HEATING DEVICE
20230258114 ยท 2023-08-17
Inventors
Cpc classification
F01N2470/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2470/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N3/2033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23J15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23D2900/21003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A heating apparatus for an exhaust train comprises a flow-conducting device for guiding an exhaust gas flow along a flow path; a burner that is arranged outside the flow-conducting device and that is configured to generate heating gases during the combustion of a fuel; and a supply device that is configured to supply the heating gases generated by the burner to the exhaust gas flow, which is guided through the flow-conducting device, via a heating gas inlet that is formed in a wall of the flow-conducting device. The supply device has a channel that is fastened to an outer side of the flow-conducting device in a manner covering the heating gas inlet and open towards it, wherein the channel extends along a peripheral direction running around the flow path and in so doing engages around the flow-conducting device while forming an interruption.
Claims
1-14. (canceled)
15. A heating apparatus for an exhaust train, said heating apparatus comprising a flow-conducting device for guiding an exhaust gas flow along a flow path; a burner that is arranged outside the flow-conducting device and that is configured to generate heating gases during the combustion of a fuel; and a supply device that is configured to supply the heating gases generated by the burner to the exhaust gas flow, which is guided through the flow-conducting device, via a heating gas inlet that is formed in a wall of the flow-conducting device, wherein the supply device has a channel that is fastened to an outer side of the flow-conducting device in a manner covering the heating gas inlet and open towards it, wherein the channel extends along a peripheral direction running around the flow path and in so doing engages around the flow-conducting device while forming an interruption.
16. The heating apparatus in accordance with claim 15, wherein the channel is completely open towards the flow-conducting device.
17. The heating apparatus in accordance with claim 15, wherein the channel is formed in the manner of a half shell and/or is formed in one piece.
18. The heating apparatus in accordance with claim 15, wherein the interruption extends over a peripheral region of 1% to 50% of the total periphery of the flow-conducting device.
19. The heating apparatus in accordance with claim 18, wherein the interruption extends over a peripheral region of 5% to 30% of the total periphery of the flow-conducting device.
20. The heating apparatus in accordance with claim 15, wherein the channel has a supply opening that is connected to the burner and that is centrally arranged at the channel with respect to the extent of the channel in the peripheral direction.
21. The heating apparatus in accordance with claim 15, wherein the channel has a supply opening that is connected to the burner and that is arranged at an end region of the channel with respect to the extent of the channel in the peripheral direction.
22. The heating apparatus in accordance with claim 15, wherein the heating gas inlet comprises a gap extending in the peripheral direction.
23. The heating apparatus in accordance with claim 22, wherein the gap extends at least substantially along the total length of the channel.
24. A heating apparatus for an exhaust train, comprising a flow-conducting device for guiding an exhaust gas flow along a flow path; a burner that is arranged outside the flow-conducting device and that is configured to generate heating gases during the combustion of a fuel; and a supply device that is configured to supply the heating gases generated by the burner to the exhaust gas flow, which is guided through the flow-conducting device, via a heating gas inlet that is formed in a wall of the flow-conducting device, wherein the supply device has a channel that is fastened to an outer side of the flow-conducting device in a manner covering the heating gas inlet and open towards it, wherein the channel extends along a peripheral direction running around the flow path, and wherein the heating gas inlet comprises a plurality of individual openings spaced apart from one another.
25. The heating apparatus in accordance with claim 24, wherein the channel extends along a peripheral direction running around the flow path and in so doing engages around the flow-conducting device while forming an interruption.
26. The heating apparatus in accordance with claim 24, wherein the heating gas inlet comprises a regular hole row that extends in the peripheral direction along the total channel.
27. The heating apparatus in accordance with claim 24, wherein at least one individual opening is designed as an elongate hole or all the individual openings are designed as elongate holes.
28. The heating apparatus in accordance with claim 27, wherein the elongate holes extend transversely to the flow path.
29. The heating apparatus in accordance with claim 27, wherein the elongate holes extend alternately longitudinally and transversely to the flow path.
30. The heating apparatus in accordance with claim 27, wherein the elongate holes have at least two different sizes.
31. The heating apparatus in accordance with claim 24, wherein the channel forms a closed ring.
Description
[0025] The invention will be described in the following by way of example with reference to the drawings.
[0026]
[0027]
[0028]
[0029]
[0030]
[0031] The exhaust train section 11 shown in
[0032] The heating apparatus 17 comprises a burner 19 that, as shown, is arranged outside the flow-conducting device 15 and that generates and discharges heating gases during the operation by a combustion of a fuel. A channel 20 receives the heating gases from the burner 19 via a supply line 21 and feeds the heating gases via a heating gas inlet 23 to the exhaust gas flow 16 that is guided through the flow-conducting device 15. Accordingly, the supply line 21 and the channel 20 form a supply device 26 for burner gases. The burner 19 is preferably arranged so close to the exhaust gas catalytic converter 13 that heat losses over the transport path are negligible.
[0033]
[0034] In the embodiment shown in
[0035] The connection in terms of flow of the burner 19 to the channel 20 takes place via a supply opening 37 that, in the embodiment shown in
[0036] In the embodiment of
[0037] The embodiment of a heating apparatus 47 in accordance with the invention shown in
[0038]
[0039] In the embodiment shown in
[0040]
[0041] An embodiment in which a heating gas inlet is provided with a plurality of columns or a plurality of hole rows is not shown. Furthermore, a heating gas inlet could also be provided that has both at least one gap 27 and at least one hole row 55.
[0042] Since the heating gases generated by the burner 19 enter the exhaust gas flow 16 in a manner distributed along the periphery of the flow-conducting device 15, a fast mixing of the heating gases with the flowing exhaust gases takes place and a uniform heating of the exhaust gas catalytic converter 13 thus takes place. Said exhaust gas catalytic converter 13 can thus be operated with a high degree of efficiency in different operating states of the internal combustion engine and is protected against damage by a local overheating. Since no components of the heating apparatus 17 project into the interior of the flow-conducting device, the pressure loss is low. Thus, the invention enables an improved purification of exhaust gases by simple means.
[0043] In general, channels with or without an interruption can be combined with openings of any desired design to meet the respective present requirements.
REFERENCE NUMERAL LIST
[0044] 11 exhaust train section [0045] 13 exhaust gas catalytic converter [0046] 15 flow-conducting device [0047] 16 exhaust gas flow [0048] 17 heating apparatus [0049] 18 flow path [0050] 19 burner [0051] 20 channel [0052] 21 supply line [0053] 22 peripheral direction [0054] 23 heating gas inlet [0055] 25 wall [0056] 26 supply device [0057] 27 gap [0058] 30 interruption [0059] 33 border [0060] 35 outer side [0061] 37 supply opening [0062] 38 channel arm [0063] 39 channel arm [0064] 40 exhaust gas inlet [0065] 41 exhaust gas outlet [0066] 47 heating apparatus [0067] 53 heating gas inlet [0068] 55 hole row [0069] 57 elongate hole [0070] 67 heating apparatus [0071] 69 end region [0072] 70 end region [0073] 75 receiver [0074] 77 heating apparatus [0075] 80 channel [0076] 90 channel