Publications

Timo Koch, Kilian Weishaupt, Johannes Müller, Bernhard Weigand, und Rainer Helmig. A (Dual) Network Model for Heat Transfer in Porous Media. Transport in porous media, (140)1:107-141, Springer, 2021. [PUMA: ubs_20002 ubs_30098 ubs_40040 unibibliografie oa ubs_10002 ubs_10006 ubs_30028 wos mult ubs_20010 ubs_40153]

Karin Erbertseder, Johannes Reichold, Bernd Flemisch, Patrick Jenny, und Rainer Helmig. A Coupled Discrete/Continuum Model for Describing Cancer-Therapeutic Transport in the Lung. PLOS ONE, (7)3:e31966, PLOS, 2012. [PUMA: f2012 ubs_20002 ubs_40040 unibibliografie oa ubs_10002 dfg ubs_30028 oafonds]

Dennis Gläser, Rainer Helmig, Bernd Flemisch, und Holger Class. A discrete fracture model for two-phase flow in fractured porous media. Advances in water resources, (110):335-348, Elsevier, 2017. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Kilian Weishaupt, und Rainer Helmig. A Dynamic and Fully Implicit Non-Isothermal, Two-Phase, Two-Component Pore-Network Model Coupled to Single-Phase Free Flow for the Pore-Scale Description of Evaporation Processes. Water resources research, (57)4:e2020WR028772, Wiley-VCH, 2021. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 ubs_30028 wos]

Kilian Weishaupt, T. Koch, und Rainer Helmig. A fully implicit coupled pore-network/free-flow model for the pore-scale simulation of drying processes. Drying technology, (40)4:697-718, Taylor & Francis, 2022. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Kilian Weishaupt, A. Terzis, I. Zarikos, G. Yang, Bernd Flemisch, D. A. M. de Winter, und Rainer Helmig. A Hybrid-Dimensional Coupled Pore-Network/Free-Flow Model Including Pore-Scale Slip and its Application to a Micromodel Experiment. Transport in Porous Media, (135)1:243–270, Springer, 2020. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 ubs_30028 wos]

Dennis Gläser, Bernd Flemisch, Rainer Helmig, und Holger Class. A Hybrid-Dimensional Discrete Fracture Model for Non-Isothermal Two-Phase Flow in Fractured Porous Media. GEM - International Journal on Geomathematics, (10)1:5, Springer, 2019. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Tobias Köppl, Ettore Vidotto, und Barbara Wohlmuth. A local error estimate for the Poisson equation with a line source term. Numerical Mathematics and Advanced Applications - ENUMATH 2015, 112:421-429, Springer, Cham, 2016. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 hp ubs_30028]

Wietse M. Boon, Dennis Gläser, Rainer Helmig, Kilian Weishaupt, und Ivan Yotov. A mortar method for the coupled Stokes-Darcy problem using the MAC scheme for Stokes and mixed finite elements for Darcy. Computational geosciences, Springer, 2024. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Tobias Köppl, Rainer Helmig, und Barbara I. Wohlmuth. A multi-scale model for mass transport in arteries and tissue. In Miriam Mehl (Hrsg.), Recent Trends in Computational Engineering - CE2014 : Optimization, Uncertainty, Parallel Algorithms, Coupled and Complex Problems, 105:197-213, Springer, Cham, 2015. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 hp ubs_30028]

Timo Koch, Bernd Flemisch, Rainer Helmig, Roland Wiest, und Dominik Obrist. A Multiscale Subvoxel Perfusion Model to Estimate Diffusive Capillary Wall Conductivity in Multiple Sclerosis Lesions from Perfusion MRI Data. International Journal for Numerical Methods in Biomedical Engineering, (36)2:e3298, Wiley, 2019. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 ubs_30028 wos]

Timo Koch, Rainer Helmig, und Martin Schneider. A new and consistent well model for one-phase flow in anisotropic porous media using a distributed source model. Journal of Computational Physics, (410):109369, Elsevier, 2020. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Hanchuan Wu, Maziar Veyskarami, Martin Schneider, und Rainer Helmig. A New Fully Implicit Two-Phase Pore-Network Model by Utilizing Regularization Strategies. Transport in porous media, (151):1-26, Springer, 2023. [PUMA: f2023 ubs_20002 ubs_40040 unibibliografie oa ubs_10002 hybrid transform ubs_30028 oafonds]

Costanza Aricò, Rainer Helmig, Daniele Puleo, und Martin Schneider. A new numerical mesoscopic scale one-domain approach solver for free fluid/porous medium interaction. Computer methods in applied mechanics and engineering, (419):116655, Elsevier, 2024. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 ubs_30028 wos]

Martin Beck, Gabriele Seitz, Holger Class, und Rainer Helmig. A new phenomenological approach to modelling of shear failure in porous media. 2015. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 hp ubs_30028]

Timo Koch, Katharina Heck, Natalie Schröder, Holger Class, und Rainer Helmig. A new simulation framework for soil-root interaction, evaporation, root growth, and solute transport. Vadose Zone Journal, (17)1:170210, Soil Science Society of America, 2018. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 sent ubs_30028 uni f2018 sfonds]

Johannes Hommel, Arda Akyel, Zachary Frieling, Adrienne J. Phillips, Robin Gerlach, Alfred B. Cunningham, und Holger Class. A Numerical Model for Enzymatically Induced Calcium Carbonate Precipitation. Applied Sciences, (10)13:4538, MDPI, 2020. [PUMA: ubs_20002 ubs_40040 unibibliografie oa ubs_10002 dfg f2020 ubs_30028 oafonds mult]

Gabriele Seitz, Rainer Helmig, und Holger Class. A numerical modeling study on the influence of porosity changes during thermochemical heat storage. Applied Energy, (259):114152, Elsevier Science, 2020. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 ubs_30028 wos]

Beatrix Becker, Bo Guo, Karl Bandilla, Michael A. Celia, Bernd Flemisch, und Rainer Helmig. A Pseudo-Vertical Equilibrium Model for Slow Gravity Drainage Dynamics. Water Resources Research, (53)12:10491-10507, Wiley Online Library, 2017. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 sent ubs_30028]

Emna Mejri, Vishal A. Jambhekar, Rainer Helmig, und Bouhlila Rachida. A reactive transport model for the co-precipitation of Halite and Gypsum under evaporation from porous media. 2015. [PUMA: ubs_20002 ubs_40040 unibibliografie ubs_10002 hp ubs_30028]