Greg F. Naterer
Affiliations: | 2005-2012 | Engineering and Applied Science | University of Ontario Institute of Technology |
2012-2022 | Mechanical engineering | Memorial University of Newfoundland, St. John's, Newfoundland and Labrador, Canada | |
2022- | University of Prince Edward Island, Charlottetown, Prince Edward Island, Canada |
Area:
Energy, Heat Transfer, Multiphase Flow, ThermodynamicsWebsite:
https://www.upei.ca/ovpar/aboutGoogle:
"Gregor Frank Naterer" OR "Greg F. Naterer"Bio:
https://www.mun.ca/engineering/about/our-people/greg-f-naterer/
https://scholar.google.com/citations?user=7lFJQgUAAAAJ&hl=en
https://books.google.com/books?id=7g9RAAAAYAAJ
Parents
Sign in to add mentorGerry E. Schneider | grad student | 1995 | University of Waterloo | |
(Numerical and experimental techniques for binary solid-liquid phase transition) |
Children
Sign in to add traineeSamane Ghandehariun | grad student | 2012 | University of Ontario Institute of Technology (Canada) |
Kevin Pope | grad student | 2012 | University of Ontario Institute of Technology (Canada) |
Ofelia A. Jianu | grad student | 2013 | University of Ontario Institute of Technology (Canada) |
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Publications
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Ogban PU, Naterer GF. (2020) Apparent Entropy Production Difference for Error Characterization in Numerical Heat Transfer Journal of Thermophysics and Heat Transfer. 34: 659-668 |
Farsi A, Dincer I, Naterer GF. (2020) Review and Evaluation of Clean Hydrogen Production by the Copper-Chlorine Thermochemical Cycle Journal of Cleaner Production. 123833 |
Dehghani-Sanij AR, MacLachlan S, Naterer GF, et al. (2020) Multistage cooling and freezing of a saline spherical water droplet International Journal of Thermal Sciences. 147: 106095 |
Farsi A, Dincer I, Naterer GF. (2020) Multi-objective optimization of an experimental integrated thermochemical cycle of hydrogen production with an artificial neural network International Journal of Hydrogen Energy. 45: 24355-24369 |
Farsi A, Dincer I, Naterer GF. (2020) Particle formation and heat transfer in a gas-solid hydrolysis reactor with cupric chloride conversion to copper oxychloride International Journal of Heat and Mass Transfer. 161: 120248 |
Farsi A, Dincer I, Naterer GF. (2020) Second law analysis of CuCl2 hydrolysis reaction in the Cu–Cl thermochemical cycle of hydrogen production Energy. 202: 117721 |
Hogerwaard J, Dincer I, Naterer GF. (2020) Experimental investigation and optimization of integrated photovoltaic and photoelectrochemical hydrogen generation Energy Conversion and Management. 207: 112541 |
Ogban PU, Naterer GF. (2019) Control volume finite element method for entropy generation minimization in mixed convection of nanofluids Numerical Heat Transfer Part B-Fundamentals. 75: 363-382 |
Farsi A, Kayhan Ö, Zamfirescu C, et al. (2019) Kinetic and hydrodynamic analyses of chemically reacting gas-particle flow in cupric chloride hydrolysis for the Cu-Cl cycle International Journal of Hydrogen Energy. 44: 26783-26793 |
Farsi A, Zamfirescu C, Dincer I, et al. (2019) Thermodynamic assessment of a lab-scale experimental copper-chlorine cycle for sustainable hydrogen production International Journal of Hydrogen Energy. 44: 17595-17610 |