EP2342496B1 - Appareil de brûleur à gaz à prémélange - Google Patents

Appareil de brûleur à gaz à prémélange Download PDF

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Publication number
EP2342496B1
EP2342496B1 EP09760634.7A EP09760634A EP2342496B1 EP 2342496 B1 EP2342496 B1 EP 2342496B1 EP 09760634 A EP09760634 A EP 09760634A EP 2342496 B1 EP2342496 B1 EP 2342496B1
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EP
European Patent Office
Prior art keywords
holes
sealing element
burner
section
cross
Prior art date
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Application number
EP09760634.7A
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German (de)
English (en)
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EP2342496B8 (fr
EP2342496A2 (fr
Inventor
Loris Barduca
Stefano Calore
Danilo Pulzato
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Sit SpA
Original Assignee
Sit La Precisa SpA
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Publication date
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Publication of EP2342496A2 publication Critical patent/EP2342496A2/fr
Publication of EP2342496B1 publication Critical patent/EP2342496B1/fr
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Publication of EP2342496B8 publication Critical patent/EP2342496B8/fr
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23DBURNERS
    • F23D14/00Burners for combustion of a gas, e.g. of a gas stored under pressure as a liquid
    • F23D14/34Burners specially adapted for use with means for pressurising the gaseous fuel or the combustion air
    • F23D14/36Burners specially adapted for use with means for pressurising the gaseous fuel or the combustion air in which the compressor and burner form a single unit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23DBURNERS
    • F23D14/00Burners for combustion of a gas, e.g. of a gas stored under pressure as a liquid
    • F23D14/46Details, e.g. noise reduction means
    • F23D14/62Mixing devices; Mixing tubes

Definitions

  • the present invention relates to a gas burner apparatus with pre-mixing having the features set out in the preamble of claim 1.
  • gas burners of the pre-mixing type for example, for condensation boilers, whose combustion head is intended to be received in a combustion chamber, to which the air/gas mixture is supplied by means of the delivery of a fan unit.
  • An example of such a burner apparatus is known from Italian Patent Application No. PD2007A000413 , in which there is described a burner which is connected to a cover or another similar closure element of the combustion chamber and in which there are coaxially mounted a fan unit and a cap-like combustion head.
  • the air/gas mixture which is burnt at the surface of the combustion head of the burner is in the form of a plurality of mixing ducts which are open towards the outer side of the burner in order to draw in air and through which the air, once mixed with the gas, is directed towards the intake section of the fan.
  • Each of those ducts generally functions under reduced pressure, with the fan positioned downstream and is in the form of a Venturi duct, that is to say, which is formed by a convergent portion which is contiguous relative to a divergent portion, between which there is defined a minimum cross-section of the Venturi duct, a reduction in the pressure signal (pressure reduction) being produced in that cross-section. That signal is typically used to draw in from the valve the combustible gas which is then introduced into the mixing duct in order to then become mixed with the air drawn in by the reduced pressure.
  • the pressure signal which is generated in the minimum cross-section of the Venturi duct is further a function of various parameters. For example, if the number of revolutions of the fan increases, for a given geometry, a greater flow of air is drawn in with a greater velocity through the minimum cross-section and therefore a greater pressure reduction is consequently generated. Furthermore, if the flow resistances downstream of the fan change, the signal changes as a result. For example, if the flow resistances increase, the signal decreases and, in order to be able to maintain it at the levels before the increase in the flow resistances, it is normally necessary to use another Venturi duct having a smaller minimum cross-section. However, this results in a cost increase because it requires the production and control of additional components in the burner. That problem is particularly apparent in applications in which the range of adjustment of the thermal output means that such components have to be replaced for correct adjustment of the burner.
  • the problem addressed by the present invention is to provide a burner apparatus which is structurally and functionally configured so as to allow the limitations set out with regard to the cited prior art to be overcome.
  • a gas burner apparatus with pre-mixing constructed in accordance with the present invention is generally designated 1.
  • the burner comprises a combustion head 2, preferably having a cap-like construction whose base is advantageously secured to a cover 3 which constitutes a closure element of a combustion chamber (not illustrated) which is associated with the burner.
  • a fan unit 4 whose impeller 5 of the centrifugal type is coaxial with the combustion head, is further rotatably supported on the cover.
  • the axis of rotation of the impeller, which is actuated by an electric motor 6, is designated X.
  • a distribution element which is designated 7 and which is also substantially of cap-like form and is provided with through-holes for distributing the air/gas mixture to the combustion head.
  • a first plurality of conveying ducts which are designated 11 and which are capable of conveying the combustible air/gas mixture to the combustion head 2 which is supplied by way of the delivery side 9 of the fan and a second plurality of conveying ducts 12 which are suitable for conveying the flow of air and/or gas which is taken from outside the burner body in the direction of the intake section 10 of the fan.
  • That intake section is arranged at the same side of the head 2 and is in communication with a first chamber 13 which is defined in the volume space 8 which remains between the head 2 and the impeller 5.
  • the pluralities of ducts 11 and 12 are further selected in terms of size and structure so that the flow of the air/gas mixture to the delivery side of the fan intersects with the flow of air and/or gas which is directed to the intake section, as schematically illustrated in Figure 2 , in which the above-mentioned flows are conveyed so as to be separate and distinct from each other by the ducts 11 and 12, respectively.
  • the ducts 11 of the corresponding plurality extend in the region of the delivery section 9 of the fan, outside the outer diameter of the impeller 5, in order to connect that delivery section to a second chamber 14 for distributing the mixture, which chamber 14 is also defined in the space 8 between the distributor 7 and the impeller and is separated from the chamber 13 by means of a wall 15.
  • the ducts 11 are distributed circumferentially, downstream of the delivery section 9, with a pre-selected angular interval, in particular with a regular angular interval.
  • Each of the ducts 11 further has, with respect to the direction of flow, an inlet opening 11a for the mixture (provided from the delivery side of the fan), in which the flow has a prevailing radial component, and a discharge opening 11b, at the opposite end, in which the flow has a prevailing axial component.
  • the chamber 14 Downstream of the discharge opening, is configured so as to further deviate the flow in order to convey it along the distributor 7 in order to efficiently supply the combustion head 2.
  • the second plurality of conveying ducts 12 is configured in order to generate pre-mixing of the air, taken from outside, with the gas which is introduced into the duct and thereby to convey a pre-mixed air/gas flow to the intake section 10 of the fan.
  • the ducts 12 are arranged in an alternating position with respect to the ducts 11 in such a manner that, in the region of intersection of the flows, designated M in Figure 2 , each duct 12 is interposed between a pair of ducts 11 which are adjacent to each other.
  • Each duct 12 is open at the outer side of the burner, at the intake section 12a of the duct, by way of which a flow of air is drawn in and extends as far as an opposite discharge section 12b which is placed in communication with the intake section 10 of the fan. Only one of the ducts 12 will be described in detail below, because they are of identical construction.
  • Each duct 12 is provided with mixing means, which comprise a portion of the duct itself that is configured as a Venturi duct, that is to say, comprising a convergent portion 16a which extends into a contiguous, divergent portion 16b, there remaining defined between the portions a restricted section (minimum section) of the Venturi duct, designated 16c.
  • mixing means comprise a portion of the duct itself that is configured as a Venturi duct, that is to say, comprising a convergent portion 16a which extends into a contiguous, divergent portion 16b, there remaining defined between the portions a restricted section (minimum section) of the Venturi duct, designated 16c.
  • the duct is designated 17 and continues in the form of a valve 18, which is only schematically illustrated and which is capable of conveying the combustible gas into the corresponding duct 12, at that minimum section 16c.
  • Figure 2A is a purely schematic view of the pre-selected configuration in relation to the Venturi duct.
  • Each duct 12 is further formed following the engagement of a first region and a second region of the burner, which are separate from each other, along a surface engagement profile, the first region which is generally designated A being defined in the base structure of the cover 3 which extends axially upstream of the impeller, the second region which is generally designated B being arranged downstream of the impeller and in which the wall 15 is arranged in the delivery zone of the burner.
  • a fluid-tight sealing element which is designated 20 and which has the main function of preventing gas and/or air from being drawn in between the ducts 11 and 12 in a relative manner.
  • the sealing element 20 is advantageously of planar annular form with reduced transverse thickness, as clearly shown in Figure 4 . According to a main feature of the invention, that sealing element is positioned at the restricted sections 16c of the ducts 12 (minimum section of the Venturi duct).
  • the sealing element 20 is further provided, in the annular wall thereof, with a plurality of through-holes which are all designated 21 and which define the restricted section of the corresponding Venturi duct at least in some of the plurality of ducts 12, once the regions A and B of the burner have been engaged along the engagement profile thereof, with the seal 20 being interposed.
  • the through-holes 21 are arranged circumferentially with a regular angular interval along the annular wall of the seal 20. They have, when viewed in cross-section, a substantially drop-like shape.
  • Those holes 22 define the sections of passage of the gas flow, for each of the ducts 17, at the restricted section of the Venturi duct, where there occurs the introduction of the combustible gas into the air flow which is conveyed by the ducts 12.
  • each duct 17 is, upstream of the seal 20, in communication with a channel 17a which extends in an annular manner in the burner region A, concentrically relative to the axis X, which serves to distribute and convey the gas from the valve in each of the ducts 17.
  • the channel 17a is jointly defined by the burner region A and the seal 20 which is contiguous therewith.
  • those holes 23 define the cross-section of each of the ducts 11, in the region of the seal 20, and are positioned along the circumferential profile of the seal, in alignment with the holes 21 with a pre-selected, regular, angular interval.
  • the holes 23 are provided in an alternating manner with respect to the holes 21, along a common circular profile which is concentric relative to the axis X so that each hole 23 is interposed between a pair of mutually adjacent holes 21, as clearly illustrated in Figure 5 .
  • the sealing element 20 is configured so as to be interchangeable with at least a second sealing element which is designated 20' (illustrated in Figures 4 and 6 ) and which is provided with a plurality of through-holes 21' having the same function as the corresponding holes 21 of the seal 20, the overall size of the cross-sections of those holes 21' being different (greater or smaller than) from the overall size of the cross-sections relating to the holes 21'.
  • seal 20 being interchanged with the seal 20', it is possible to vary the overall section relating to the flow of air which is drawn into the burner in order to consequently adjust the burner in accordance with the thermal output required and/or the flow resistances which exist in the supply ducts of the air/gas mixture.
  • the invention allows the provision of a plurality of sealing elements with the number and shape of the holes 21 which are advantageously pre-selected in accordance with the requirements for adjustment and the power intervals required for the operation of the burner.
  • the holes 21 are further equally spaced apart from each other, as are the holes 21', 23 and 23'.
  • the second sealing element 20' differs from the seal 20 in that there are provided holes 21' each having a cross-section of greater size than the size of each corresponding hole 21 of the seal 20.
  • the invention thereby solves the problem set out, resulting in the advantages set out above in relation to known solutions.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Gas Burners (AREA)
  • Pre-Mixing And Non-Premixing Gas Burner (AREA)

Claims (10)

  1. Brûleur de gaz à pré-mélange qui comprend un moyen de mélange destiné à mélanger un mélange air/gaz qui doit être acheminé vers la section d'admission d'un ventilateur (4), dont la sortie est acheminée vers une tête de combustion (2) du brûleur, le moyen de mélange comprenant une pluralité de conduits (12), qui possèdent chacun une zone sous la forme d'un conduit à Venturi muni de parties contiguës (16a, 16b) qui sont convergentes/divergentes, par rapport au sens d'écoulement, et d'une section transversale restreinte (16c) définie entre la partie convergente et la partie divergente, dans chaque partie convergente (16a) étant acheminé un flux d'air destiné à être mélangé avec un flux gazeux qui est introduit dans le conduit au niveau de la section transversale restreinte (16c), le mélange air/gaz étant acheminé par la partie divergente (16b) du conduit vers la section d'admission (10) du ventilateur (4), chaque conduit (12) de la pluralité étant défini par l'engagement d'au moins une première et une seconde zones de brûleur mutuellement distinctes (A, B), le long d'un profil d'engagement mutuel, chacune des zones de brûleur (A, B) comprenant des parties distinctes et correspondantes de chacun des conduits (12), au moins un premier élément d'étanchéité au liquide (20) étant prévu entre les zones de brûleur (A, B) le long du profil d'engagement afin d'empêcher le gaz et/ou l'air d'être aspiré à l'intérieur par rapport aux conduits (12), caractérisé en ce que ledit premier élément d'étanchéité (20) est interposé entre les zones de brûleur (A, B) au niveau de la section transversale restreinte (16c) de chacun des conduits à Venturi de la pluralité de conduits (12),
    - en ce que ledit premier élément d'étanchéité (20) possède des orifices traversants (21) qui définissent la section transversale restreinte du conduit à Venturi correspondant dans au moins certains de la pluralité de conduits (12), en raison de l'engagement des zones de brûleur (A, B) le long du profil d'engagement,
    - et en ce que ledit premier élément d'étanchéité (20) est interchangeable avec au moins un second élément d'étanchéité (20', 20") qui possède des orifices traversants correspondants (21', 21"), dont la taille globale pour les sections transversales concernées est différente de la taille globale des sections transversales liées aux orifices correspondants (21) du premier élément d'étanchéité (20), de façon à faire varier la section transversale globale définie par la pluralité d'orifices des conduits, ledit premier élément (20) étant interchangeable avec au moins le second élément d'étanchéité (20', 20"), et, par conséquent, à contrôler le brûleur selon la puissance thermique requise et/ou les résistances à l'écoulement qui existent dans les conduits destinés à fournir le mélange air/gaz au brûleur.
  2. Brûleur selon la revendication 1, dans lequel au moins le premier élément d'étanchéité (20) et le second élément d'étanchéité (20', 20"), qui sont mutuellement interchangeables, sont de forme annulaire, et les orifices traversants (21, 21', 21") qui sont prévus dans chaque élément d'étanchéité correspondant sont prévus de façon à être espacés les uns des autres de manière circonférentielle et angulaire.
  3. Brûleur selon la revendication 1 ou 2, dans lequel les orifices (21) qui sont prévus dans le premier élément d'étanchéité (20) possèdent tous la même taille prédéterminée de section transversale, et les orifices (21', 21") qui sont prévus dans le second élément d'étanchéité (20', 20") possèdent tous la même taille de section transversale prédéterminée, qui est différente de celle prévue dans le premier élément d'étanchéité (20).
  4. Brûleur selon la revendication 3, dans lequel les orifices (21) qui se trouvent dans le premier élément d'étanchéité (20) sont prévus de façon à être aussi nombreux que les orifices (21') du second élément d'étanchéité (20').
  5. Brûleur selon la revendication 1 ou 2, dans lequel chaque orifice (21) du premier élément (20) possède une taille de section transversale égale à celle de chaque orifice (21") du second élément d'étanchéité (20"), et le nombre total d'orifices (21) du premier élément (20) est différent du nombre total d'orifices (21") du second élément d'étanchéité (20").
  6. Brûleur selon la revendication 1 ou 2, dans lequel les orifices (21, 21') qui sont prévus dans le premier élément d'étanchéité (20) et le second élément d'étanchéité (20') sont régulièrement espacés les uns des autres, avec un intervalle angulaire prédéterminé.
  7. Brûleur selon l'une quelconque des revendications précédentes, dans lequel est prévu, à l'aide des orifices (21, 21', 21") de l'élément d'étanchéité correspondant, le passage d'écoulement de l'air qui est aspiré dans le brûleur, des secondes orifices distincts et correspondants (22, 22', 22") étant prévus dans les éléments d'étanchéité et définissant la section transversale du passage du gaz qui est introduit dans la section transversale restreinte de chaque conduit à Venturi.
  8. Brûleur selon la revendication 7, dans lequel est prévu, pour chaque élément d'étanchéité (20, 20'), un orifice (22, 22') destiné au passage du gaz à un emplacement adjacent à un orifice correspondant (21, 21') destiné au passage de l'air d'admission.
  9. Brûleur selon l'une quelconque des revendications précédentes, dans lequel est prévue, dans chacun des éléments d'étanchéité (20, 20', 20"), une pluralité de troisièmes orifices traversants (23, 23', 23") qui définissent la section transversale du passage, au niveau du profil d'engagement des zones de brûleur (A, B), des conduits qui sont capables d'acheminer des flux de mélange air/gaz qui sont fournis par le côté évacuation (9) du ventilateur (4), dans la direction de la tête du brûleur (2).
  10. Brûleur selon la revendication 9, dans lequel les troisièmes orifices (23, 23', 23") sont disposés de manière circonférentielle dans chacun des éléments d'étanchéité (20, 20', 20"), en alternance avec les orifices destinés au passage de l'air d'admission.
EP20090760634 2008-11-07 2009-10-27 Appareil de brûleur à gaz à prémélange Active EP2342496B8 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITPD2008A000324A IT1391676B1 (it) 2008-11-07 2008-11-07 Apparecchio bruciatore a gas con pre-miscelazione
PCT/IT2009/000487 WO2010052746A2 (fr) 2008-11-07 2009-10-27 Appareil de brûleur à gaz à prémélange

Publications (3)

Publication Number Publication Date
EP2342496A2 EP2342496A2 (fr) 2011-07-13
EP2342496B1 true EP2342496B1 (fr) 2015-02-25
EP2342496B8 EP2342496B8 (fr) 2015-04-22

Family

ID=41128215

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20090760634 Active EP2342496B8 (fr) 2008-11-07 2009-10-27 Appareil de brûleur à gaz à prémélange

Country Status (8)

Country Link
US (1) US20110217664A1 (fr)
EP (1) EP2342496B8 (fr)
CN (1) CN102209869B (fr)
CA (1) CA2742758C (fr)
IT (1) IT1391676B1 (fr)
RU (1) RU2511820C2 (fr)
UA (1) UA101997C2 (fr)
WO (1) WO2010052746A2 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110748887A (zh) * 2017-06-27 2020-02-04 珠海优特智厨科技有限公司 燃气设备

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AU2013200950B2 (en) 2012-02-16 2014-05-29 David M. Christensen Control system for space heater/hearth
ITPD20130189A1 (it) * 2013-07-05 2015-01-06 Sit La Precisa S P A Con Socio Uni Co Dispositivo miscelatore aria-gas per apparecchi bruciatori a pre-miscelazione
FR3018900B1 (fr) * 2014-03-19 2016-04-15 Yahtec Dispositif de bruleur a pre melange gaz
CN113680224A (zh) * 2020-05-19 2021-11-23 彼特威有限责任公司 气体燃烧器的气体/空气混合装置
IT202100025352A1 (it) * 2021-10-04 2023-04-04 Raffaele Antonio Spezia Applicazioni di un elemento a micro ugelli

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110748887A (zh) * 2017-06-27 2020-02-04 珠海优特智厨科技有限公司 燃气设备
CN110748887B (zh) * 2017-06-27 2021-11-09 珠海优特智厨科技有限公司 燃气设备

Also Published As

Publication number Publication date
US20110217664A1 (en) 2011-09-08
RU2511820C2 (ru) 2014-04-10
IT1391676B1 (it) 2012-01-17
WO2010052746A3 (fr) 2011-04-07
UA101997C2 (ru) 2013-05-27
RU2011122829A (ru) 2012-12-20
CN102209869A (zh) 2011-10-05
WO2010052746A8 (fr) 2010-07-08
CN102209869B (zh) 2013-09-04
CA2742758C (fr) 2017-03-07
CA2742758A1 (fr) 2010-05-14
EP2342496B8 (fr) 2015-04-22
WO2010052746A2 (fr) 2010-05-14
ITPD20080324A1 (it) 2010-05-08
EP2342496A2 (fr) 2011-07-13

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