Zhen Li 李振
Zhen Li 李振
Assistant Professor of Mechanical Engineering, Clemson University
Verified email at clemson.edu - Homepage
TitleCited byYear
Incorporation of memory effects in coarse-grained modeling via the Mori-Zwanzig formalism
Z Li, X Bian, X Li, GE Karniadakis
The Journal of chemical physics 143 (24), 243128, 2015
752015
Construction of dissipative particle dynamics models for complex fluids via the Mori–Zwanzig formulation
Z Li, X Bian, B Caswell, GE Karniadakis
Soft Matter 10 (43), 8659-8672, 2014
682014
Energy-conserving dissipative particle dynamics with temperature-dependent properties
Z Li, YH Tang, H Lei, B Caswell, GE Karniadakis
Journal of Computational Physics 265, 113-127, 2014
552014
Three dimensional flow structures in a moving droplet on substrate: A dissipative particle dynamics study
Z Li, GH Hu, ZL Wang, YB Ma, ZW Zhou
Physics of Fluids 25 (7), 072103, 2013
522013
Computing the non-Markovian coarse-grained interactions derived from the Mori–Zwanzig formalism in molecular systems: Application to polymer melts
Z Li, HS Lee, E Darve, GE Karniadakis
The Journal of chemical physics 146 (1), 014104, 2017
462017
Multiscale universal interface: a concurrent framework for coupling heterogeneous solvers
YH Tang, S Kudo, X Bian, Z Li, GE Karniadakis
Journal of Computational Physics 297, 13-31, 2015
352015
A dissipative particle dynamics method for arbitrarily complex geometries
Z Li, X Bian, YH Tang, GE Karniadakis
Journal of Computational Physics 355, 534-547, 2018
312018
Transport dissipative particle dynamics model for mesoscopic advection-diffusion-reaction problems
Z Li, A Yazdani, A Tartakovsky, GE Karniadakis
The Journal of chemical physics 143 (1), 014101, 2015
272015
A comparative study of coarse-graining methods for polymeric fluids: Mori-Zwanzig vs. iterative Boltzmann inversion vs. stochastic parametric optimization
Z Li, X Bian, X Yang, GE Karniadakis
The Journal of chemical physics 145 (4), 044102, 2016
232016
Multi-resolution flow simulations by smoothed particle hydrodynamics via domain decomposition
X Bian, Z Li, GE Karniadakis
Journal of Computational Physics 297, 132-155, 2015
212015
GPU-accelerated red blood cells simulations with transport dissipative particle dynamics
AL Blumers, YH Tang, Z Li†, X Li, GE Karniadakis†
Computer physics communications 217, 171-179, 2017
202017
Mesoscale modeling of phase transition dynamics of thermoresponsive polymers
Z Li, YH Tang, X Li, GE Karniadakis
Chemical Communications 51 (55), 11038-11040, 2015
202015
Non-equilibrium dynamics of vesicles and micelles by self-assembly of block copolymers with double thermoresponsivity
YH Tang, Z Li, X Li, M Deng, GE Karniadakis
Macromolecules 49 (7), 2895-2903, 2016
182016
Numerical simulations of the digital microfluidic manipulation of single microparticles
C Lan, S Pal, Z Li, Y Ma
Langmuir 31 (35), 9636-9645, 2015
182015
Fluctuating hydrodynamics in periodic domains and heterogeneous adjacent multidomains: thermal equilibrium
X Bian, Z Li, M Deng, GE Karniadakis
Physical Review E 92 (5), 053302, 2015
162015
Active learning of constitutive relation from mesoscopic dynamics for macroscopic modeling of non-Newtonian flows
L Zhao, Z Li†, B Caswell, J Ouyang†, GE Karniadakis
Journal of Computational Physics 363, 116-127, 2018
142018
Self-cleaning of hydrophobic rough surfaces by coalescence-induced wetting transition
K Zhang, Z Li†, M Maxey, S Chen, GE Karniadakis
Langmuir 35 (6), 2431-2442, 2019
122019
Nature of intrinsic uncertainties in equilibrium molecular dynamics estimation of shear viscosity for simple and complex fluids
KS Kim, MH Han, C Kim, Z Li, GE Karniadakis, EK Lee
The Journal of chemical physics 149 (4), 044510, 2018
122018
cDPD: A new dissipative particle dynamics method for modeling electrokinetic phenomena at the mesoscale
M Deng, Z Li†, O Borodin, GE Karniadakis†
The Journal of Chemical Physics 145 (14), 144109, 2016
122016
Systematic parameter inference in stochastic mesoscopic modeling
H Lei, X Yang, Z Li, GE Karniadakis
Journal of Computational Physics 330, 571-593, 2017
102017
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Articles 1–20