Farzan Kazemifar

Affiliations: 
2014 University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
 2017-2019 California State University Sacramento, Sacramento, CA, United States 
 2019- Mechanical Engineering San Jose State University, San Jose, CA, United States 
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Parents

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Kenneth T. Christensen grad student 2014 UIUC
Dimitrios C. Kyritsis grad student 2009-2014 UIUC (E-Tree)
 (An experimental study of super-critical CO2 flow in pipes and porous micromodels for carbon sequestration applications)
Kenneth T. Christensen post-doc 2015-2016 Notre Dame
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Publications

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Li Y, Blois G, Kazemifar F, et al. (2019) High‐Speed Quantification of Pore‐Scale Multiphase Flow of Water and Supercritical CO2 in 2‐D Heterogeneous Porous Micromodels: Flow Regimes and Interface Dynamics Water Resources Research. 55: 3758-3779
Gerami A, Alzahid Y, Mostaghimi P, et al. (2019) Microfluidics for Porous Systems: Fabrication, Microscopy and Applications Transport in Porous Media. 130: 277-304
Li Y, Kazemifar F, Blois G, et al. (2017) Micro-PIV measurements of multiphase flow of water and liquid CO2 in 2-D heterogeneous porous micromodels Water Resources Research. 53: 6178-6196
Kazemifar F, Kyritsis DC. (2015) Near-Critical CO2 Flow Measurement and Visualization Journal of Energy Resources Technology-Transactions of the Asme. 137: 12002
Kazemifar F, Blois G, Kyritsis DC, et al. (2015) Quantifying the flow dynamics of supercritical CO2-water displacement in a 2D porous micromodel using fluorescent microscopy and microscopic PIV Advances in Water Resources
Kazemifar F, Blois G, Kyritsis DC, et al. (2015) A methodology for velocity field measurement in multiphase high-pressure flow of CO2 and water in micromodels Water Resources Research. 51: 3017-3029
Kazemifar F, Kyritsis DC. (2014) Experimental investigation of near-critical CO2 tube-flow and Joule-Thompson throttling for carbon capture and sequestration Experimental Thermal and Fluid Science. 53: 161-170
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