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Hussein Alihussein
Hussein Alihussein
在 irmb.tu-bs.de 的电子邮件经过验证 - 首页
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A parallel coupled lattice Boltzmann-volume of fluid framework for modeling porous media evolution
H Alihussein, M Geier, M Krafczyk
Materials 14 (10), 2510, 2021
42021
Computation of implicit representation of volumetric shells with predefined thickness
M Geier, H Alihussein
Algorithms 14 (4), 125, 2021
22021
Massively parallel simulations of chemical dissolution in porous media based on advanced lattice Boltzmann models
H Alihussein
Dissertation, Braunschweig, Technische Universität Braunschweig, 2020, 2020
22020
Direct cumulant lattice Boltzmann simulations of transitional flow in gyroidal structures including experimental validation
H Alihussein, A Prasannakumar, M Geier, M Krafczyk
Computers & Mathematics with Applications 157, 159-172, 2024
2024
A Parallel Coupled Lattice Boltzmann-Volume of Fluid Framework for Modeling Porous Media Evolution. Materials 2021, 14, 2510
H Alihussein, M Geier, M Krafczyk
s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2021
2021
Massively parallel simulations of chemical dissolution in porous media based on advanced Lattice Boltzmann models: an application to hydrated cement paste
H Alihussein, M Krafczyk
Advanced Lattice Boltzmann advection-diffusion-reaction simulations of chloride transport inside hardened cement paste micro-pores
H AliHussein, K Kutscher, M Geier, M Krafczyk
Towards realistic microscale simulation of reactive transport in cement pore space using advanced LBM
H Alihussein, M Krafczyk, K Kutscher, M Geier
A Lattice Boltzmann approach for advection-diffusion problems in porous media including dissolution
H Alihussein, M Krafczyk, K Kutscher, M Geier
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