EP2985527B1 - Pellet burner - Google Patents
Pellet burner Download PDFInfo
- Publication number
- EP2985527B1 EP2985527B1 EP15460041.5A EP15460041A EP2985527B1 EP 2985527 B1 EP2985527 B1 EP 2985527B1 EP 15460041 A EP15460041 A EP 15460041A EP 2985527 B1 EP2985527 B1 EP 2985527B1
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- European Patent Office
- Prior art keywords
- combustion chamber
- burner
- air
- pellets
- rotary combustion
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- 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.)
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23B—METHODS OR APPARATUS FOR COMBUSTION USING ONLY SOLID FUEL
- F23B30/00—Combustion apparatus with driven means for agitating the burning fuel; Combustion apparatus with driven means for advancing the burning fuel through the combustion chamber
- F23B30/02—Combustion apparatus with driven means for agitating the burning fuel; Combustion apparatus with driven means for advancing the burning fuel through the combustion chamber with movable, e.g. vibratable, fuel-supporting surfaces; with fuel-supporting surfaces that have movable parts
- F23B30/04—Combustion apparatus with driven means for agitating the burning fuel; Combustion apparatus with driven means for advancing the burning fuel through the combustion chamber with movable, e.g. vibratable, fuel-supporting surfaces; with fuel-supporting surfaces that have movable parts with fuel-supporting surfaces that are rotatable around a horizontal or inclined axis and support the fuel on their inside, e.g. cylindrical grates
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING 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
- F23L1/00—Passages or apertures for delivering primary air for combustion
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING 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
- F23L13/00—Construction of valves or dampers for controlling air supply or draught
- F23L13/08—Construction of valves or dampers for controlling air supply or draught operating as a roller blind; operating as a venetian blind
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING 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
- F23L3/00—Arrangements of valves or dampers before the fire
Definitions
- the subject of the invention is a burner designed for burning pellets and agropellets which can be applied both in households and other buildings - starting on hotels, pizza restaurants, bakeries, communal facilities such as, for instance, hospitals, nursery schools, high schools, banks, cinemas, malls, to ⁇ greenhouses, poly-tunnels, grain and crop dryers and store or production rooms.
- wood biomass sawdust, wood shavings, bark of deciduous tree wood with a low resin content, and from the agricultural production waste, so called agropellets, especially coming from the process waste, such as stones, husk, cereal, stems and hay of green biomass.
- Both pellets and agropellets are made in granular form, shaped in balls or, more often, in cylinder of 6 ⁇ 25 mm in diameter, and of up to several centimetres length.
- Pellets are completely ecological, produced entirely from natural materials, with no additives i.e. without any adhesive substances, bound by natural organic compounds only, i.e. lignins present in cellular structures of plant.
- the pellets are a kind of briquette and have excellent energetic values - their calorific value is same as the one for wood (the pellets caloric value fluctuates in a range from 4,8 to 5 kWh/kg or 18 to 20 MJ/kg), and they are characterised by low humidity values (4,3 ⁇ 10%). Furthermore the specific pellet's feature is a lack of the noxious gas emissions during combustion processes (smoke coming out chimney smells like burnt wood), and a small amount of ash left after burning (up to 1%), which additionally can be used as an excellent ecological fertilizer. For that reason this kind of fuel is called as "green coal” or "green energy”. As a matter of fact, agropellets have energetic properties slightly worse (their caloric values fluctuate in a range from about 15 to 18 MJ/kg, and the amount of ash left after burning is of 5%), but they are cheaper fuel.
- Pellets and agropellets are prized for their high comfort of use, and therefore they are successfully applied as a very effective fuel for the individual boilers of central heating systems, stones, fireplaces, and other heating devices designed for heating buildings and rooms, and equipped with a container for pellets, a dosing device for pellets and a feeder.
- the burners designed for burning pellets made of heat-resistant, acid-resistant, and stainless materials, are mounted in the doors of any heating boilers, the oil-, gas-, or solid fuel ones.
- pellet burner which is an automatic device having a fire grate with a built-in heating element which starts the burner operation.
- a screw feeder supplies a small amount of the fuel in order to activate the burner.
- This burner is equipped with an electronic control module.
- This module having analyzed a signal coming from a photocell built in the burner body, starts a process of dosing air to ignite a portion of pellets placed on the burner's fire grate. Having fired up the first portion of pellets and having reanalyzed the photocell signal, the control module starts precise dosing a fuel and air mixture in order to get a continuous process of degassing fuel.
- the automatics of the burner maintains the optimal composition of the fuel and air mixture by analyzing the photocell signals and controlling pressure values in the combustion chamber.
- a burner known from the Polish application description P. 400056 (A1 ), for gasifying and burning biomass, especially the wood pellet one, by using wood distillation gas formed while burning wood.
- FIG. 1 which is characterized by having a cylindrical housing of the burner (1), inside of which a gasifying fire grate (2) is coaxially situated.
- a space inside a gasifying grate (2) forms a burn-and-glow chamber used for conversion of biomass, especially wood pellets, into wood distillation gas.
- the gasifying grate (2) is bell-shaped, directed its upper part down forming a bottom (5) of the burner, in which the lower holes (6) are symmetrically located.
- the open part of the aeration pillar (7) is fixed on the burner's bottom and the upper part of the pillar is closed.
- the burner housing (1) in its lower part is formed by an air-cleaner chamber (8) to which from bottom an air duct (13) and an aeration duct (12) are connected.
- the air-cleaner chamber (8) at the bottom is ended by an ash chamber (9).
- the burner according to this solution enables a gasification process of wood pellets to be performed, that is the wood pellets conversion into a gaseous state in order to produce heat energy is possible.
- This burner is designed for central heating stoves, water boilers, and coal stoves with a fixed grate inside of which it can be mounted as an insert.
- a burner for the central heating boiler as show in the drawing Pos. 2a and Pos. 2b having a grate and a housing which has a feeder's outlet hole and a fan situated in its lower part.
- the grate is comprised of a semi-cylindrical shaped surface forming a basin which is extended in front by a flat surface element placed below it.
- the burner comprises a main body (1) and a combustion chamber (2), in which there is a flow of hot combustion gases moving basically along the (F) direction. Inside the combustion chamber (2) there is a grate (3) bent back in relation to the (F) direction of flow of combustion gases and having a concave cross section. There are some inflating nozzles (16) located on the grate's surface for blowing up air throughout holes (17) situated on their side surfaces.
- Means of providing air include at least: one hole for primary air adapted for supplying air to said nozzles (16) throughout a duct (9) below the grate (3); the primary air holes above the lower part of the grate (3) and at least one secondary air duct (12) for blowing-in air in a basically axial zone of the combustion chamber (2).
- WO 2008/141594 disclosed a burner designed for burning solid fuels, biomass, mainly wooden pellets, vegetable materials and grain, featuring a rotary combustion chamber (1) surrounded by a cylindrical fixed housing, permanently attached to the burner body, creating a ring-shaped duct (2) supplying air to the combustion chamber through holes and/or nozzles located on its circumference.
- patent description no. US 3822651 disclosed a rotary water-cooled kiln for waste disposal, primarily intended for burning wood waste.
- the rotary combustion chamber of the kiln has a cylindrical shape comprised of a plurality of water pipes (14) joined by perforated strips (57) in such a way so as to create a cylindrical surface (15) with numerous openings through which air is supplied into the chamber.
- annular collar (60) mounted on the chamber, sectioned by radial walls (61) into six chambers.
- Each of the chambers has an opening with a pivoted panel (62).
- crank arms (64) and a cam (63) the panels (62) selectively open and obstruct the access of air to the chambers.
- the kiln is enclosed in a chamber (58) fed by a blower (59).
- the annular collar (60) rotates along with the combustion chamber (15).
- the aim of the invention is to develop a mechanism of the combustion chamber aeration in a burner designed for pellets and agropellets burning that enables the burner to obtain even higher effectivity of using pellets-like renewable fuels by means of a continuous adjustment of the amount of air supplied to the combustion chamber that affects the economics of the combustion parameters.
- the pellet burner which is the subject of the invention, concerns a burner comprising a steel body in a form of a fixed housing with an inlet hole for pellets and a rotary combustion chamber surrounded with a cylindrical, fixed cover permanently connected with the body, wherein the space between the combustion chamber and the cover forms a ring-shaped duct supplying air to the combustion chamber through inlet holes and/or inflating nozzles placed on each side wall of the rotary combustion chamber, said burner further comprising an aeration mechanism.
- the aeration mechanism has a series of longitudinal obstructing strips, swingably mounted on the outer surface of each side wall of the combustion chamber, such strips selectively opening and obscuring the air inlet holes, said obstructing strips being placed in twos on the outer surface of each side placed in each wall of the combustion chamber, wherein the air supplied into the rotary combustion chamber is controlled with a control ring having an inner surface functioning as a cam operating on said obstructing strips for selectively opening and obscuring said air inlet holes and/or inflating nozzles.
- the combustion chamber has the shape of a prism or truncated pyramid with a regular polygonal base or has the shape of a prism with a regular dodecagon, and in the most advantageous solution the combustion chamber has the shape of a truncated pyramid with a regular dodecagon base.
- the inner surface of the control ring has a shape of arcs of two radius which are connected with each other by short, straight segments.
- Fig. 1 is a side view of the pellet burner
- Fig. 2 is a cross section of the pellets burner along plane II-II of Fig. 1
- Fig. 3 is a perspective view of the pellets burner without a combustion chamber cover
- Fig. 4 is a side view of the combustion chamber without its cover
- Fig. 5 is a longitudinal section in plane V-V of Fig. 4
- Fig. 6 is a cross section of the burner combustion chamber in plane VI-VI of Fig. 4
- Fig. 7 is a schematic diagram for opening and closure phases of the inlet holes at the rotation of the combustion chamber by 360°
- Fig. 8 is a schematic diagram for opening phase
- Fig. 9 is a schematic diagram for the closure phase of the inlet holes of air.
- the aeration mechanism of the combustion chamber according to the exemplary embodiment has been applied in the pellet burner comprising a steel body 1, being a fixed housing with an inlet hole 2 for pellets and a rotary combustion chamber 3 surrounded by a cylindrical, fixed cover 4 permanently connected with a body 1, in addition, a space between the combustion chamber 3 and the cover 4 is a ring-shaped duct 5 supplying air to the combustion chamber 3 throughout inlet holes 6 placed on its circumference.
- a rotary combustion chamber 3, having a form a truncated pyramid a base of which is a regular dodecagon, has 24 longitudinal diaphragms 7 arranged in a form of shutters, placed in twos on either side wall 10 of the combustion chamber 3 .
- the diaphragms 7 are swingably mounted on the outer surface of the combustion chamber 3 and obscure the inlet holes of air 6 cooperating with a fixed control ring 8 situated perpendicularly to the longitudinal axis of the chamber 3 around its rear part, in addition the inner surface 9 of the control ring 8 has a shape of arcs of two radius R and r , which are connected with each other by short, straight segments and functions as a cam pressing the diaphragms to the combustion chamber 3 surface or releasing them (thereby supplying the air or cutting off its inflow) in accordance with a sequence of four preset phases, as follows:
- the future modifications may concern especially a shape of the combustion chamber 3 , and a shape of the diaphragms 7 , and mainly the angular values of the individual phases of the diaphragms control.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Solid-Fuel Combustion (AREA)
- Pressure-Spray And Ultrasonic-Wave- Spray Burners (AREA)
Description
- The subject of the invention is a burner designed for burning pellets and agropellets which can be applied both in households and other buildings - starting on hotels, pizza restaurants, bakeries, communal facilities such as, for instance, hospitals, nursery schools, high schools, banks, cinemas, malls, to ÷greenhouses, poly-tunnels, grain and crop dryers and store or production rooms.
- Smaller and smaller reserves of gaseous, liquid and solid fuels in the world, the environmental pollution caused by fossil fuels, the noxious carbon dioxide emissions, and, in addition, a continuous clear increase in the prices of those fuels, from many years contribute to an increase in interest in cheaper, alternative, and renewable sources of energy.
In addition to the use of wind power, solar radiation or hydroenergetics, the most often used source of renewable fuels are biomass, mainly of plant origin (so called fitomass), and also biomass of animal origin (so called zoomass) and even biomass of the microorganism origin (plankton, for instance) as well.
In all design solutions known up to now, there were some efforts taken for eliminating the use of conventional fuels towards the renewable ones, thereby supporting the actions towards the environmental protection, the elimination of the carbon dioxide emissions including, and making use of the after-production waste, coming from the wood industry or agricultural production.
There are known the heating stoves for burning biomass, especially the ones with a hearth for burning straw formed into bales, and the burners for burning biomass in a form of pellets. Pellets (pellet - ball, tablet, granule, pill, in English) are becoming more and more popular, renewable, ecological, solid fuels in granular form created by the high press machines from the after-production wood waste, i.e. wood biomass: sawdust, wood shavings, bark of deciduous tree wood with a low resin content, and from the agricultural production waste, so called agropellets, especially coming from the process waste, such as stones, husk, cereal, stems and hay of green biomass. Both pellets and agropellets are made in granular form, shaped in balls or, more often, in cylinder of 6 ÷ 25 mm in diameter, and of up to several centimetres length. Pellets are completely ecological, produced entirely from natural materials, with no additives i.e. without any adhesive substances, bound by natural organic compounds only, i.e. lignins present in cellular structures of plant. The pellets are a kind of briquette and have excellent energetic values - their calorific value is same as the one for wood (the pellets caloric value fluctuates in a range from 4,8 to 5 kWh/kg or 18 to 20 MJ/kg), and they are characterised by low humidity values (4,3 ÷ 10%). Furthermore the specific pellet's feature is a lack of the noxious gas emissions during combustion processes (smoke coming out chimney smells like burnt wood), and a small amount of ash left after burning (up to 1%), which additionally can be used as an excellent ecological fertilizer. For that reason this kind of fuel is called as "green coal" or "green energy". As a matter of fact, agropellets have energetic properties slightly worse (their caloric values fluctuate in a range from about 15 to 18 MJ/kg, and the amount of ash left after burning is of 5%), but they are cheaper fuel. - Pellets and agropellets are prized for their high comfort of use, and therefore they are successfully applied as a very effective fuel for the individual boilers of central heating systems, stones, fireplaces, and other heating devices designed for heating buildings and rooms, and equipped with a container for pellets, a dosing device for pellets and a feeder. The burners designed for burning pellets, made of heat-resistant, acid-resistant, and stainless materials, are mounted in the doors of any heating boilers, the oil-, gas-, or solid fuel ones.
- There is known a pellet burner which is an automatic device having a fire grate with a built-in heating element which starts the burner operation. A screw feeder supplies a small amount of the fuel in order to activate the burner. During this activation process a cycle of preheating the fuel and firing up the created seeds of flames by the precisely operating fan occurs. This burner is equipped with an electronic control module. This module, having analyzed a signal coming from a photocell built in the burner body, starts a process of dosing air to ignite a portion of pellets placed on the burner's fire grate. Having fired up the first portion of pellets and having reanalyzed the photocell signal, the control module starts precise dosing a fuel and air mixture in order to get a continuous process of degassing fuel. The automatics of the burner maintains the optimal composition of the fuel and air mixture by analyzing the photocell signals and controlling pressure values in the combustion chamber.
- There is a burner, known from the Polish application description P.
), for gasifying and burning biomass, especially the wood pellet one, by using wood distillation gas formed while burning wood. shown in the drawing Pos. 1 and which is characterized by having a cylindrical housing of the burner (1), inside of which a gasifying fire grate (2) is coaxially situated. A space inside a gasifying grate (2) forms a burn-and-glow chamber used for conversion of biomass, especially wood pellets, into wood distillation gas. There are side holes (3) located on a circumference of this grate, and there is an after-burning nozzle (4) adjacent to the burner housing from the top. The gasifying grate (2) is bell-shaped, directed its upper part down forming a bottom (5) of the burner, in which the lower holes (6) are symmetrically located. There is an aeration pillar (7) in the bottom (5) of the burner with holes circumferentially located along its full height. The open part of the aeration pillar (7) is fixed on the burner's bottom and the upper part of the pillar is closed. The burner housing (1) in its lower part is formed by an air-cleaner chamber (8) to which from bottom an air duct (13) and an aeration duct (12) are connected. The air-cleaner chamber (8) at the bottom is ended by an ash chamber (9). There are an ash remover bolt (10) and an ash container 11) situated in the ash chamber. From one side there is a screw feeder (15) dosing pellet biomass for the burner, aslant connected through a hole (14) to a side wall of the after-burning nozzle. The burner according to this solution enables a gasification process of wood pellets to be performed, that is the wood pellets conversion into a gaseous state in order to produce heat energy is possible. This burner is designed for central heating stoves, water boilers, and coal stoves with a fixed grate inside of which it can be mounted as an insert.400056 (A1 - According to the Polish utility model no.
there is a burner for the central heating boiler as show in the drawing Pos. 2a and Pos. 2b having a grate and a housing which has a feeder's outlet hole and a fan situated in its lower part. The grate is comprised of a semi-cylindrical shaped surface forming a basin which is extended in front by a flat surface element placed below it. There are primary air holes provided in the burner housing. The burner housing together with the grate form a monolithic unit.Ru.66962 - There is also known a pellet burner disclosed in the European Patent Application no.
EP1359372 B1 , shown in the drawing Pos. 3a, Pos. 3b and Pos. 3c. The burner comprises a main body (1) and a combustion chamber (2), in which there is a flow of hot combustion gases moving basically along the (F) direction. Inside the combustion chamber (2) there is a grate (3) bent back in relation to the (F) direction of flow of combustion gases and having a concave cross section. There are some inflating nozzles (16) located on the grate's surface for blowing up air throughout holes (17) situated on their side surfaces. Means of providing air include at least: one hole for primary air adapted for supplying air to said nozzles (16) throughout a duct (9) below the grate (3); the primary air holes above the lower part of the grate (3) and at least one secondary air duct (12) for blowing-in air in a basically axial zone of the combustion chamber (2). - In all solutions known until now there are burners designed for burning pellets that operate on a fixed-body basis, with a fixed or a rotary combustion chamber, with a multi-point blow-in of air, and the air is supplied to the hearth throughout the holes and/or the nozzles located in some different places around the combustion chamber. The disadvantage of these solutions consists largely in a lack of any effective control of the amount of air supplied to the combustion chamber, and such inability of controlling it results in the over-oxidation or under-oxidation of the burner.
The international application of invention no.WO 2008/141594 disclosed a burner designed for burning solid fuels, biomass, mainly wooden pellets, vegetable materials and grain, featuring a rotary combustion chamber (1) surrounded by a cylindrical fixed housing, permanently attached to the burner body, creating a ring-shaped duct (2) supplying air to the combustion chamber through holes and/or nozzles located on its circumference.
Further, patent description no.US 3822651 disclosed a rotary water-cooled kiln for waste disposal, primarily intended for burning wood waste. The rotary combustion chamber of the kiln has a cylindrical shape comprised of a plurality of water pipes (14) joined by perforated strips (57) in such a way so as to create a cylindrical surface (15) with numerous openings through which air is supplied into the chamber. There is an annular collar (60) mounted on the chamber, sectioned by radial walls (61) into six chambers. Each of the chambers has an opening with a pivoted panel (62). Using crank arms (64) and a cam (63), the panels (62) selectively open and obstruct the access of air to the chambers.
The kiln is enclosed in a chamber (58) fed by a blower (59).
Notably, the annular collar (60) rotates along with the combustion chamber (15). - The aim of the invention is to develop a mechanism of the combustion chamber aeration in a burner designed for pellets and agropellets burning that enables the burner to obtain even higher effectivity of using pellets-like renewable fuels by means of a continuous adjustment of the amount of air supplied to the combustion chamber that affects the economics of the combustion parameters.
- The pellet burner, which is the subject of the invention, concerns a burner comprising a steel body in a form of a fixed housing with an inlet hole for pellets and a rotary combustion chamber surrounded with a cylindrical, fixed cover permanently connected with the body, wherein the space between the combustion chamber and the cover forms a ring-shaped duct supplying air to the combustion chamber through inlet holes and/or inflating nozzles placed on each side wall of the rotary combustion chamber, said burner further comprising an aeration mechanism.
- In the solution according to the invention the aeration mechanism has a series of longitudinal obstructing strips, swingably mounted on the outer surface of each side wall of the combustion chamber, such strips selectively opening and obscuring the air inlet holes, said obstructing strips being placed in twos on the outer surface of each side placed in each wall of the combustion chamber, wherein the air supplied into the rotary combustion chamber is controlled with a control ring having an inner surface functioning as a cam operating on said obstructing strips for selectively opening and obscuring said air inlet holes and/or inflating nozzles.
- In an example the combustion chamber has the shape of a prism or truncated pyramid with a regular polygonal base or has the shape of a prism with a regular dodecagon, and in the most advantageous solution the combustion chamber has the shape of a truncated pyramid with a regular dodecagon base. In an further example, the inner surface of the control ring has a shape of arcs of two radius which are connected with each other by short, straight segments.
- Owing to the solution according to the invention an ability of a continuous adjustment of the rotary combustion chamber aeration has been developed, that allows supplying a precisely matched amount of air to the inside of the chamber, obtaining the optimum aeration of the hearth, and maintaining the optimum composition of the fuel and air mixture during all phases of combustion - starting from lighting the fire throughout all stages of maintaining the fire at the preset temperature of combustion, up to the fire suppression.
- The subject of the invention presented in an exemplary embodiment is shown in a schematic drawing, where:
Fig. 1 is a side view of the pellet burner,Fig. 2 is a cross section of the pellets burner along plane II-II ofFig. 1 ,Fig. 3 is a perspective view of the pellets burner without a combustion chamber cover,Fig. 4 is a side view of the combustion chamber without its cover,Fig. 5 is a longitudinal section in plane V-V ofFig. 4 ,Fig. 6 is a cross section of the burner combustion chamber in plane VI-VI ofFig. 4 ,Fig. 7 is a schematic diagram for opening and closure phases of the inlet holes at the rotation of the combustion chamber by 360°,Fig. 8 is a schematic diagram for opening phase,Fig. 9 is a schematic diagram for the closure phase of the inlet holes of air. - The aeration mechanism of the combustion chamber according to the exemplary embodiment has been applied in the pellet burner comprising a
steel body 1, being a fixed housing with aninlet hole 2 for pellets and arotary combustion chamber 3 surrounded by a cylindrical, fixedcover 4 permanently connected with abody 1, in addition, a space between thecombustion chamber 3 and thecover 4 is a ring-shapedduct 5 supplying air to thecombustion chamber 3 throughout inlet holes 6 placed on its circumference.
Arotary combustion chamber 3, having a form a truncated pyramid a base of which is a regular dodecagon, has 24longitudinal diaphragms 7 arranged in a form of shutters, placed in twos on eitherside wall 10 of thecombustion chamber 3. Thediaphragms 7 are swingably mounted on the outer surface of thecombustion chamber 3 and obscure the inlet holes ofair 6 cooperating with afixed control ring 8 situated perpendicularly to the longitudinal axis of thechamber 3 around its rear part, in addition theinner surface 9 of thecontrol ring 8 has a shape of arcs of two radius R and r, which are connected with each other by short, straight segments and functions as a cam pressing the diaphragms to thecombustion chamber 3 surface or releasing them (thereby supplying the air or cutting off its inflow) in accordance with a sequence of four preset phases, as follows: - Phase I - in this phase the
diaphragms 7 are closed, adhering to outer surface of thecombustion chamber 3. The edges of thediaphragms 7 are being pressed by thecontrol ring 8; - Phase II - this phase controls time of opening the
diaphragms 7. Thediaphragms 7 are gravitationally opened, and they are supported on thecontrol ring 8; - Phase III - in this phase the
diaphragms 7 are open at the angle of 40° and are supplying the air. The gravitational force makes thediaphragms 7 edges abut against the edges of thecontrol ring 8; - Phase IV - this phase IV controls time of closing the
diaphragms 7. Thecontrol ring 8 adjusts its outer diameter that causes the closure of thediaphragms 7 and cuts off the supply of air. - The future modifications may concern especially a shape of the
combustion chamber 3, and a shape of thediaphragms 7, and mainly the angular values of the individual phases of the diaphragms control.
Claims (1)
- A pellet burner comprising a steel body (1) constituting a fixed housing with an inlet hole (2) for pellets, and a rotary combustion chamber (3) surrounded with a cylindrical fixed cover (4) permanently connected with the body (1), wherein the space between the rotary combustion chamber (3) and the cover (4) is a ring shaped duct (5) supplying air into the rotary combustion chamber (3) through inlet holes (6) and / or nozzles placed on each side wall of the rotary combustion chamber (3), said burner further comprising an aeration mechanism, characterised in that said aeration mechanism has a series of longitudinal obstructing strips (7), swingably mounted on the outer surface of each side wall of the rotary combustion chamber (3), such strips selectively opening and obscuring said air inlet holes (6) and/or inflating nozzles, said obstructing strips (7) being placed in twos on the outer surface of each side wall of the combustion chamber (3), wherein the air supplied into the rotary combustion chamber (3) is controlled with a control ring (8) having an inner surface (9) functioning as a cam operating on said obstructing strips (7) for selectively opening and obscuring said air inlet holes (6) and/or inflating nozzles.
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PL409186A PL226498B1 (en) | 2014-08-14 | 2014-08-14 | Aerating mechanism of combustion chamber in the pellet burner |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2985527A1 EP2985527A1 (en) | 2016-02-17 |
| EP2985527B1 true EP2985527B1 (en) | 2021-04-07 |
Family
ID=54065306
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP15460041.5A Active EP2985527B1 (en) | 2014-08-14 | 2015-08-13 | Pellet burner |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP2985527B1 (en) |
| ES (1) | ES2881260T3 (en) |
| PL (1) | PL226498B1 (en) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| PL226499B1 (en) | 2014-09-17 | 2017-07-31 | Pellasx Spółka Z Ograniczoną Odpowiedzialnością Spółka Komandytowa | Shield of combustion chamber in the pellet burner |
| PL232801B1 (en) * | 2017-03-14 | 2019-07-31 | Pellasx Spolka Z Ograniczona Odpowiedzialnoscia Spolka Komandytowa | Combustion chamber burner grate for combustion of pellets and other solid fuels |
| RU200764U1 (en) * | 2020-03-18 | 2020-11-11 | Марк Семенович Солонин | FULL GASIFICATION BURNER |
Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20020162519A1 (en) * | 2001-05-07 | 2002-11-07 | Ilio Bertolami | Gas hot-water-tank air flow control mechanism |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| SE325092B (en) * | 1965-09-15 | 1970-06-22 | Landsverk Ab | |
| US3822651A (en) * | 1973-09-04 | 1974-07-09 | D Harris | Water cooled kiln for waste disposal |
| ITCR20020003A1 (en) | 2002-04-09 | 2003-10-09 | Termocabi S Rl | BURNER FOR PELLET FUEL |
| EP2162677A2 (en) * | 2007-05-18 | 2010-03-17 | Systemy S.r.o. | Combustion burner - combustion chamber |
| PL66962Y1 (en) | 2011-09-16 | 2014-01-31 | Pancerpol Galewski | Central heating boiler burner |
| PL400056A1 (en) | 2012-07-20 | 2014-02-03 | Romuald Karlyk | Burner for gasification and combustion of biomass, especially wood pellets |
| AT513896B1 (en) * | 2013-01-24 | 2016-03-15 | Otto Ing Keiml | Burner for solid fuels with rotatable combustion tube |
-
2014
- 2014-08-14 PL PL409186A patent/PL226498B1/en unknown
-
2015
- 2015-08-13 ES ES15460041T patent/ES2881260T3/en active Active
- 2015-08-13 EP EP15460041.5A patent/EP2985527B1/en active Active
Patent Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20020162519A1 (en) * | 2001-05-07 | 2002-11-07 | Ilio Bertolami | Gas hot-water-tank air flow control mechanism |
Also Published As
| Publication number | Publication date |
|---|---|
| PL226498B1 (en) | 2017-07-31 |
| EP2985527A1 (en) | 2016-02-17 |
| PL409186A1 (en) | 2016-02-15 |
| ES2881260T3 (en) | 2021-11-29 |
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