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[HTML][HTML] Review of pore network modelling of porous media: Experimental characterisations, network constructions and applications to reactive transport
Pore network models have been applied widely for simulating a variety of different physical
and chemical processes, including phase exchange, non-Newtonian displacement, non …
and chemical processes, including phase exchange, non-Newtonian displacement, non …
Pore-network modeling of flow in shale nanopores: Network structure, flow principles, and computational algorithms
Hydrocarbons in subsurface nanoporous media, such as shale, are promising energy
resources to compensate for the shortage of conventional reservoirs. Pore-network …
resources to compensate for the shortage of conventional reservoirs. Pore-network …
Imaging and image-based fluid transport modeling at the pore scale in geological materials: A practical introduction to the current state-of-the-art
Fluid flow and mass transport in geological materials are crucial in diverse Earth science
applications. To fully understand the behavior of geological materials in this context, the …
applications. To fully understand the behavior of geological materials in this context, the …
Connecting theory and simulation with experiment for the study of diffusion in nanoporous solids
Nanoporous solids are ubiquitous in chemical, energy, and environmental processes, where
controlled transport of molecules through the pores plays a crucial role. They are used as …
controlled transport of molecules through the pores plays a crucial role. They are used as …
Multiphase lattice Boltzmann simulations for porous media applications: A review
Over the last two decades, lattice Boltzmann methods have become an increasingly popular
tool to compute the flow in complex geometries such as porous media. In addition to single …
tool to compute the flow in complex geometries such as porous media. In addition to single …
Biogeochemical redox processes and their impact on contaminant dynamics
Life and element cycling on Earth is directly related to electron transfer (or redox) reactions.
An understanding of biogeochemical redox processes is crucial for predicting and protecting …
An understanding of biogeochemical redox processes is crucial for predicting and protecting …
A comprehensive review of pore scale modeling methodologies for multiphase flow in porous media
Multiphase flow in porous media is relevant to amount of engineering processes, such as
hydrocarbon extraction from reservoir rock, water contamination, CO2 geological storage …
hydrocarbon extraction from reservoir rock, water contamination, CO2 geological storage …
[HTML][HTML] Bottom-up design of porous electrodes by combining a genetic algorithm and a pore network model
The microstructure of porous electrodes determines multiple performance-defining
properties, such as the available reactive surface area, mass transfer rates, and hydraulic …
properties, such as the available reactive surface area, mass transfer rates, and hydraulic …
A perspective on applied geochemistry in porous media: Reactive transport modeling of geochemical dynamics and the interplay with flow phenomena and physical …
In many practical geochemical systems that are at the center of providing indispensable
energy, resources and service to our society,(bio) geochemical reactions are coupled with …
energy, resources and service to our society,(bio) geochemical reactions are coupled with …
Micro/nano-pore network analysis of gas flow in shale matrix
The gas flow in shale matrix is of great research interests for optimized shale gas extraction.
The gas flow in the nano-scale pore may fall in flow regimes such as viscous flow, slip flow …
The gas flow in the nano-scale pore may fall in flow regimes such as viscous flow, slip flow …