[HTML][HTML] Williamson MHD nanofluid flow with radiation effects through slender cylinder

SU Zaman, MN Aslam, MB Riaz, A Akgul… - Results in Engineering, 2024 - Elsevier
The aim of this article is to analyze the Williamson nanofluid flow with
magnetohydrodynamics (MHD) and radiation effects through the slender cylinder. The mass …

An end-to-end approach to predict physical properties of heterogeneous porous media: Coupling deep learning and physics-based features

Y Wu, S An, P Tahmasebi, K Liu, C Lin, S Kamrava… - Fuel, 2023 - Elsevier
Digital rock physics (DRP) has become an effective tool to predict the petrophysical
properties of rocks and reveal the mass transport mechanisms in porous media. Accurate …

Upscaling hydrodynamic dispersion in non‐Newtonian fluid flow through porous media

S An, M Sahimi, V Niasar - Water Resources Research, 2022 - Wiley Online Library
Hydrodynamic dispersion in flow through porous media is an essential phenomenon in
many geosystems. While dispersion in flow of Newtonian fluids is relatively well‐understood …

X-ray tomographic micro-particle velocimetry in porous media

T Bultreys, S Van Offenwert, W Goethals, MN Boone… - Physics of …, 2022 - pubs.aip.org
Fluid flow through intricate confining geometries often exhibits complex behaviors, certainly
in porous materials, eg, in groundwater flows or the operation of filtration devices and …

Phase behavior of gas condensate in fractured-vuggy porous media based on microfluidic technology and real-time computed tomography scanning

W Jing, L Zhang, Y Zhang, BS Memon, A Li, J Zhong… - Physics of …, 2023 - pubs.aip.org
With the development of gas-condensate reservoirs, the phase behavior of gas condensate
undergoes continuous changes. The phase behavior of gas condensate in PVT cylinders is …

[HTML][HTML] Effect of shear-thinning of non-Newtonian fluid on the crossover from capillary fingering to viscous fingering in porous media

X Yang, Y Tang, M Li, C Li, M Wang, X Li, J Zhao - Physics Letters A, 2022 - Elsevier
In this study, we constructed the pore network model for simulation of non-Newtonian two-
phase flow. The pore network is initially saturated with the Ellis non-Newtonian fluid and …

Probing multiphase reactive transport interactions in the polymer electrolyte fuel cell catalyst layer degradation

N Goswami, JB Grunewald, TF Fuller, PP Mukherjee - Electrochimica Acta, 2024 - Elsevier
The multiphase, multicomponent reactive transport plays a critical role in the degradation of
the cathode catalyst layer in Polymer Electrolyte Fuel Cells. This warrants a fundamental …

Nanoparticle transport within non-Newtonian fluid flow in porous media

T Shende, D Mangal, JC Conrad, V Niasar, M Babaei - Physical Review E, 2022 - APS
Control over dispersion of nanoparticles in polymer solutions through porous media is
important for subsurface applications such as soil remediation and enhanced oil recovery …

Spatial fractional permeability and fractional thermal conductivity models of fractal porous medium

Y Chen, W Jiang, X Zhang, Y Geng, G Bai - Physics of Fluids, 2022 - pubs.aip.org
In order to describe the seepage and heat transfer problems of non-Newtonian fluids in
porous media, a spatial fractional permeability model and a fractional thermal conductivity …

Assessing rheology effects and pore space complexity in polymer flow through porous media: A pore‐scale simulation study

M Amiri, J Qajar, AQ Raeini… - Water Resources …, 2024 - Wiley Online Library
Non‐Newtonian fluid flow within porous media, exemplified by polymer remediation of
contaminated groundwater/aquifer systems, presents complex challenges due to the fluids' …