Over fire arrangement and method
10982843 · 2021-04-20
Assignee
Inventors
Cpc classification
F23L9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23C6/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23C5/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23C7/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F27B3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention relates to an over fire air arrangement for a furnace (1), the furnace (1) having opposing first wall (4) and second wall (6) and opposing first side wall (5) and second side wall (7) between the first and second walls (4, 6) for forming a furnace enclosure (2). The over fire air arrangement comprising at least one first over fire air port (20) provided to the first wall (4) for supplying a first over fire air flow (40) into the furnace (1) and at least one first additional over fire air port (50) provided to at least one of the first and second side walls (5, 7) in the vicinity of the first wall (4), the at least one first additional over fire air port (50) being arranged to supplying a first additional over fire air flow (60) into the furnace (1) transversely to the first over fire air flow (40).
Claims
1. An over fire air arrangement for a bubbling fluidized bed furnace, the furnace having opposing first wall and second wall and opposing first side wall and second side wall between the first and second walls for forming a furnace enclosure, the over fire air arrangement comprising: at least one first over fire air port provided to the first wall for supplying a first over fire air flow into the furnace, at least one second over fire air port provided to the second wall for supplying a first over fire air flow into the furnace, at least one first additional over fire air port provided to the first side wall in the vicinity of the first wall so that the at least one first additional over fire air port is arranged closer to the first wall than its distance to a vertical centre line of the furnace enclosure, the at least one first additional over fire air port being arranged to supply along the first wall a first additional over fire air flow into the furnace transversely to the first over fire air flow, at least one further first additional over fire air port provided to the second side wall in the vicinity of the first wall so that the at least one further first additional over fire air port is arranged closer to the first wall than its distance to a vertical centre line of the furnace enclosure, the at least one further first additional over fire air port being arranged to supply along the first wall a further first additional over fire air flow into the furnace transversely to the first over fire air flow, at least one second additional over fire air port provided to the first side wall in the vicinity of the second wall so that the at least one second additional over fire air port is arranged closer to the second wall than its distance to the vertical centre line of the furnace enclosure, the at least one second additional over fire air port being arranged to supply along the second wall a second additional over fire air flow into the furnace transversely to the second over fire air flow, and at least one further second additional over fire air port provided to the second side wall in the vicinity of the second wall so that the at least one further second additional over fire air port is arranged closer to the second wall than its distance to the vertical centre line of the furnace enclosure, the at least one further second additional over fire air port being arranged to supply along the second wall, a further second additional over fire air flow into the furnace transversely to the second over fire air flow, wherein at least one first secondary over fire air port provided to the first wall above the first over fire air port and above the at least one first additional over fire air port, at least one second secondary over fire air port provided to the second wall above the second over fire air port and above the at least one second additional over fire air port, the at least one first additional over fire air port, the at least one further first additional over fire air port, the at least one second additional over fire air port and the at least one further second additional over fire air port being in vertical direction above the at least one first over fire air port and the at least one second over fire air port and below the at least one first secondary over fire air port and the at least one second secondary over fire air port, at least one first secondary additional over fire air port provided to the first side wall in the vicinity of the first wall so that the at least one first secondary additional over fire air port is arranged closer to the first wall than its distance to the vertical centre line of the furnace enclosure, the at least one first secondary additional over fire air port being positioned in the vertical direction above the at least one first additional over fire air port and arranged to supply along the first wall a first secondary additional over fire air flow into the furnace transversely to the first over fire air flow, at least one further first secondary additional over fire air port provided to the second side wall in the vicinity of the first wall so that the at least one further first secondary additional over fire air port is arranged closer to the first wall than its distance to the vertical centre line of the furnace enclosure, the at least one further first secondary additional over fire air port being positioned in the vertical direction above the at least one further first additional over fire air port and arranged to supply along the first wall a further first secondary additional over fire air flow into the furnace transversely to the first over fire air flow, at least one second secondary additional over fire air port provided to the first side wall in the vicinity of the second wall so that the at least one second secondary additional over fire air port is arranged closer to the second wall than its distance to the vertical centre line of the furnace enclosure, the at least one second secondary additional over fire air port being positioned in vertical direction above the at least one second addition-al over fire air port and arranged to supply along the second wall a second secondary additional over fire air flow into the furnace transversely to the second over fire air flow, and at least one further second secondary additional over fire air port provided to the second side wall in the vicinity of the second wall so that the at least one second secondary additional over fire air port is arranged closer to the second wall than its distance to the vertical centre line of the furnace enclosure, the at least one further second secondary additional over fire air port being positioned in vertical direction above the at least one second additional over fire air port and arranged to supply along the second wall a further second secondary additional over fire air flow into the furnace transversely to the second over fire air flow, and the at least one first secondary additional over fire air port, the at least one further first secondary additional over fire air port, the at least one second secondary additional over fire air port and the at least one further second secondary additional over fire air port being in vertical direction above the at least one first secondary over fire air port and the at least one second secondary over fire air port.
2. An over fire air arrangement of according to claim 1, wherein the first and second additional over fire air ports are in vertical direction less than 2.0 m above the first and second over fire air ports; or the first and second additional over fire air ports are in vertical direction between 0.3-1.0 m above the first and second over fire air ports.
3. A bubbling fluidized bed furnace for combustion of fuels, the furnace comprising: a bottom; first and second opposing walls extending in vertical direction from the bottom; first and second opposing side walls between the first and second opposing walls, the first and second opposing walls form together with the first and second opposing side walls a furnace enclosure, a lower furnace comprising a) at least one primary combustion air supply port; or b) at least one primary burner and at least one secondary burner in vertical direction above the at least one primary burner for providing staged combustion, wherein the furnace comprises an over fire arrangement according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the following the invention will be described in greater detail by means of preferred embodiments with reference to the attached [accompanying] drawings, in which
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DETAILED DESCRIPTION OF THE INVENTION
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(13) It should be noted that the furnace 1 may comprise at least one primary burner 14, 15 and at least one secondary burner 12, 13 in vertical direction above the at least one primary burner 14, 15 for providing staged combustion. The furnace 1 may also comprise tertiary or further burner levels for forming more than two combustion stages. Furthermore, burners may also be provided only on one wall of the furnace 1.
(14) The furnace further comprises an over fire air arrangement comprises one or more over fire air ports 20, 21 provided to the upper furnace 110 above the lower furnace 100. In the embodiment of
(15) In the context of this application the over fire air ports 20, 21 may be provided on the same wall with the burners 14, 12, 15, 13 or alternatively on adjacent walls. Therefore, the arrangement of the over fire air ports 20, 21 is not dependent on the arrangement of burners 14, 12, 15, 13 combustion air ports provided to the lower furnace 100.
(16) The over fire air ports 20, 21 supply over fire air flows in the direction of arrows 26 such that on oxygen rich over fire air area 42 is formed in the centre of the upper furnace 110.
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(19) The additional over air ports 50, 51 are provided to the first and second side walls 5, 7 as shown in
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(21) It should be noted that also in single wall combustion furnace the over fire air ports may be provided on two opposite walls of furnace in the same way as shown in context of
(22) Furthermore, it should be noted that the present invention is not restricted to any special type on furnace, but the over fire arrangement according to the present invention may be utilized in any type of furnaces. For example, the furnace may be single wall combustion furnace, opposite wall fired furnace, corner fired furnace, a grate furnace, bubbling fluidized bed furnace or even a circulating fluidized bed furnace. The present invention is not restricted to any particular fuel, but fuel used in the furnace may be any known fuel.
(23) According to the above mentioned, the over fire air arrangement of the present invention comprises at least one first over fire air port 20 on the first wall 4 and at least one first additional over fire air port 50 provided to at least one of the first and second side walls 5, 7 in the vicinity of the first wall 4. The at least one first additional over fire air port 50 is arranged to supplying the first additional over fire air flow 60 into the furnace 1 transversely to the first over fire air flow 40 of the at least one first over fire air port 2. Alternatively the upper furnace 110 may also comprise at least one second over fire air port 21 provided to the second wall 6 and at least one second additional over fire air port 51 provided to at least one of the first and second side walls 5, 7 in the vicinity of the second wall 6. The at least one second additional over fire air port 51 being arranged to supplying a second additional over fire air flow 61 into the furnace 1 transversely to the second over fire air flow 41 of the at least one second over fire air port 21.
(24) As described above and shown in
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(26) the first and second additional over fire air ports (50, 51) are arranged such that:
(27) As described above the first and second additional over fire air ports 50, 51 are arranged in the vicinity of the first and second walls 4, 6, respectively. The term in the vicinity means that the first and second additional over fire air ports 50, 51 are arranged such that the a first distance z between the first and second additional air port 50, 51 and the first and second wall 4, 6, respectively, is smaller than a second distance y between the first and second additional air port 50, 51 and a vertical centre line A-A′ of the furnace enclosure 2, as shown in all
(28) In one embodiment the first and second additional over fire air ports 50, 51 are arranged such that first distance z between the first and second additional air port 50, 51 and the first and second wall 4, 6, respectively, is smaller than or equal to one third of a third distance x between the a vertical centre line A-A′ of the furnace enclosure 2 and the first and second wall 4, 6, respectively.
(29) In an alternative embodiment the first and second additional over fire air ports 50, 51 are arranged such that the first distance z between the first and second additional air port 50, 51 and the first and second wall 4, 6, respectively, is smaller than a second distance y between the first and second additional air port 50, 51 and a vertical centre line A-A′ of the furnace enclosure 2, and that the first distance z is smaller than 2.0 m, or preferably the first distance z is between 0.3-1.0 m.
(30) According to the present invention the first and second additional over fire air ports 50, 51 are arranged above the over fire air ports 20, 21 in the vertical direction of the furnace 1. The first and second additional over fire air ports 50, 51 may also be arranged even below the over fire air ports 20, 21 in the vertical direction of the furnace 1.
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(32) The over fire air arrangement may also comprise at least one first primary over fire air port 20 and at least one first secondary over fire air port 22 provided to the first wall 4. The first secondary over fire air port 22 is arranged in vertical direction above the first primary over fire air port 20.
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(34) In the embodiment of
(35) In the embodiment of
(36) The over fire air arrangement may also comprise at least one first primary additional over fire air port 50 and at least one first secondary additional over fire air port 52. The at least one first secondary additional air port 52 is arranged in vertical direction above the at least one first primary additional air port 50.
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(38) The furnace of
(39) It should be noted that in some embodiments of a grate furnace, the secondary and tertiary air ports 72, 73 and 74, 75 may be omitted and there is only primary air ports 72 and the over fire air arrangement.
(40) This configuration of the over fire air arrangement may be utilized when there are at least one first primary over fire air port 20 and at least one first secondary over fire air port 22 provided to the first wall 4 and at least one second primary over fire air port 21 and at least one second secondary over fire air port 23 provided to the second wall 6. This enables increasing the height of the additional over fire air supply to the first and second oxygen lean over fire air areas 44, 46, as shown in
(41) The first primary and secondary and second primary and secondary additional over fire air ports 50, 51, 52, 53 may be arranged such that both the first primary and secondary and second primary and secondary additional over fire air ports 50, 51, 52, 53 are in vertical direction above the first and second over fire air ports 20, 21, 22, 23 (not shown) or below the first and second secondary over fire air ports 22, 23, as in
(42) The a fourth distance q between the first and second secondary additional air port 52, 53 and the first and second wall 4, 6, respectively, is smaller than or equal to one third of a third distance x between the a vertical centre line A-A′ of the furnace enclosure 2 and the first and second wall 4, 6, respectively. In an alternative embodiment the first and second secondary additional over fire air ports 52, 53 are arranged such that the fourth distance q between the first and second secondary additional air port 52, 53 and the first and second wall 4, 6, respectively, is smaller than 2.0 m, or preferably the first distance z is between 0.3-1.0 m.
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(46) In an alternative embodiment the both the first primary and secondary and second primary and secondary additional over fire air ports 50, 51, 52, 53 may be in vertical direction between the first and second primary over fire air ports 20, 21 and the first and second secondary over fire air ports 22, 23. In another alternative embodiment the first and second primary additional over fire air ports 50, 51 may be in vertical direction between the first and second primary over fire air ports 20, 21 and the first and second secondary over fire air ports 22, 23, and the first and second secondary additional over fire air ports 52, 53 are in vertical direction above the first and second secondary over fire air ports 22, 23.
(47) When the over fire air arrangement comprises the first primary and secondary and second primary and secondary additional over fire air ports 50, 51, 52, 53, the momentum of the additional over fire air flows 62, 63 of the first and second secondary over fire air ports 52, 53 is lower than the momentum of the additional over fire air flows 60, 61 of the first and second secondary over fire air ports 50, 51, arranged below the first and second secondary over fire air ports 52, 53. Momentum means product of mass flow of the air and air velocity from the additional over fire air ports.
(48) The present invention further provides a furnace 1 for combustion of fuels. The furnace comprises a bottom 3, first and second opposing walls 4, 6 extending in vertical direction from the bottom 3 and first and second opposing side walls 5, 7 between the first and second opposing walls 4, 6. The first and second opposing walls 4, 6 form together with the first and second opposing side walls 5, 7 a furnace enclosure 2. The furnace 1 further comprises a lower furnace 100 comprising
(49) a) at least one primary combustion air supply port 71 and at least one secondary combustion air supply port 74, 73 in vertical direction above the at least one primary combustion air supply port 71 for providing staged combustion, the at least one primary combustion air supply port 71 and the at least one secondary combustion air supply port 74, 73 being arranged to the first wall 4 or the first and second wall 4, 6, or
(50) b) at least one primary burner 14, 15 and at least one secondary burner 12, 13 in vertical direction above the at least one primary burner 14, 15 for providing staged combustion, the at least one primary burner 14, 15 and the at least one secondary burner 12, 13 being arranged to the first wall 4 or the first and second wall 4, 6.
(51) The furnace 1 further comprises an the over fire arrangement according to present invention. The furnace 1 may be a bubbling fluidized bed furnace, a grate furnace or a pulverized fuel furnace, such as pulverized coal or peat furnace.
(52) The present invention also provides a method for supplying over fire air into a furnace 1. The method comprises supplying a first over fire air flow 40 from the first wall 4 into the furnace 1 and supplying a first additional over fire air flow 60 from at least one of the first and second side walls 5, 7 in the vicinity of the first wall 4 and transversely to the first over fire air flow 40.
(53) In an alternative embodiment the method further comprises supplying a second over fire air flow 41 from the second wall 6 into the furnace 1 and supplying a second additional over fire air flow 61 from at least one of the first and second side walls 5, 7 in the vicinity of the second wall 4 and transversely to the second over fire air flow 41.
(54) The first and second additional over fire air flows 60, 61 may be supplied along the first and second walls 4, 6 respectively, and/or parallel the first and second walls 4, 6 respectively. In one embodiment the first and second additional over fire air flows 60, 61 may be supplied perpendicularly to the first and second over fire air flows 40, 41. In another embodiment the first and second additional over fire air flows 60, 61 from the first and second side walls 5, 7, respectively, at a first distance z from the first and second walls 4, 6, respectively. The first distance z is smaller than a second distance y between the first and second additional over fire air flows 60, 61 and a vertical centre line A-A′ of the furnace enclosure 2.
(55) The method also comprises supplying 10-35%, preferably 20 to 35%, of total amount of over fire air with the first and second additional over fire air flows 60, 61.
(56) It will be obvious to a person skilled in the art that, as the technology advances, the inventive concept can be implemented in various ways. The invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims.