Validating the Nernst–Planck transport model under reaction-driven flow conditions using RetroPy v1.0Huang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2023Journal Article Peer-ReviewedGeoscientific Model Development 16, pp. 4767–4791Abstract ▾DOI: 10.5194/gmd-16-4767-2023Cite
Numerical studies of spontaneous imbibition in porous media: Model development and pore-scale perspectivesQin, C.-Z., Wang, X., Zhang, H., Hefny, M., Jiang, H., Tian, J., and Deng, W.2022Journal Article Peer-ReviewedJournal of Petroleum Science and Engineering 218, pp. 110961–110961Abstract ▾DOI: 10.1016/j.petrol.2022.110961Cite
Relating Darcy-Scale Chemical Reaction Order to Pore-Scale Spatial HeterogeneityHuang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2022Journal Article Peer-ReviewedTransport in Porous Media 144, pp. 507–543Abstract ▾DOI: 10.1007/s11242-022-01817-0Cite
Wetting Dynamics of Spontaneous Imbibition in Porous Media: From Pore Scale to Darcy ScaleQin, C.-Z., Wang, X., Hefny, M., Zhao, J., Chen, S., and Guo, B.2022Journal Article Peer-ReviewedGeophysical Research Letters 49Abstract ▾DOI: 10.1029/2021gl097269Cite
Image-based modeling of spontaneous imbibition in porous media by a dynamic pore network modelQin, C.-Z., Brummelen, H. V., Hefny, M., and Zhao, J.2021Journal Article Peer-ReviewedAdvances in Water Resources 152, pp. 103932–103932Abstract ▾DOI: 10.1016/j.advwatres.2021.103932Cite
Optimizing fluid(s) circulation in a CO2-based geothermal system for cost-effective electricity generationHefny, M., Setiawan, M. B., Hammed, M., Qin, C.-Z., Ebigbo, A., and Saar, M. O.2021Journal Article Peer-ReviewedAbstract ▾ URLDOI: 10.3929/ethz-b-000584323Cite
Synchrotron-based pore-network modeling of two-phase flow in Nubian Sandstone and implications for capillary trapping of carbon dioxideHefny, M., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2020Journal Article Peer-ReviewedInternational Journal of Greenhouse Gas Control 103, pp. 103164–103164Abstract ▾DOI: 10.1016/j.ijggc.2020.103164Cite
Pore‐scale network modeling of microbially induced calcium carbonate precipitation: Insight into scale dependence of biogeochemical reaction ratesQin, C.-Z., Hassanizadeh, S. M., and Ebigbo, A.2016Journal Article Peer-ReviewedWater Resources Research 52, pp. 8794–8810Abstract ▾DOI: 10.1002/2016wr019128Cite
CO2-Brine flow in Nubian Sandstone (Egypt): Pore Network Modeling using Computerized Tomography ImagingHefny, M., Qin, C.-Z., Ebigbo, A., Gostick, J., Saar, M. O., and Hammed, M.2019Presentation Peer-ReviewedETH ZurichAbstract ▾ URLDOI: 10.3929/ETHZ-B-000445810Cite
CO2-Brine flow in Nubian Sandstone, Egypt: A Pore-Network Modeling using Computerized Tomography ImagingHefny, M., Qin, C.-Z., Ebigbo, A., Gostick, J., Saar, M. O., and Hammed, M.2019PresentationTalk (Contributed) at UnknownCite
Reactive transport modeling in aqueous environments using the Nernst–Planck formulationHuang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2023OtherCite
Optimizing CO2 circulation into geothermal fields for electrical power generation - Insight from wellbore-reservoir couplingHefny, M., Qin, C.-Z., and Saar, M. O.2022OtherCite
Aspects of charge balance in modeling reactive transport of aqueous species in porous mediaHuang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2020OtherCite
Investigating Spatial Scaling Effects of Reactive Transport in Porous Media Using a Pore-Network ModelHuang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2020OtherCite
Simulation of chemically driven convection in porous media using a charge-balanced multicomponent diffusion modelHuang, P.-W., Flemisch, B., Qin, C.-Z., Saar, M. O., and Ebigbo, A.2020OtherCite
Quantitative Predictions of Two-Phase Flow Dynamics in Porous Media by the Pore-Network ModelingQin, C.-Z., Hefny, M., and Van Brummelen, E. H.2019OtherCite