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Featured researches published by Michael Andrie.


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2015

Effect of Particle Size Distribution on the Deep-Bed Capture Efficiency of an Exhaust Particulate Filter

Sandeep Viswanathan; David Rothamer; Stephen Sakai; Mitchell Hageman; David E. Foster; Todd D. Fansler; Michael Andrie

The exhaust filtration analysis system (EFA) developed at the University of Wisconsin – Madison was used to perform micro-scale filtration experiments on cordierite filter samples using particulate matter (PM) generated by a spark-ignition direct injection (SIDI) engine fueled with gasoline. A scanning mobility particle sizer (SMPS) was used to characterize running conditions with four distinct particle size distributions (PSDs). The distributions selected differed in the relative number of accumulation versus nucleation mode particles. The SMPS and an engine exhaust particle sizer (EEPS) were used to simultaneously measure the PSD downstream of the EFA and the real-time particulate emissions from the SIDI engine to determine the evolution of filtration efficiency during filter loading. Cordierite filter samples with properties representative of diesel particulate filters (DPFs) were loaded with PM from the different engine operating conditions. The results were compared to understand the impact of particle size distribution on filtration performance as well as the role of accumulation mode particles on the diffusion capture of PM. The most penetrating particle size (MPPS) was observed to decrease as a result of particle deposition within the filter substrate. In the absence of a soot cake, the penetration of particles smaller than 70 nm was seen to gradually increase with time, potentially due to increased velocities in the filter as flow area reduces during filter loading, or due to decreasing wall area for capture of particles by diffusion. Particle re-entrainment was not observed for any of the operating conditions.Copyright


SAE International Journal of Fuels and Lubricants | 2011

Particulate Matter Sampling and Volatile Organic Compound Removal for Characterization of Spark Ignited Direct Injection Engine Emissions

Nicholas Matthias; Carrie Farron; David E. Foster; Michael Andrie; Roger Krieger; Paul M. Najt; Kushal Narayanaswamy; Arun S. Solomon; Alla Zelenyuk

More stringent emissions regulations are continually being proposed to mitigate adverse human health and environmental impacts of internal combustion engines. With that in mind, it has been proposed that vehicular particulate matter (PM) emissions should be regulated based on particle number in addition to particle mass. One aspect of this project is to study different sample handling methods for number based aerosol measurements, specifically, two different methods for removing volatile organic compounds (VOCs). One method is a thermodenuder (TD) and the other is an evaporative chamber/diluter (EvCh). These sample handling methods have been implemented in an engine test cell with a spark ignited direct injection (SIDI) engine. The engine was designed for stoichiometric, homogeneous combustion. SIDI is of particular interest for improved fuel efficiency compared to other SI engines, however, the efficiency benefit comes with greater PM emissions and may therefore be subject to the proposed number based PM regulation. Another aspect of this project is to characterize PM from this engine in terms of particle number and composition.


SAE International journal of engines | 2011

Study of High Speed Gasoline Direct Injection Compression Ignition (GDICI) Engine Operation in the LTC Regime

Youngchul Ra; Paul Loeper; Rolf D. Reitz; Michael Andrie; Roger Krieger; David E. Foster; Russ Durrett; Venkatesh Gopalakrishnan; Alejandro H. Plazas; Richard C. Peterson; Patrick G. Szymkowicz


SAE International journal of engines | 2012

Gasoline DICI Engine Operation in the LTC Regime Using Triple- Pulse Injection

Youngchul Ra; Paul Loeper; Michael Andrie; Roger Krieger; David E. Foster; Rolf D. Reitz; Russ Durrett


SAE 2010 World Congress & Exhibition | 2010

Investigation of the Effects of Cetane Number, Volatility, and Total Aromatic Content on Highly-Dilute Low Temperature Diesel Combustion

Ryan T. Butts; David E. Foster; Roger Krieger; Michael Andrie; Youngchul Ra


SAE 2012 World Congress & Exhibition | 2012

Light-Duty Reactivity Controlled Compression Ignition Combustion Using a Cetane Improver

John Kaddatz; Michael Andrie; Rolf D. Reitz; Sage L. Kokjohn


SAE International journal of engines | 2012

Analysis of Deviations from Steady State Performance During Transient Operation of a Light Duty Diesel Engine

William Glewen; David Heuwetter; David E. Foster; Michael Andrie; Roger Krieger


SAE World Congress & Exhibition | 2009

Investigation of Transient Emissions and Mixed Mode Combustion for a Light Duty Diesel Engine

Jonathan L. Burton; D. Ryan Williams; William Glewen; Michael Andrie; Roger Krieger; David E. Foster


SAE 2011 World Congress & Exhibition | 2011

Particulate Characteristics for Varying Engine Operation in a Gasoline Spark Ignited, Direct Injection Engine

Carolyn Farron; Nicholas Matthias; David E. Foster; Michael Andrie; Roger Krieger; Paul M. Najt; Kushal Narayanaswamy; Arun S. Solomon; Alla Zelenyuk


Fuel | 2013

Effects of biodiesel–gasoline blends on gasoline direct-injection compression ignition (GCI) combustion

Cory Adams; Paul Loeper; Roger Krieger; Michael Andrie; David E. Foster

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David E. Foster

University of Wisconsin-Madison

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Roger Krieger

University of Wisconsin-Madison

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Rolf D. Reitz

University of Wisconsin-Madison

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Paul Loeper

University of Wisconsin-Madison

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William Glewen

University of Wisconsin-Madison

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Youngchul Ra

University of Wisconsin-Madison

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Alla Zelenyuk

Pacific Northwest National Laboratory

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Cory Adams

University of Wisconsin-Madison

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David Heuwetter

University of Wisconsin-Madison

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