Ivan Catton
Affiliations: | 1959-2014 | Mechanical Engineering 0330 | University of California, Los Angeles, Los Angeles, CA |
Area:
Mechanical EngineeringWebsite:
https://www.researchgate.net/profile/Ivan_CattonGoogle:
"Ivan Catton"Bio:
Parents
Sign in to add mentorDonald Kenneth Edwards | grad student | 1966 | UCLA | |
(The effect of lateral boundaries on natural convection between horizontal surfaces) |
Children
Sign in to add traineePortonovo S. Ayyaswamy | grad student | 1971 | UCLA |
S Mostafa Ghiaasiaan | grad student | 1983 | UCLA |
John G. Georgiadis | grad student | 1983-1987 | UCLA |
Mark R. Paul | grad student | 2000 | UCLA |
Stanley T. Jones | grad student | 2001 | UCLA |
John C. Mendoza | grad student | 2001 | UCLA |
Kunzhong Hu | grad student | 2002 | UCLA |
Tadej Semenic | grad student | 2007 | UCLA |
Aleksander Vadnjal | grad student | 2009 | UCLA |
David Geb | grad student | 2013 | UCLA |
Sean W. Reilly | grad student | 2013 | UCLA |
George W. DeMoulin | grad student | 2019 | UCLA |
Matevz Frajnkovic | grad student | 2017-2021 | UCLA, Samueli |
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Publications
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Gratton LJ, Travkin VS, Catton I. (2017) Morphology: Two-Temperature Statements For Convective Transport In Porous Media Journal of Enhanced Heat Transfer. 24: 183-200 |
Yao Q, Supowit J, Catton I. (2017) Investigation of the Use of an Inorganic Aqueous Solution in Copper-Made Phase-Change Heat Transfer Devices Journal of Heat Transfer-Transactions of the Asme. 140: 42901 |
Sbutega K, Catton I. (2016) Galerkin method solution of a volume-averaged model for efficient conjugate heat transfer analysis Numerical Heat Transfer, Part B: Fundamentals. 69: 1-25 |
Stubblebine MJ, Yao Q, Supowit J, et al. (2016) A new method for evaluating heat pipe fluid compatibility Applied Thermal Engineering. 101: 796-803 |
Supowit J, Heflinger T, Stubblebine M, et al. (2016) Designer fluid performance and inclination angle effects in a flat grooved heat pipe Applied Thermal Engineering. 101: 770-777 |
Sbutega K, Geb D, Catton I. (2015) Modeling of Multiscale Heat Transfer Systems Using Volume Averaging Theory Advances in Heat Transfer. 47: 1-165 |
Reilly SW, Catton I. (2014) Utilization of pore-size distributions to predict thermophysical properties and performance of biporous wick evaporators Journal of Heat Transfer. 136 |
Geb D, Catton I. (2014) Nonlocal modeling and swarm-based design of heat sinks Journal of Heat Transfer. 136 |
Catton I. (2013) In remembrance of Novak Zuber Multiphase Science and Technology. 25: 103-105 |
Sbutega K, Catton I. (2013) Efficient hydraulic and thermal analysis of heat sinks using volume averaging theory and Galerkin methods Multiphase Science and Technology. 25: 311-338 |