Simulating volume-controlled invasion of a non-wetting fluid in volumetric images using basic image processing tools
Author:
Funder
CANARIE
Publisher
Elsevier BV
Subject
Computers in Earth Sciences,Information Systems
Reference50 articles.
1. Validation of pore network simulations of ex-situ water distributions in a gas diffusion layer of proton exchange membrane fuel cells with X-ray tomographic images;Agaesse;J. Power Sources,2016
2. Prediction of capillary hysteresis in a porous material using lattice-Boltzmann methods and comparison to experimental data and a morphological pore network model;Ahrenholz;Adv. Water Resour., Quantitative links between porous media structures and flow behavior across scales,2008
3. Nano-scale experimental investigation of in-situ wettability and spontaneous imbibition in ultra-tight reservoir rocks;Akbarabadi;Adv. Water Resour.,2017
4. Imaging and image-based fluid transport modeling at the pore scale in geological materials: a practical introduction to the current state-of-the-art;Bultreys;Earth Sci. Rev.,2016
5. TauFactor: an open-source application for calculating tortuosity factors from tomographic data;Cooper;SoftwareX,2016
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