Wenzhong Zhou, Ph.D.

Affiliations: 
Nuclear Engineering Purdue University, West Lafayette, IN, United States 
Area:
Nuclear Engineering, Multi-phase Flow, Fuel cell, Heat transfer
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"Wenzhong Zhou"
Mean distance: 2101.09
 

Parents

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Shripad T. Revankar grad student 2006-2010 Purdue
 (Experimental and analytical study of the effects of noncondensable gas in a tube bundle condenser.)
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Publications

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Ren S, Zhou W. (2020) Pre-CHF boiling heat transfer performance on tube bundles with or without enhanced surfaces - a review Annals of Nuclear Energy. 139: 107278
Liu R, Cai J, Zhou W. (2020) Multiphysics modeling of thorium-based fuel performance with a two-layer SiC cladding in a light water reactor Annals of Nuclear Energy. 136: 107036
Liu R, Zhou W, Cai J. (2018) Multiphysics modeling of accident tolerant fuel-cladding U3Si2-FeCrAl performance in a light water reactor Nuclear Engineering and Design. 330: 106-116
Shen P, Zhou W, Cassiaut-Louis N, et al. (2018) Corium behavior and steam explosion risks: A review of experiments Annals of Nuclear Energy. 121: 162-176
Zhou W, Zhou W. (2018) Enhanced thermal conductivity accident tolerant fuels for improved reactor safety – A comprehensive review Annals of Nuclear Energy. 119: 66-86
Zhou W, Revankar ST, Liu R, et al. (2017) Microstructure-Based Thermal Conductivity and Thermal Behavior Modeling of Nuclear Fuel UO2-BeO Heat Transfer Engineering. 39: 760-774
Liu R, Zhou W. (2017) Multiphysics modeling of novel UO2-BeO sandwich fuel performance in a light water reactor Annals of Nuclear Energy. 109: 298-309
Liu R, Prudil A, Zhou W, et al. (2016) Multiphysics coupled modeling of light water reactor fuel performance Progress in Nuclear Energy. 91: 38-48
Liu R, Zhou W, Prudil A, et al. (2016) Multiphysics modeling of UO2-SiC composite fuel performance with enhanced thermal and mechanical properties Applied Thermal Engineering. 107: 86-100
Liu R, Zhou W, Zhou W. (2016) Fully Coupled Modeling of Burnup-Dependent (U1−y , Pu y )O2−x Mixed Oxide Fast Reactor Fuel Performance Metallurgical and Materials Transactions E. 3: 18-27
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