most citedA generalized lattice Boltzmann model for flow through tight porous media with Klinkenberg's effect

127 citations · 127 across the 1 of their papers we have counts for

collaborators

5 papers

physics.geo-ph2024

Developing a Foundation Model for Predicting Material Failure

Agnese Marcato, Javier E. Santos, Aleksandra Pachalieva +10

Understanding material failure is critical for designing stronger and lighter structures by identifying weaknesses that could be mitigated. Existing full-physics numerical simulati…

physics.geo-ph20232 cited

PySimFrac: A Python Library for Synthetic Fracture Generation, Analysis, and Simulation

Eric Guiltinan, Javier E. Santos, Prakash Purswani +1

In this paper, we introduce Pysimfrac, a open-source python library for generating 3-D synthetic fracture realizations, integrating with fluid simulators, and performing analysis.…

physics.geo-ph2023

Characterizing the impacts of multi-scale heterogeneity on solute transport in fracture networks

Matthew R. Sweeney, Jeffrey D. Hyman, Daniel O'Malley +4

We model flow and transport in three-dimensional fracture networks with varying degrees of fracture-to-fracture aperture/permeability heterogeneity and network density to show how…

cs.CE2023

Impact of artificial topological changes on flow and transport through fractured media due to mesh resolution

Aleksandra A. Pachalieva, Matthew R. Sweeney, Hari Viswanathan +3

We performed a set of numerical simulations to characterize the interplay of fracture network topology, upscaling, and mesh refinement on flow and transport properties in fractured…

physics.flu-dyn2014127 cited

A generalized lattice Boltzmann model for flow through tight porous media with Klinkenberg's effect

Li Chen, Wenzhen Fang, Qinjun Kang +3

Gas slippage occurs when the mean free path of the gas molecules is in the order of the characteristic pore size of a porous medium. This phenomenon leads to the Klinkenberg's effe…