Single phase flow simulation in porous media by physical-informed Unet network based on lattice Boltzmann method
Author:
Funder
Khalifa University
Florida State University
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference36 articles.
1. Prediction of porous media fluid flow using physics informed neural networks;Almajid;J. Pet. Sci. Eng.,2022
2. Machine learning for predicting properties of porous media from 2d X-ray images;Alqahtani;J. Pet. Sci. Eng.,2020
3. Flow-Based Characterization of Digital Rock Images Using Deep Learning;Alqahtani;SPE J.,2021
4. Super-Resolved Segmentation of X-ray Images of Carbonate Rocks Using Deep Learning;Alqahtani;Transp. Porous Media,2022
5. Ar Rushood, I., N. Alqahtani, Y. D. Wang, M. Shabaninejad, R. Armstrong & P. Mostaghimi. 2020. Segmentation of X-Ray Images of Rocks Using Deep Learning. In SPE Annual Technical Conference and Exhibition, Virtual, October 2020. SPE-201282-MS.
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1. Numerical modeling of multiphase flow in porous media considering micro- and nanoscale effects: A comprehensive review;Gas Science and Engineering;2024-09
2. The Lattice Boltzmann Method and Image Processing Techniques for Effective Parameter Estimation of Digital Rock;Applied Sciences;2024-08-25
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