IP Library Granted Patent US 7,610,751
Granted Patent B2
US 7,610,751 · App. 11/490,910 · Granted Nov 3, 2009

Fuel injection before turbocharger

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Quick Facts
Patent No.
US 7,610,751
App. No.
11/490,910
Granted
Nov 3, 2009
Kind
B2
Abstract

One concept relates to power generation system, comprising a diesel engine, an exhaust manifold, a turbocharger, and an exhaust line in which are configured a fuel reformer and a LNT. A fuel injector is configured to inject fuel into the manifold upstream of the turbine. The high temperatures upstream of the turbine cause the fuel to crack into smaller molecules, releasing heat and providing a boost to the turbocharger. The fuel injected into the manifold also undergoes intense mixing as it passes through the turbocharger. Injecting fuel in this manner provides several benefits for reformer operation. Another concept relates to a manifold fuel injector used to provide fuel for heating a DPF.

Claims (23)

1. A power generation system, comprising:

a diesel engine, an exhaust manifold, a turbocharger, and an exhaust line configured whereby the engine is operational to produce exhaust that is released into the exhaust manifold, passes through the turbocharger, and then into the exhaust line;

a first fuel injector configured to inject fuel into the exhaust manifold upstream of the turbocharger;

a fuel reformer and a LNT configured within the exhaust line, in that order, the LNT being adapted to adsorb and store NOx under lean exhaust conditions and to reduce the stored NOx and regenerate under rich exhaust conditions; and

a controller adapted to actuate the first fuel injector in order to initiate regeneration of the LNT to remove accumulated NOx;

further comprising a second fuel injector configured to inject fuel into the exhaust line downstream of the turbocharger but upstream of the fuel reformer;

wherein the controller is configured to time the fuel injections from the first and second fuel injectors whereby the majority of the fuel injected with the first fuel injector during the LNT regeneration mixes within the exhaust line with fuel injected with the second fuel injector to form a rich mixture within the fuel reformer, whereby the fuel reformer forms reformate that regenerates the LNT.

2. A power generation system, comprising:

a diesel engine, an exhaust manifold, a turbocharger, and an exhaust line configured whereby the engine is operational to produce exhaust that is released into the exhaust manifold, passes through the turbocharger, and then into the exhaust line;

a first fuel injector configured to inject fuel into the exhaust manifold upstream of the turbocharger;

a fuel reformer and a LNT configured within the exhaust line, in that order, the LNT being adapted to adsorb and store NOx under lean exhaust conditions and to reduce the stored NOx and regenerate under rich exhaust conditions; and

a controller adapted to actuate the first fuel injector in order to initiate regeneration of the LNT to remove accumulated NOx;

further comprising a second fuel injector configured to inject fuel into the exhaust line downstream of the turbocharger but upstream of the fuel reformer;

wherein the controller is configured to time the fuel injections from the first and second fuel injectors whereby combustion of the fuel injected with the first fuel injector substantially reduces the oxygen content of the exhaust that mixes with the fuel injected by the second fuel injector, which forms a rich mixture from which the reformer produces reformate that regenerates the LNT.

3. A power generation system, comprising:

a diesel engine, an exhaust manifold, a turbocharger, and an exhaust line configured whereby the engine is operational to produce exhaust that is released into the exhaust manifold, passes through the turbocharger, and then into the exhaust line;

a first fuel injector configured to inject fuel into the exhaust manifold upstream of the turbocharger;

a fuel reformer and a LNT configured within the exhaust line, in that order, the LNT being adapted to adsorb and store NOx under lean exhaust conditions and to reduce the stored NOx and regenerate under rich exhaust conditions; and

a controller adapted to actuate the first fuel injector in order to initiate regeneration of the LNT to remove accumulated NOx;

further comprising a second fuel injector configured to inject fuel into the exhaust line downstream of the turbocharger but upstream of the fuel reformer;

wherein:

the controller is configured to implement a process of regenerating the LNT that comprises a period of heating the fuel reformer under lean exhaust conditions followed by a period of producing reformate under rich exhaust conditions; and

the controller is configured to time fuel injections from the first and second fuel injectors whereby immediately following the transition from lean to rich, the majority of fuel supplied to the fuel reformer comes from the second fuel injector, but as the rich period progresses, the proportion of fuel supplied to the fuel reformer by the first fuel injector increases.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Nov 10, 2017
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: INTERNATIONAL ENGINE INTELLECTUAL PROPERTY COMPANY, LLC; INTERNATIONAL TRUCK INTELLECTUAL PROPERTY COMPANY, LLC; NAVISTAR, INC.; NAVISTAR INTERNATIONAL CORPORATION
Reel/Frame 044416/0867 →
SECURITY AGREEMENT Recorded Sep 12, 2012
From: INTERNATIONAL ENGINE INTELLECTUAL PROPERTY COMPANY, LLC; INTERNATIONAL TRUCK INTELLECTUAL PROPERTY COMPANY, LLC; NAVISTAR INTERNATIONAL CORPORATION; NAVISTAR, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 028944/0730 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2012
From: EATON CORPORATION
To: INTERNATIONAL ENGINE INTELLECTUAL PROPERTY COMPANY, LLC
Reel/Frame 027656/0196 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2006
From: MCCARTHY, JAMES EDWARD, JR.; SHAMIS, DMITRY ARIE; GINTER, DAVID MARK
To: EATON CORPORATION
Reel/Frame 018088/0938 →