IP Library Patent Application 14223019
Patent Application
App. No. 14/223,019

VENTURI EGR PUMP

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Quick Facts
Patent No.
US None
App. No.
14/223,019
Abstract

An exhaust gas recirculation venturi pump for drawing an exhaust gas from an exhaust manifold of an internal combustion engine through an exhaust gas recirculation system. The exhaust gas recirculation venturi pump includes a first passageway that at least in part is configured to provide a venturi effect using the flow of an air/fuel mixture through the exhaust gas recirculation venturi pump. At least the decrease in pressure of the air/fuel mixture created by the venturi effect may draw an exhaust gas from the exhaust manifold into the exhaust gas recirculation venturi pump. Moreover, the suction provided by the venturi effect may pull the exhaust gas through an exhaust gas recirculation system, even when the exhaust gas pressure at the exhaust gas manifold is equal to or greater than the pressure of the intake charge at the intake manifold.

Claims (29)

1 . An exhaust gas recirculation venturi pump for drawing an exhaust gas from an exhaust manifold of an internal combustion engine through an exhaust gas recirculation system, the exhaust gas recirculation venturi pump comprising:

a first passageway having an inlet, the first passageway configured for the flow of an air/fuel mixture through the exhaust gas recirculation venturi pump; and

an exhaust gas passageway having an inlet and an outlet, the outlet of the exhaust gas passageway being positioned downstream of the inlet of the first passageway;

wherein the first passageway includes a venturi section that is configured to increase a flow rate, and decrease a pressure, of the air/fuel mixture in at least a portion of the first passageway to levels that provide a suction force to pull exhaust gas through at least the exhaust gas passageway and into the first passageway.

2 . The exhaust gas recirculation venturi pump of claim 1 , wherein the internal combustion engine is a natural gas spark ignited engine.

3 . The exhaust gas recirculation venturi pump of claim 2 , wherein the first passageway is in fluid communication with a compressor of a turbocharger.

4 . The exhaust gas recirculation venturi pump of claim 1 , wherein at least a portion of the first passageway is configured to mix the exhaust gas with the air/fuel mixture.

5 . An exhaust gas recirculation venturi pump comprising:

an exhaust gas passageway in fluid communication with an exhaust manifold of an internal combustion engine, the exhaust gas passageway having an inlet and an outlet; and

a first passageway in fluid communication with a compressor, the first passageway having a first section, a tapered section, and a second section, the second section having a cross sectional size that is smaller than a cross sectional size of the first section, the second section being positioned downstream of the first section, the outlet of the exhaust gas passageway being positioned in proximity to an inlet of the second section;

wherein the tapered section is configured to increase a flow rate and decrease a pressure of an air/fuel mixture flowing toward the second section to levels that provide a suction force to pull exhaust gas through at least the exhaust gas passageway and into the second section.

6 . The exhaust gas recirculation venturi pump of claim 5 , wherein the exhaust gas passageway is in fluid communication with a cooler of an exhaust gas recirculation system, the cooler being positioned upstream of the exhaust gas recirculation venturi pump.

7 . The exhaust gas recirculation venturi pump of claim 5 , wherein the internal combustion engine is a natural gas spark ignited engine.

8 . The exhaust gas recirculation venturi pump of claim 7 , wherein at least a portion of the first passageway is configured to mix the exhaust gas with the air/fuel mixture to provide an intake charge.

9 . The exhaust gas recirculation venturi pump of claim 7 , wherein the first passageway further includes a third section downstream of the second section, the third section being operably connected to a supply line for the delivery of the intake charge to an intake manifold of the internal combustion engine.

10 . A method for recirculating an exhaust gas generated by the operation of an internal combustion engine, the method comprising:

delivering a first portion of an exhaust gas to an exhaust manifold of the internal combustion engine;

elevating the pressure of an intake air by an air compressor to provide a high pressure air;

mixing the high pressure air with a fuel to provide an air/fuel mixture;

delivering the air/fuel mixture to an exhaust gas recirculation venturi pump;

decreasing the pressure of at least a portion of the delivered air/fuel mixture in the exhaust gas recirculation venturi pump to provide a suction force;

pulling, using the suction force, the first portion of the exhaust gas into the exhaust gas recirculation venturi pump;

mixing at least a portion of the air/fuel mixture and the first portion of the exhaust gas in the exhaust gas recirculation venturi pump to provide an intake charge; and

delivering the intake charge to the intake manifold.

11 . The method of claim 10 , wherein the step of mixing the high pressure air with the fuel including mixing the high pressure air and the fuel at a ratio that provides a stoichiometric air/fuel mixture.

12 . The method of claim 12 , wherein the internal combustion engine is a natural gas spark ignited engine.

13 . The method of claim 11 , further including the step of delivering a second portion of the exhaust gas to a three-way catalyst, the three-way catalyst configured to treat one or more pollutants in the second portion of the exhaust gas.

14 . The method of claim 13 , further including the step of delivering at least a portion of the second portion of the exhaust gas to a turbine of a turbocharger, the turbine being upstream of, and in fluid communication with, the three-way catalyst.

15 . The method of claim 10 , wherein the first portion of the exhaust gas in the exhaust manifold has a first pressure, and the intake charge in the intake manifold has a second pressure, the second pressure being higher than the first pressure.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Nov 10, 2017
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: NAVISTAR INTERNATIONAL CORPORATION; INTERNATIONAL TRUCK INTELLECTUAL PROPERTY COMPANY, LLC; INTERNATIONAL ENGINE INTELLECTUAL PROPERTY COMPANY, LLC
Reel/Frame 044780/0456 →
SECURITY AGREEMENT Recorded Sep 15, 2015
From: NAVISTAR INTERNATIONAL CORPORATION; INTERNATIONAL TRUCK INTELLECTUAL PROPERTY COMPANY, LLC; INTERNATIONAL ENGINE INTELLECTUAL PROPERTY COMPANY, LLC
To: JPMORGAN CHASE BANK N.A., AS COLLATERAL AGENT
Reel/Frame 036616/0243 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2014
From: SIUCHTA, GRZEGORZ; ZUKOUSKI, RUSSELL P.
To: INTERNATIONAL ENGINE INTELLECTUAL COMPANY, LLC.
Reel/Frame 032507/0216 →