Micro-nano scale confined flow characteristics and mechanism in tight reservoir: Insights from experimental and molecular simulation studies
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Elsevier BV
Reference104 articles.
1. Molecular simulation of water in carbon nanotubes;Alexiadis;Chem. Rev.,2008
2. Effect of confinement on the dynamic contact angle of hydrocarbons;Alfi;Energy Fuels,2016
3. Slip-flow regimes in nanofluidics: a universal superexponential model;Aminpour;Phys. Rev. Appl.,2021
4. Non-equilibrium molecular dynamics simulation to evaluate the effect of confinement on fluid flow in silica nanopores;Asai;Fuel,2022
5. The role of activation energy and reduced viscosity on the enhancement of water flow through carbon nanotubes;Babu;J. Chem. Phys.,2011
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