Fast Spatially Resolved Exhaust Gas Recirculation (EGR) Distribution Measurements in an Internal Combustion Engine Using Absorption Spectroscopy

Author:

Yoo Jihyung1,Prikhodko Vitaly1,Parks James E.1,Perfetto Anthony2,Geckler Sam2,Partridge William P.1

Affiliation:

1. National Transportation Research Center, Fuels, Engines, and Emissions Research Center, Oak Ridge National Laboratory, 2360 Cherahala Boulevard, Knoxville, TN 37932 USA

2. Cummins Inc. Cummins Technical Center, 1900 McKinley Avenue, Columbus, IN 47201 USA

Abstract

Exhaust gas recirculation (EGR) in internal combustion engines is an effective method of reducing NO x emissions while improving efficiency. However, insufficient mixing between fresh air and exhaust gas can lead to cycle-to-cycle and cylinder-to-cylinder nonuniform charge gas mixtures of a multi-cylinder engine, which can in turn reduce engine performance and efficiency. A sensor packaged into a compact probe was designed, built and applied to measure spatiotemporal EGR distributions in the intake manifold of an operating engine. The probe promotes the development of more efficient and higher-performance engines by resolving high-speed in situ CO2 concentration at various locations in the intake manifold. The study employed mid-infrared light sources tuned to an absorption band of CO2 near 4.3 μm, an industry standard species for determining EGR fraction. The calibrated probe was used to map spatial EGR distributions in an intake manifold with high accuracy and monitor cycle-resolved cylinder-specific EGR fluctuations at a rate of up to 1 kHz.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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