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Dimitrios Papavassiliou
Dimitrios Papavassiliou
Professor of Sustainable Chemical Engineering, University of Oklahoma
Verified email at ou.edu
Title
Cited by
Cited by
Year
Review of fluid slip over superhydrophobic surfaces and its dependence on the contact angle
RS Voronov, DV Papavassiliou, LL Lee
Industrial & Engineering Chemistry Research 47 (8), 2455-2477, 2008
3312008
Liquid water can slip on a hydrophilic surface
TA Ho, DV Papavassiliou, LL Lee, A Striolo
Proceedings of the National Academy of Sciences 108 (39), 16170-16175, 2011
2772011
Scalable, eco-friendly and ultrafast solar steam generators based on one-step melamine-derived carbon sponges toward water purification
FF Gong, H Li, W Wang, J Huang, DD Xia, J Liao, M Wu, ...
Nano Energy 58, 322-330, 2019
2552019
Boundary slip and wetting properties of interfaces: Correlation of the contact angle with the slip length
RS Voronov, DV Papavassiliou, LL Lee
The Journal of chemical physics 124 (20), 2006
1942006
Carotid geometry effects on blood flow and on risk for vascular disease
KT Nguyen, CD Clark, TJ Chancellor, DV Papavassiliou
Journal of biomechanics 41 (1), 11-19, 2008
1552008
Transport of a passive scalar in a turbulent channel flow
DV Papavassiliou, TJ Hanratty
International journal of heat and mass transfer 40 (6), 1303-1311, 1997
1531997
Computational modeling of flow-induced shear stresses within 3D salt-leached porous scaffolds imaged via micro-CT
R Voronov, S VanGordon, VI Sikavitsas, DV Papavassiliou
Journal of biomechanics 43 (7), 1279-1286, 2010
1352010
Use of direct numerical simulation to study the effect of Prandtl number on temperature fields
Y Na, DV Papavassiliou, TJ Hanratty
International Journal of Heat and Fluid Flow 20 (3), 187-195, 1999
1241999
Interpretation of large-scale structures observed in a turbulent plane Couette flow
DV Papavassiliou, TJ Hanratty
International journal of heat and fluid flow 18 (1), 55-69, 1997
1171997
Numerical well model for non-Darcy flow through isotropic porous media [*] This work was supported in part by the EPA under grant# R 825207-01-1, by the State of Texas under†…
RE Ewing, RD Lazarov, SL Lyons, DV Papavassiliou, J Pasciak, G Qin
Computational Geosciences 3, 185-204, 1999
1111999
Molybdenum and tungsten disulfides-based nanocomposite films for energy storage and conversion: a review
DD Xia, F Gong, X Pei, W Wang, H Li, W Zeng, M Wu, DV Papavassiliou
Chemical Engineering Journal 348, 908-928, 2018
1092018
Unique thermal conductivity behavior of single-walled carbon nanotube− polystyrene composites
JE Peters, DV Papavassiliou, BP Grady
Macromolecules 41 (20), 7274-7277, 2008
1072008
Analysis of a melt-blowing die: comparison of CFD and experiments
HM Krutka, RL Shambaugh, DV Papavassiliou
Industrial & engineering chemistry research 41 (20), 5125-5138, 2002
1042002
Two-phase flow regime identification with a multiclassification support vector machine (SVM) model
TB Trafalis, O Oladunni, DV Papavassiliou
Industrial & engineering chemistry research 44 (12), 4414-4426, 2005
1032005
Slip length and contact angle over hydrophobic surfaces
RS Voronov, DV Papavassiliou, LL Lee
Chemical physics letters 441 (4-6), 273-276, 2007
1012007
Interfacial water on crystalline silica: a comparative molecular dynamics simulation study
TA Ho, D Argyris, DV Papavassiliou, A Striolo, LL Lee, DR Cole
Molecular Simulation 37 (03), 172-195, 2011
942011
Turbulent flow in a channel at a low Reynolds number
A GŁnther, DV Papavassiliou, MD Warholic, TJ Hanratty
Experiments in Fluids 25 (5-6), 503-511, 1998
931998
Agricultural waste-derived moisture-absorber for all-weather atmospheric water collection and electricity generation
F Gong, H Li, Q Zhou, M Wang, W Wang, Y Lv, R Xiao, DV Papavassiliou
Nano Energy 74, 104922, 2020
902020
Computational modeling of the thermal conductivity of single-walled carbon nanotube–polymer composites
HM Duong, DV Papavassiliou, KJ Mullen, S Maruyama
Nanotechnology 19 (6), 065702, 2008
842008
Effects of die geometry on the flow field of the melt-blowing process
HM Krutka, RL Shambaugh, DV Papavassiliou
Industrial & engineering chemistry research 42 (22), 5541-5553, 2003
782003
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