Volker Sick
Affiliations: | Mechanical Engineering | University of Michigan, Ann Arbor, Ann Arbor, MI |
Area:
Mechanical Engineering, General Engineering, Physical ChemistryWebsite:
https://me.engin.umich.edu/people/faculty/volker-sick/Google:
"Volker Sick"Bio:
https://volker-sick.engin.umich.edu/home/biography
https://www.worldcat.org/title/256238537
https://deepblue.lib.umich.edu/bitstream/handle/2027.42/86756/Sick51.pdf?sequence=1
Parents
Sign in to add mentorJürgen Wolfrum | grad student | 1992 | Universität Heidelberg (Chemistry Tree) | |
(Einsatz hochauflösender Laserspektroskopie zur quantitativen Analyse von Gegenstrom-Diffusionsflammen) |
Children
Sign in to add traineeCorey E. Weaver | grad student | 2001 | University of Michigan |
Boris D. Stojkovic | grad student | 2003 | University of Michigan |
Mong-Tung Lin | grad student | 2004 | University of Michigan |
Charles O. Funk | grad student | 2005 | University of Michigan |
Vinod K. Natarajan | grad student | 2006 | University of Michigan |
Claudia M. Fajardo | grad student | 2007 | University of Michigan |
Ali Alharbi | grad student | 2010 | University of Michigan |
Peter H. Aurora | grad student | 2010 | University of Michigan |
Alexander G. Mychkovosky | grad student | 2010 | University of Michigan |
Michael E. Cundy | grad student | 2012 | University of Michigan |
Michael J. Mosburger | grad student | 2013 | University of Michigan |
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Publications
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Medina M, Alzahrani F, Fatouraie M, et al. (2020) Mechanisms of fuel injector tip wetting and tip drying based on experimental measurements of engine-out particulate emissions from gasoline direct-injection engines: International Journal of Engine Research. 146808742091605 |
Henrion L, Gross MC, Fernandez SF, et al. (2019) Characterization of radiative heat transfer in a spark-ignition engine through high-speed experiments and simulations Oil & Gas Science and Technology – Revue D’Ifp Energies Nouvelles. 74: 61 |
Wu A, Keum S, Sick V. (2019) Large Eddy Simulations with Conjugate Heat Transfer (CHT) modeling of Internal Combustion Engines (ICEs) Oil & Gas Science and Technology – Revue D’Ifp Energies Nouvelles. 74: 51 |
Wu A, Keum S, Greene M, et al. (2019) Comparison of Near-Wall Flow and Heat Transfer of an Internal Combustion Engine Using Particle Image Velocimetry and Computational Fluid Dynamics Journal of Energy Resources Technology. 141 |
Mazacioglu A, Gross MC, Kern J, et al. (2019) Infrared borescopic characterization of corona and conventional ignition for lean/dilute combustion in heavy-duty natural-gas engines Proceedings of the Combustion Institute. 37: 4993-5001 |
Michailos S, McCord S, Sick V, et al. (2019) Dimethyl ether synthesis via captured CO2 hydrogenation within the power to liquids concept: A techno-economic assessment Energy Conversion and Management. 184: 262-276 |
Chen H, Woodward MA, Burke DT, et al. (2017) Human iris three-dimensional imaging at micron resolution by a micro-plenoptic camera. Biomedical Optics Express. 8: 4514-4522 |
Zhuang H, Sick V, Chen H. (2017) Impact of Fuel Sprays on In-Cylinder Flow Length Scales in a Spark-Ignition Direct-Injection Engine Sae International Journal of Engines. 10: 752-766 |
Chen H, Sick V. (2017) Three-Dimensional Three-Component Air Flow Visualization in a Steady-State Engine Flow Bench Using a Plenoptic Camera Sae International Journal of Engines. 10: 625-635 |
Shekhawat Y, Haworth DC, D'Adamo A, et al. (2017) An Experimental and Simulation Study of Early Flame Development in a Homogeneous-charge Spark-Ignition Engine Oil & Gas Science and Technology-Revue De L Institut Francais Du Petrole. 72: 160164 |