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Dive into the research topics where Barrett Mangold is active.

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Featured researches published by Barrett Mangold.


International Journal of Engine Research | 2011

Cooled exhaust-gas recirculation for fuel economy and emissions improvement in gasoline engines:

Terry Alger; Jess W. Gingrich; Charles E. Roberts; Barrett Mangold

Modern gasoline engines face fuel-efficiency challenges due to inherent limitations including knock, pumping losses, and fuel enrichment. The addition of exhaust-gas recirculation (EGR) has been shown to improve the fuel consumption of gasoline engines, either port fuel injected or direct injected, by reducing pumping losses and knock and eliminating the enrichment region. In addition, the use of EGR has been shown to substantially reduce emissions of nitrogen oxides (NO x ) and CO. A 2.4-litre multi-point injection engine and a 1.6-litre gasoline direct injection engine were run with high levels of both cooled and uncooled EGR. Unlike numerous previous publications, these engines included a modified ignition system that allows extension of the cooled EGR limit of the engine to greater than 25 per cent and improves combustion at lower EGR levels. The results showed that an improvement of between 5 and 30 per cent in fuel consumption is possible, with the largest improvement occurring in the typical enrichment region. In addition, the results showed that EGR can reduce knock, resulting in an improvement in combustion phasing. Finally, the high levels of EGR reduced the emissions of CO by 30 per cent and of NO x by up to 80 per cent. A detailed effort has been made to quantify the sources of improvement throughout the engine cycle and to demonstrate an EGR strategy (cooled EGR at high loads, internal EGR at low loads) that will maximize fuel consumption improvements. The results presented here indicate that the use of EGR in gasoline engines has the potential to reduce fuel consumption and emissions in a very cost-effective manner.


SAE International journal of engines | 2009

Dedicated EGR: A New Concept in High Efficiency Engines

Terry Alger; Barrett Mangold


Archive | 2008

EGR SYSTEM WITH DEDICATED EGR CYLINDERS

Francis Alger Ii Terrence; Barrett Mangold; Jess W. Gingrich; Darius Mehta


SAE International journal of engines | 2011

A Continuous Discharge Ignition System for EGR Limit Extension in SI Engines

Terrence Alger; Jess W. Gingrich; Barrett Mangold; Charles E. Roberts


SAE World Congress & Exhibition | 2007

The Effect of Hydrogen Enrichment on EGR Tolerance in Spark Ignited Engines

Terry Alger; Jess W. Gingrich; Barrett Mangold


Archive | 2011

Dedicated EGR control strategy for improved EGR distribution and engine performance

Jess W. Gingrich; Barrett Mangold; Steven H. Almaraz


SAE 2013 World Congress & Exhibition | 2013

A High-Energy Continuous Discharge Ignition System for Dilute Engine Applications

Terrence Alger; Jess W. Gingrich; Charles E. Roberts; Barrett Mangold; Mark C. Sellnau


SAE International Journal of Fuels and Lubricants | 2010

The Role of EGR in PM Emissions from Gasoline Engines

Terrence Alger; Jess W. Gingrich; Imad A. Khalek; Barrett Mangold


SAE International journal of engines | 2012

The Interaction of Fuel Anti-Knock Index and Cooled EGR on Engine Performance and Efficiency

Terrence Alger; Barrett Mangold; Charles E. Roberts; Jess W. Gingrich


SAE International journal of engines | 2014

Advanced Ignition Systems Evaluations for High-Dilution SI Engines

Thomas Briggs; Terrence Alger; Barrett Mangold

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Jess W. Gingrich

Southwest Research Institute

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Terrence Alger

Southwest Research Institute

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Charles E. Roberts

Southwest Research Institute

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Terry Alger

Southwest Research Institute

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Ii Terrence F. Alger

Southwest Research Institute

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Raphael Gukelberger

Southwest Research Institute

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Darius Mehta

Southwest Research Institute

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Christopher Chadwell

Southwest Research Institute

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Christopher Wray

Southwest Research Institute

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