DIRECT SPRAY EXHAUST MIXER SYSTEM
20200332692 ยท 2020-10-22
Inventors
Cpc classification
F01N2610/1453
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F25/31332
PERFORMING OPERATIONS; TRANSPORTING
F01N3/2066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N3/2839
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02A50/20
GENERAL 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
F01N3/2803
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F23/213
PERFORMING OPERATIONS; TRANSPORTING
F01N3/2892
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2240/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T10/12
GENERAL 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
International classification
F01N3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A mixer for a vehicle exhaust system includes an outer housing defining an exhaust gas flow path, wherein the outer housing includes an inlet opening and an outlet opening. A distribution pipe is configured to deliver a reduction fluid directly into the exhaust gas flow path. The distribution pipe has an inlet end associated with the inlet opening and an outlet end associated with the outlet opening. The distribution pipe comprises a fluid flow path that is coiled about a center of the exhaust gas flow path.
Claims
1. A mixer for a vehicle exhaust system comprising: an outer housing defining an exhaust gas flow path, wherein the outer housing includes an inlet opening and an outlet opening; and a distribution pipe configured to deliver a reduction fluid directly into the exhaust gas flow path, wherein the distribution pipe has an inlet end associated with the inlet opening and an outlet end associated with the outlet opening, and wherein the distribution pipe comprises a fluid flow path that is coiled about a center of the exhaust gas flow path.
2. The mixer according to claim 1 wherein the distribution pipe includes a plurality of orifices through which the reduction fluid is directly introduced into the exhaust gas flow path.
3. The mixer according to claim 1 wherein coils of the fluid flow path have an increasing radius about the center of the exhaust gas flow path.
4. The mixer according to claim 3 wherein the coils are circular.
5. The mixer according to claim 3 wherein one of the inlet and outlet ends of the distribution pipe extends from the inlet opening toward the center of the exhaust gas flow path to a radially innermost coil, and wherein the other of the inlet and outlet ends of the distribution pipe extends from a radially outermost coil to the outlet opening.
6. The mixer according to claim 1 including an inlet tube extending outward of the housing from the inlet opening and an outlet tube extending outward of the housing from the outlet opening, and wherein the inlet end of the distribution pipe is in fluid communication with the inlet tube and the outlet end of the distribution pipe is in fluid communication with the outlet tube.
7. The mixer according to claim 6 wherein the inlet tube and outlet tube are immediately adjacent to each other on one side of the housing.
8. The mixer according to claim 7 wherein the inlet and outlet tubes extend parallel to each other at the inlet and outlet openings.
9. The mixer according to claim 7 wherein the inlet and outlet tubes are fluidly connected to a fluid supply of the reduction fluid.
10. The mixer according to claim 1 wherein the outer housing comprises an exhaust pipe.
11. A vehicle exhaust system comprising: an upstream exhaust component having a housing defining an exhaust gas flow path, wherein the housing includes an inlet opening and an outlet opening; a downstream exhaust component that includes an exhaust aftertreatment component, wherein the upstream component is connected to the downstream component; and a distribution pipe positioned within the upstream exhaust component and configured to deliver a reduction fluid directly into the exhaust gas flow path, wherein the distribution pipe has an inlet end associated with the inlet opening and an outlet end associated with the outlet opening, and wherein the distribution pipe comprises a fluid flow path that is coiled about a center of the exhaust gas flow path.
12. The vehicle exhaust system according to claim 11 wherein the inlet end and the outlet end are fluidly connected to a fluid supply of the reduction fluid.
13. The vehicle exhaust system according to claim 11 wherein the distribution pipe includes a plurality of orifices through which the reduction fluid is directly introduced into the exhaust gas flow path.
14. The vehicle exhaust system according to claim 13 wherein coils of the fluid flow path have an increasing radius about the center of the exhaust gas flow path, and wherein the coils are circular.
15. The vehicle exhaust system according to claim 13 wherein coils of the fluid flow path have an increasing radius about the center of the exhaust gas flow path, and wherein one of the inlet and outlet ends of the distribution pipe extends from the inlet opening toward the center of the exhaust gas flow path to a radially innermost coil, and wherein the other of the inlet and outlet ends of the distribution pipe extends from a radially outermost coil to the outlet opening.
16. The vehicle exhaust system according to claim 15 including an inlet tube extending outward of the housing from the inlet opening and an outlet tube extending outward of the housing from the outlet opening, and wherein the inlet end of the distribution pipe is in fluid communication with the inlet tube and the outlet end of the distribution pipe is in fluid communication with the outlet tube.
17. The vehicle exhaust system according to claim 16 wherein the inlet and outlet tubes are fluidly connected to a fluid supply of the reduction fluid, and wherein the inlet tube and outlet tube are immediately adjacent to each other on one side of the housing such that the inlet and outlet tubes extend parallel to each other at the inlet and outlet openings.
18. A method comprising: providing an outer housing that defines an exhaust gas flow path, wherein the outer housing includes an inlet opening and an outlet opening; associating an inlet end of a distribution pipe with the inlet opening; associating an outlet end of the distribution pipe with the outlet opening, wherein the distribution pipe comprises a fluid flow path that is coiled about a center of the exhaust gas flow path; and forming a plurality of orifices in the distribution pipe along the fluid flow path such that reduction fluid enters through the inlet end and is directly introduced into the exhaust gas flow path via the plurality of orifices with any remaining fluid exiting the outlet end.
19. The method according to claim 18 wherein coils of the fluid flow path have an increasing radius about the center of the exhaust gas flow path, and including extending one of the inlet and outlet ends of the distribution pipe from the inlet opening toward the center of the exhaust gas flow path and to a radially innermost coil, and extending the other of the inlet and outlet ends of the distribution pipe from a radially outermost coil to the outlet opening.
20. The method according to claim 18 including extending an inlet tube outward of the outer housing from the inlet opening and extending an outlet tube outward of the outer housing from the outlet opening, and fluidly connecting the inlet and outlet tubes to a fluid supply of the reduction fluid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION
[0029] A vehicle exhaust system 10 includes an engine 12 that generates exhaust gases that are conveyed through various upstream exhaust components 14. The upstream exhaust components 14 can include components such as pipes and exhaust aftertreatment components such as particulate filters, catalysts, etc. In one example configuration, the upstream exhaust components 14 are connected to a mixer 16 that is used to direct a mixture of reduction fluid and engine exhaust gases into a downstream exhaust aftertreatment component 18 such as a catalyst substrate 24, e.g. a SCR substrate, for example. Downstream of the exhaust aftertreatment component 18 there may be various additional downstream exhaust components 20. The various downstream exhaust components 20 can include one or more of pipes, mufflers, resonators, etc. The downstream exhaust components 20 direct the exhaust gases to an outlet to atmosphere via a tailpipe 22. These upstream 14 and downstream 20 components can be mounted in various different configurations and combinations dependent upon the type of application and available packaging space.
[0030] The mixer 16 includes an outer housing 30 that has an internal open cavity 32 that defines an exhaust gas flow path F. In one example, the outer housing 30 comprises a pipe or a tube. In the example shown, the pipe or tube has a circular cross-section. A fluid supply 34 is used to supply a NOx reduction fluid such as urea, NH3 carbonate, or any reduction gas or liquid that is a solution of urea and water, for example, directly into the exhaust gas flow path such that the fluid can mix with the exhaust gas prior to entering the exhaust aftertreatment component 18. A distribution pipe 36 is in fluid communication with the fluid supply 34 to directly introduce the fluid into the exhaust gas flow path.
[0031] The outer housing 30 has a center axis A and defines the exhaust gas flow path F as shown in
[0032] In one example, coils 48 of the distribution pipe 36 that form the fluid flow path have an increasing radius about the center of the exhaust gas flow path F. In one example, the coils 48 are substantially circular.
[0033] In one example, as shown in
[0034] As shown in
[0035] As shown in
[0036] The subject invention provides a direct spray system with a distribution pipe 36 to spray NOx reduction liquid or gas into the exhaust gas stream. The subject invention comprises a configuration that simplifies reduction fluid mixing so that there is no surface impingement prior to introduction of the mixture of fluid and exhaust gas into the SCR catalyst. Thus, this eliminates deposit formation and reduces exhaust backpressure.
[0037] Although an embodiment of this invention has been disclosed, a worker of ordinary skill in this art would recognize that certain modifications would come within the scope of this invention. For that reason, the following claims should be studied to determine the true scope and content of this invention.