Moran Wang
Moran Wang
Professor of Fluid Mechanics and Thermophysics, Tsinghua University
Verified email at - Homepage
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Predictions of effective physical properties of complex multiphase materials
M Wang, N Pan
Materials Science and Engineering: R: Reports 63 (1), 1-30, 2008
Electrospun nanomaterials for ultrasensitive sensors
B Ding, M Wang, X Wang, J Yu, G Sun
Materials today 13 (11), 16-27, 2010
Mesoscopic predictions of the effective thermal conductivity for microscale random porous media
M Wang, J Wang, N Pan, S Chen
Physical Review E—Statistical, Nonlinear, and Soft Matter Physics 75 (3 …, 2007
Electro-spinning/netting: A strategy for the fabrication of three-dimensional polymer nano-fiber/nets
X Wang, B Ding, G Sun, M Wang, J Yu
Progress in materials science 58 (8), 1173-1243, 2013
Gas sensors based on electrospun nanofibers
B Ding, M Wang, J Yu, G Sun
Sensors 9 (3), 1609-1624, 2009
Engineering biomimetic superhydrophobic surfaces of electrospun nanomaterials
X Wang, B Ding, J Yu, M Wang
Nano today 6 (5), 510-530, 2011
A lattice Boltzmann algorithm for fluid–solid conjugate heat transfer
J Wang, M Wang, Z Li
International journal of thermal sciences 46 (3), 228-234, 2007
Modeling and prediction of the effective thermal conductivity of random open-cell porous foams
M Wang, N Pan
International Journal of Heat and Mass Transfer 51 (5-6), 1325-1331, 2008
Simulations for gas flows in microgeometries using the direct simulation Monte Carlo method
M Wang, Z Li
International Journal of Heat and Fluid Flow 25 (6), 975-985, 2004
Optimization principles for convective heat transfer
Q Chen, M Wang, N Pan, ZY Guo
Energy 34 (9), 1199-1206, 2009
Thermal conductivity enhancement of carbon fiber composites
M Wang, Q Kang, N Pan
Applied Thermal Engineering 29 (2-3), 418-421, 2009
Phonon hydrodynamics and its applications in nanoscale heat transport
Y Guo, M Wang
Physics Reports 595, 1-44, 2015
Fabrication of biomimetic superhydrophobic surfaces inspired by lotus leaf and silver ragwort leaf
J Lin, Y Cai, X Wang, B Ding, J Yu, M Wang
Nanoscale 3 (3), 1258-1262, 2011
Lattice Boltzmann modeling of the effective thermal conductivity for fibrous materials
M Wang, J He, J Yu, N Pan
International journal of thermal sciences 46 (9), 848-855, 2007
A highly sensitive humidity sensor based on a nanofibrous membrane coated quartz crystal microbalance
X Wang, B Ding, J Yu, M Wang, F Pan
Nanotechnology 21 (5), 055502, 2009
Lattice Poisson–Boltzmann simulations of electro-osmotic flows in microchannels
J Wang, M Wang, Z Li
Journal of colloid and interface science 296 (2), 729-736, 2006
Non-Fourier heat conductions in nanomaterials
M Wang, N Yang, ZY Guo
Journal of Applied Physics 110 (6), 2011
Amphiphobic nanofibrous silica mats with flexible and high-heat-resistant properties
M Guo, B Ding, X Li, X Wang, J Yu, M Wang
The Journal of Physical Chemistry C 114 (2), 916-921, 2010
Modeling electrokinetic flows in microchannels using coupled lattice Boltzmann methods
M Wang, Q Kang
Journal of Computational Physics 229 (3), 728-744, 2010
Electroosmosis in homogeneously charged micro-and nanoscale random porous media
M Wang, S Chen
Journal of Colloid and Interface Science 314 (1), 264-273, 2007
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