Mixing plate as stabilizer for ammonia gas injector
09551255 ยท 2017-01-24
Assignee
Inventors
- Jeffrey R. Kelso (Fort Wayne, IN, US)
- Jason B. Arriaga (Wheaton, IL, US)
- Gregory A. Griffin (Glendale Heights, IL, US)
- Timothy Taekhoon Yoon (Northbrook, IL, US)
- Adam C. Lack (Willow Springs, IL, US)
- Navtej Singh (Lombard, IL, US)
- Ryan Andrew Wacker (Marengo, IL, US)
- Prasanna Nagabushan-Venkatesh (Lombard, IL, US)
- Jorge Prieto (Chicago, IL, US)
Cpc classification
F01N2610/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2610/1453
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N3/2066
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
F01N3/208
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F25/31331
PERFORMING OPERATIONS; TRANSPORTING
F01N3/2892
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2240/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F2025/918
PERFORMING OPERATIONS; TRANSPORTING
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
F01N1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A system for mixing ammonia (reductant) with engine exhaust includes an exhaust flow created by a vehicle engine, an ammonia feed line passing into the exhaust flow, an injector connected to the feed line and positioned within the exhaust flow, the injector having at least one port for discharging ammonia into the exhaust flow, and a mixing plate positioned within the exhaust flow downstream of the ammonia injector and stabilizing at least one of either the feed line and the injector. An aspect of the invention is to stabilize the injector by attaching the mixing plate to the feed line to provide such stability. Alternatively or additionally, the mixing plate is attached to the injector to stabilize. The feed line may even pass through the mixing plate.
Claims
1. A system for mixing a reductant with engine exhaust, the system comprising: an exhaust flow created by a vehicle engine; a reductant feed line passing into the exhaust flow; an injector connected to the feed line and positioned within the exhaust flow, the injector having at least one port for discharging reductant into the exhaust flow; and a mixing plate positioned within the exhaust flow downstream of the reductant injector and stabilizing at least one of either the feed line and the injector; wherein the mixing plate comprises: a plurality of arms each having a surface area and extending from a center of the plate; a barrier region, defined by the collective surface areas of the arms and substantially centered on the plate center, for diverting fluid flow outward; a first tier of cut-outs, each defined by an outer edge between adjacent arms; and a second tier of cut-outs, each defined by an inner edge proximate an end of each arm; wherein a distance from the center to a closest point of first tier cut-outs is a first distance and the distance from the center to a closest point of the second tier cut-outs is a second distance, the first and second distances being different, and the surface of each arm being angled relative to a plane connecting the center and an outer edge of each arm.
2. The system of claim 1, wherein the mixing plate is attached to the feed line to stabilize.
3. The system of claim 1, wherein the mixing plate is attached to the injector to stabilize.
4. The system of claim 1, wherein the mixing plate is attached to both the feed line and the injector to stabilize.
5. The system of claim 1, wherein the reductant injector is approximately centered in the exhaust flow.
6. The system of claim 5, wherein the reductant injector is approximately centered to the mixing plate.
7. The system of claim 1, wherein the feed line passes through the mixing plate.
8. The system of claim 1, wherein the number of arms on the mixing plate and the number of ports on the injector are four.
9. The system of claim 1, further comprising a sidewall housing the system, wherein the mixing plate is secured to the sidewall.
10. A system for mixing ammonia with engine exhaust, the system comprising: an exhaust flow housing for directing engine exhaust through the system; an exhaust flow created by a vehicle engine; an ammonia feed line passing through the housing into the exhaust flow; an injector connected to the feed line and positioned within the exhaust flow, the injector having at least one port for discharging ammonia into the exhaust flow; and a mixing plate positioned within the exhaust flow downstream of the ammonia injector and stabilizing at least one of either the feed line and the injector, the mixing plate comprising: a plurality of arms each having a surface area and extending from a center of the plate to attach to the housing; a barrier region, defined by the collective surface areas of the arms and substantially centered on the plate center, for diverting fluid flow outward; a first tier of cut-outs, each defined by an outer edge between adjacent arms; and a second tier of cut-outs, each defined by an inner edge proximate an end of each arm; wherein a distance from the center to a closest point of first tier cut-outs is a first distance and the distance from the center to a closest point of the second tier cut-outs is a second distance, the first and second distances being different, and the surface of each arm being angled relative to a plane connecting the center and an outer edge of each arm.
11. The system of claim 10, wherein the mixing plate is attached to the feed line to stabilize.
12. The system of claim 10, wherein the mixing plate is attached to the injector to stabilize.
13. The system of claim 10, wherein the mixing plate is attached to both the feed line and the injector to stabilize.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For the purpose of facilitating an understanding of the subject matter sought to be protected, there are illustrated in the accompanying drawings embodiments thereof, from an inspection of which, when considered in connection with the following description, the subject matter sought to be protected, its construction and operation, and many of its advantages should be readily understood and appreciated. The components in the drawings are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the invention. In the following description and throughout the numerous drawings, like reference numbers are used to designate corresponding parts.
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DETAILED DESCRIPTION
(12) With reference to
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(15) Referring to
(16) While other multi-port injector configurations are possible, the four-port cross-injector 20 shown has proven to be most effective at disbursing ammonia throughout the mixing chamber 22. The injector 20 is positioned substantially in the center of the mixing chamber 22 with the discharge ports 32 aimed in a direction perpendicular (or substantially perpendicular) to the exhaust stream flow.
(17) In an alternate embodiments shown in
(18) Another important aspect of the NOx reduction system 10, is the use of mixing plate 50. Referring to
(19) In the illustrated embodiment, the mixing plate body 52 has four arms 56 extending from the plate center 57. Each arm 56 has a surface or face 58 and is similarly angled or twisted to one side, much like a fan blade, as best shown in
(20) The cutouts 54 are considered to be two-tiered because of the distance each is from the plate center. The first tier cutouts 54A are positioned between adjacent arms 56 and extend closest to the plate center, while the second tier cutouts 54B are centered at the top of each arm 56 and are shorter. As a result, the mixing gasesi.e., exhaust gases and ammonia gasare diverted laterally before passing the plate 50 into the NPF 18. Additional cutout tiers may be used if desired. Further, while the preferred cutouts 54 are shown to be semi-circular, other shapes and sizes may be used to accomplish the desired distribution of gases within the mixing chamber 22.
(21) Another function of the mixing plate 50 is as a support for the injector 20. As shown in
(22) It should be emphasized that the above-described embodiments of the present invention, particularly, any preferred embodiments, are possible examples of implementations merely set forth for a clear understanding of the principles for the invention. Many variations and modifications may be made to the above-described embodiment(s) of the invention without substantially departing from the spirit and principles of the invention. All such modifications are intended to be included herein within the scope of this disclosure and the present invention, and protected by the following claims.