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Dive into the research topics where Kuen Yehliu is active.

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Featured researches published by Kuen Yehliu.


International Journal of Engine Research | 2017

Impacts of advanced diesel combustion operation on soot nanostructure and reactivity

Kuen Yehliu; Gregory K. Lilik; Randy L. Vander Wal; Chenxi Sun; André L. Boehman

Advanced diesel combustion, accomplished via a single pulse fuel injection and high levels of exhaust gas recirculation, is shown to be a path to reduce oxides of nitrogen and particulate matter simultaneously. This is well established in the literature. Less established is how well such dilute combustion processes influence soot formation and affect soot that is emitted from diesel engines under such combustion modes. This work focuses on characterization of the nanostructure and oxidative reactivity of soot generated by a light-duty turbodiesel engine operating under a dilute, low-temperature combustion process referred to as high-efficiency clean combustion. The high-efficiency clean combustion soot samples are shown to have a fullerenic nanostructure, characterized by high levels of tortuosity of the fringe layers as seen in transmission electron micrograph images and as quantified using an image processing algorithm. Thermogravimetric analysis of the high-efficiency clean combustion soot samples shows that they have higher rates of oxidation than soot samples from a conventional diesel combustion mode. The linkage between the nanostructure of the high-efficiency clean combustion soot samples and their oxidative reactivity reinforces and supports the structure–property relationship for soot that greater curvature on the soot nanostructure leads to significant increases in oxidative reactivity.


Combustion and Flame | 2011

Development of an HRTEM image analysis method to quantify carbon nanostructure

Kuen Yehliu; Randy L. Vander Wal; André L. Boehman


Combustion and Flame | 2012

Impact of fuel formulation on the nanostructure and reactivity of diesel soot

Kuen Yehliu; Randy L. Vander Wal; Octavio Armas; André L. Boehman


Fuel | 2010

Effect of alternative fuels on exhaust emissions during diesel engine operation with matched combustion phasing

Octavio Armas; Kuen Yehliu; André L. Boehman


Fuel | 2010

Emissions from different alternative diesel fuels operating with single and split fuel injection

Kuen Yehliu; André L. Boehman; Octavio Armas


Combustion and Flame | 2013

Impact of engine operating modes and combustion phasing on the reactivity of diesel soot

Kuen Yehliu; Octavio Armas; Randy L. Vander Wal; André L. Boehman


Carbon | 2011

A comparison of soot nanostructure obtained using two high resolution transmission electron microscopy image analysis algorithms

Kuen Yehliu; Randy L. Vander Wal; André L. Boehman


Unknown Journal | 2011

Impacts of ultra clean fuels on diesel soot nanostructure and reactivity

Kuen Yehliu; Randy L. Vander Wal; André L. Boehman


ACS National Meeting Book of Abstracts | 2010

Impacts of biodiesel and Fischer-Tropsch fuels on the reactivity and nanostructure of diesel soot

Kuen Yehliu; Randy L. Vander Wal; Andrão L. Boehman


Fall Meeting of the Eastern States Section of the Combustion Institute 2009 | 2009

Reactivity and nanostructure of diesel soot generated by a compression ignition engine using biodiesel, Fischer-tropsch and ultra low sulfur diesel fuels

Kuen Yehliu; Randy L. Vander Wal; André L. Boehman

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Randy L. Vander Wal

Pennsylvania State University

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Andrão L. Boehman

Pennsylvania State University

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Chenxi Sun

University of Michigan

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Gregory K. Lilik

Pennsylvania State University

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