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Xiang Lu
Xiang Lu
RA, Thermal Process Engineering, Otto von Guericke University Magdeburg, Magdeburg, Germany
Verified email at ovgu.de
Title
Cited by
Cited by
Year
Transport parameters of macroscopic continuum model determined from discrete pore network simulations of drying porous media: Throat-node vs. throat-pore configurations
X Lu, A Kharaghani, E Tsotsas
Chemical engineering science 223, 115723, 2020
232020
The Brooks and Corey capillary pressure model revisited from pore network simulations of capillarity-controlled invasion percolation process
X Lu, A Kharaghani, H Adloo, E Tsotsas
Processes 8 (10), 1318, 2020
182020
Insights into evaporation from the surface of capillary porous media gained by discrete pore network simulations
X Lu, E Tsotsas, A Kharaghani
International journal of heat and mass transfer 168, 120877, 2021
92021
Drying of capillary porous media simulated by coupling of continuum-scale and micro-scale models
X Lu, E Tsotsas, A Kharaghani
International Journal of Multiphase Flow 140, 103654, 2021
72021
Scale transition: Pore network study of how pore structure affects the macroscopic parameters of the continuum model for drying
X Lu, E Tsotsas, A Kharaghani
Drying Technology 41 (6), 948-967, 2023
32023
NeuroPNM: Model reduction of pore network models using neural networks
R Jendersie, A Mjalled, X Lu, L Reineking, A Kharaghani, M Mönnigmann, ...
Particuology 86, 239-251, 2024
22024
A Continuum Approach to the Drying of Small Pore Networks
X Lu, E Tsotsas, A Kharaghani
Mass Transfer Driven Evaporation From Capillary Porous Media, 155-192, 2022
2022
Dependency of continuum model parameters on the spatially correlated pore structure studied by pore-network drying simulations
X Lu, A Kharaghani, E Tsotsas
IDS 2018. 21st International Drying Symposium Proceedings, 307-314, 2018
2018
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