On the applicability of connectivity metrics to rough fractures under normal stressJavanmard, H., Saar, M. O., and Vogler, D.2022Journal Article Peer-ReviewedAdvances in Water Resources 161, pp. 104122–104122Abstract ▾(Paper accepted: 2022-03-01)DOI: 10.1016/j.advwatres.2022.104122Cite
No‐Flow Fraction (NFF) Permeability Model for Rough Fractures Under Normal StressJavanmard, H., Ebigbo, A., Walsh, S. D. C., Saar, M. O., and Vogler, D.2021Journal Article Peer-ReviewedWater Resources Research 57, pp. e2020WR029080–e2020WR029080Abstract ▾(Paper accepted: 2021-03-01)DOI: 10.1029/2020wr029080Cite
Flow-through Drying during CO 2 Injection into Brine-filled Natural Fractures: A Tale of Effective Normal StressGrimm Lima, M., Javanmard, H., Vogler, D., Saar, M. O., and Kong, X.-Z.2021Journal Article Peer-ReviewedInternational Journal of Greenhouse Gas Control 109, pp. 103378–103378Abstract ▾DOI: 10.1016/j.ijggc.2021.103378Cite
Dimethyl Ether Enhanced Oil Recovery in Fractured Reservoirs and Aspects of Phase BehaviorJavanmard, H., Seyyedi, M., Jones, S. A., and Nielsen, S. M.2019Journal Article Peer-ReviewedEnergy & Fuels 33, pp. 10718–10727Abstract ▾DOI: 10.1021/acs.energyfuels.9b02600Cite
On Oil Recovery Mechanisms and Potential of DME–Brine Injection in the North Sea Chalk Oil ReservoirsJavanmard, H., Seyyedi, M., and Nielsen, S. M.2018Journal Article Peer-ReviewedIndustrial & Engineering Chemistry Research 57, pp. 15898–15908Abstract ▾DOI: 10.1021/acs.iecr.8b04278Cite
Impact of contact area on hydraulic behaviour of rough fractures under normal stressJavanmard, H.2020OtherCite
Effect of flow-path tortuosity and contact area fraction on permeability of a rough rock fractureJavanmard, H., Vogler, D., Ebigbo, A., and Saar, M. O.2019OtherCite
Hydro-mechanical processes in a single rough fracture: effect of fracture geometryJavanmard, H., Vogler, D., Ebigbo, A., and Saar, M. O.2019OtherCite