hopper 100, An automatic incineration section transfer device 108 capable of moving the automatic incineration object automatic injecting section A composed of the supply
  • the lower body 200 of the combustor forming the primary combustion section B includes an outer cylinder 201 having an inlet 212 and an inner cylinder 202 and an air supply fan 203 supplied to the primary combustion section, A damper mounted between the fan 203 and the connecting pipe 204 and its angle adjusting means 205, a grate 208, a pilot burner 206 which ignites an object to be incinerated at an early stage, a conical shape of a combustor lower body 200 A lower housing 209 and a lower space 210 between the combustor lower body 200 and the grate 208.
  • the combustor main body 300 forming the secondary combustion portion C includes an outer cylinder 301 and an inner cylinder 302 and a secondary air supply fan 303 supplied to the secondary combustion portion, And a gap 308 between the upper plate 307 and the inner cylinder 302 on the upper side of the combustor main body 300.
  • the damper 308 is mounted on the upper end of the connecting pipe 304,
  • the combustor body 400 forming the tertiary combustion section D includes an outer cylinder 401 and an inner cylinder 402 and a tertiary supply fan 403 supplied to the tertiary combustion section, A damper mounted between the connecting pipes 404 and its angle regulating means 405 and an upper plate 412 connected to the upper portion of the combustor upper body 400 and a temperature rising burner 407 capable of burning unburned gas generated in the secondary combustion chamber A bottom plate 413 coupled to the outer cylinder 401 and the combustion guide unit 309 and a gap 408 between the bottom plate 413 and the bottom of the inner cylinder 402.
  • the ring-shaped steam supply device 409 connected to the line 112 includes a plurality of nozzles 410 circumferentially arranged so that steam is sprayed toward the center of the flame in the ring-shaped steam supply device 409 , And the ring-shaped steam supply device is composed of a first and second ring mechanisms 414 and 415 including a plurality of nozzles.
  • the combustion air supplied to the primary air supply fan 203 is supplied to the lower portion of the combustor lower body 200 Flows in the direction of the lower space 210 of the lower housing 209 while flowing and holding in a strong cyclone form between the outer cylinder 201 and the inner cylinder 202 formed in the grate 208, And flows from the lower part to the upper part.
  • the combustion of the primary combustion unit B as described above can be performed by burning the combustion air supplied to the primary air supply fan 203 and the various incineration objects stacked in the grate 208 with the pilot burner 206 to generate a flame After the flame is generated, the pilot burner 206 is extinguished and the flame of the primary combustion portion B is supplied to the incineration object supply portion 103 via the incineration object, which is placed in the space portion 106, .
  • the secondary combustion section C is formed.
  • the air flows separately from the combustion air supplied from the air supply fan 203 of the primary combustion section and the combustion air supplied to the secondary combustion section flows through the inner and outer cylinders 301 and 302 in a strong cyclone manner And flows into the secondary combustion chamber 306 of the secondary combustion section C in a strong cyclone manner while flowing through the gap 308 in the upper direction of the inner cylinder 302 while keeping the secondary combustion chamber C and the secondary combustion chamber C, (306) to burn the unburned gas generated in the primary combustion section (B).
  • the tertiary combustion fan 403 which is supplied separately from the combustion air supplied from the secondary air supply fan 305, supplies unburned gas from the secondary combustion unit
  • a combustion gas guide portion 309 capable of guiding the combustion gas to the downstream side.
  • the combustion air supplied to the tertiary air supply fan 403 flows in the direction of the combustion gas guide portion 309 in a cyclone manner between the inner and outer cylinders 402 and 401, Flows into the combustion chamber 406 to completely burn the unburned combustion gas, and then exhausts the exhaust gas to the exhaust pipe 411.
  • the steam supply device supplied from the tertiary combustion unit is a ring-shaped steam supply device formed by a first and second ring mechanisms 414 and 415 having a plurality of nozzles 410 formed as shown in FIGS. 1 and 3C,
  • the temperature of the flame is lowered by injecting steam in the direction of the center of the flame at step 410 to reduce the nitrogen oxide.
  • the ash is burned in the primary combustion part, and ashes are removed from the re-blowing part 500 through the connection pipe 501 due to a difference in air pressure supplied between the primary air supply fan 203 and the secondary air supply fan 303,
  • a housing 502 capable of collecting and storing ash, a plate 503 for pushing out the collected material to the outside, and a housing 503 capable of supplying water such that ashes are not scattered to the housing 502,
  • a water supply device not indicated by a reference numeral.
  • connection pipes 204, 304, 404 combined with the first, second and third supply fans to be supplied to the first, second and third combustion chambers are arranged in such a manner that the air pressure and the combustion air amount Is adjusted by a damper and its angle adjusting means and is adjustable by the damper and its angle adjusting means (205) so that the ash can naturally fall freely by its pressure difference.
  • a connecting pipe 204 coupled to the upper portion of the outer cylinder 201 and the primary air supply fan is connected to the pedestal 213 and the support base 214.
  • the connecting pipe 204 is connected to the upper portion of the outer cylinder 201,
  • a pilot burner 206 is coupled to one side of the outer cylinder 201 and an inner cylinder 202.
  • the inner cylinder 202 is connected to the support base 214, Is coupled to the grate (208) and the support (214).
  • the combustor main body 300 is coupled to the combustor lower body 200.
  • the lower portion of the outer casing 301 of the combustor main body 300 is connected to the coupling pipe 304 of the secondary air supply fan 303,
  • the upper plate 307 including the guide portion 309 is engaged with the outer cylinder 301.
  • the combustor body 400 is coupled to the combustor body 300.
  • a coupling pipe 404 coupled to the third air supply fan 401 is coupled to the upper portion of the outer cylinder 401 of the combustor body 400,
  • the upper plate 412 including the exhaust pipe 411 is coupled to the upper portion of the outer cylinder 401 and the lower portion of the combustor upper body 400 is coupled to the lower plate 413 on which the temperature rising burner 407 is mounted.
  • the steam supply unit 409, the steam supply unit 104 and the steam curtain 107 are connected to the steam supply line 112.
  • the housing 209 of the combustor lower body 200 is connected to the re- And is connected to the pipe 501.
  • the combustion air is supplied to the primary, secondary, and tertiary combustion portions
  • the primary pilot burner is used to generate a flame on the object to be incinerated and to burn the primary and secondary combustion.
  • the temperature rising burner is operated to complete combustion in the tertiary combustion chamber.
  • the flame temperature is lowered to reduce nitrogen oxides. So that exhaust gas is discharged through the exhaust pipe 411.
  • Branch 112 Steam supply line
  • outer tube 202 inner tube 203: primary supply fan 204: connecting tube
  • damper and its angle adjusting means 206 pilot burner 207: primary combustion chamber
  • grate 209 lower housing 210: lower space 211: incineration object 212: inlet
  • damper and angle adjusting means 306 secondary combustion chamber 307: top plate
  • damper and its angle adjusting means 406 tertiary combustion chamber 407: temperature rising burner 408:
  • Ring shaped steam supply device 410 Nozzle 411: Exhaust pipe 412: Top plate
  • base plate 414 one-stage ring mechanism 415: two-stage ring mechanism
  • the present invention relates to a method and apparatus for burning incineration objects by completely burning the object to be incinerated through three-stage combustion, thereby suppressing air pollution and noxious gases.
  • the present invention not only realizes complete combustion while reducing incomplete combustion of an object to be incinerated.
  • the object to be incinerated which is provided for reducing odor and preventing the spread of harmful germs by automatically and continuously introducing the object to be incinerated into the incinerator, and for automatically and continuously introducing the object to be incinerated, It is possible to easily remove the ashes without incurring additional process after incineration of the incineration object while reducing the cost by not forming the refractory wall which is a heat insulating material, To general incinerators and combustors. It is an invention that is industrially applicable because it has enough marketability and business possibility in the applicable market, and it is practically possible to carry out clearly.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Environmental & Geological Engineering (AREA)
  • Incineration Of Waste (AREA)

Abstract

La présente invention incinère complètement des objets d'incinération par le biais d'une combustion à trois étages par l'introduction automatique et continue des objets d'incinération, ce qui permet de supprimer la pollution de l'air et les gaz nocifs. En particulier, la présente invention non seulement réalise une combustion complète tout en réduisant la combustion incomplète des objets d'incinération, mais réduit également l'oxyde d'azote, qui est un gaz d'échappement nocif produit par la combustion haute- température, par pulvérisation de vapeur. De plus, la présente invention introduit automatiquement et en continu les objets d'incinération dans un incinérateur pour éliminer ainsi l'odeur et empêcher la propagation de germes nuisibles, etc. Étant donné que l'unité d'alimentation en objets d'incinération prévue pour introduire automatiquement et en continu les objets d'incinération ne forme pas de paroi réfractaire servant de matériau isolant, il est possible d'éliminer facilement les cendres sans traitement supplémentaire après incinération de l'objet d'incinération tout en réduisant les coûts, ce qui permet d'offrir du confort à un utilisateur. La présente invention comprend : une partie de support de chambre de combustion dans laquelle un socle est relié à des supports; un corps inférieur de chambre de combustion relié à la partie de support de chambre de combustion, le corps inférieur de chambre de combustion comprenant un cylindre intérieur (202) et un cylindre extérieur (201) qui comportent une entrée formée au niveau d'un côté d'eux-ci, le cylindre extérieur (201) et un logement conique qui sont reliés aux supports, les supports et une grille accouplés au cylindre intérieur (202), et un brûleur pilote monté sur l'autre côté à travers le cylindre intérieur (202) et le cylindre extérieur (201), et un tuyau de raccordement (204) équipé d'un ventilateur d'alimentation en air primaire et d'un registre (205) accouplés à une partie supérieure du cylindre extérieur (201); un corps principal de chambre de combustion accouplé au corps inférieur de chambre de combustion avec un espace (308) formé entre une plaque supérieure (307) et une partie supérieure du cylindre intérieur (302), le corps principal de chambre de combustion comprenant un registre (305) monté entre un ventilateur d'alimentation en air secondaire et un tuyau de raccordement (304), le tuyau de raccordement (304) étant accouplé à la partie inférieure du cylindre extérieur (301), et une partie de guidage de gaz de combustion accouplée à la plaque supérieure (307) sur le cylindre extérieur (301); un corps supérieur de chambre de combustion accouplé au corps principal de chambre de combustion, le corps supérieur de chambre de combustion comprenant un registre (405) monté entre un troisième ventilateur d'alimentation en air et le tuyau de raccordement (404), le tuyau de raccordement (404) étant accouplé à une partie supérieure du cylindre extérieur (401), un tuyau d'échappement raccordé à une plaque supérieure (412) sur le cylindre extérieur (401), un dispositif d'alimentation en vapeur en forme d'anneau raccordé à une conduite d'alimentation en vapeur dans un cylindre intérieur (402), et un brûleur à hausse de température monté selon un angle sur une plaque de fond accouplée à une partie inférieure d'un cylindre extérieur (401) avec un espace (408) formé entre la plaque de fond et une partie inférieure du cylindre intérieur (402); une partie de sortie de cendres comprenant un tuyau de raccordement (501) raccordé au logement du corps inférieur de chambre de combustion, un logement de cendres (502), un dispositif d'alimentation en eau et une plaque; une partie d'alimentation en objets d'incinération raccordée à une partie inférieure d'une trémie ayant une porte d'ouverture/fermeture, la partie d'alimentation en objets d'incinération comprenant une partie d'alimentation en vapeur raccordée à la conduite d'alimentation en vapeur au niveau d'une extrémité supérieure de la partie d'alimentation en objets d'incinération, et une porte d'ouverture/fermeture pour vapeur formée au niveau d'une extrémité inférieure de la partie d'alimentation en vapeur; et un moyen pour transférer une partie d'alimentation en objets d'incinération automatique capable de déplacer, vers la droite et vers la gauche, la partie d'alimentation en objets d'incinération, un rideau de vapeur raccordé à la conduite d'alimentation en vapeur sur le côté du corps inférieur de chambre de combustion, et une partie d'alimentation en objets d'incinération automatique.
PCT/KR2018/014424 2017-12-06 2018-11-22 Chambre de combustion à cyclone haute-température WO2019112210A1 (fr)

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KR1020170166296A KR101916128B1 (ko) 2017-12-06 2017-12-06 고온 싸이클론 연소기
KR10-2017-0166296 2017-12-06

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