Publications

Leon Keim, and Holger Class. Replication Code for: Rayleigh invariance allows the estimation of effective CO2 fluxes due to convective dissolution into water-filled fractures. 2024. [PUMA: darus edit mult ubs_10002 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Leon Keim, and Holger Class. Replication Data for: Rayleigh invariance allows the estimation of effective CO2 fluxes due to convective dissolution into water-filled fractures. 2024. [PUMA: darus edit mult ubs_10002 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of medium column (sample 3). 2022. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Mathis Kelm, Carina Bringedal, and Bernd Flemisch. Replication Data for phase-field contributions in level-set comparison study. 2023. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of low column (sample 10). 2022. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of high column (sample 4). 2022. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Felix Weinhardt, Holger Class, Samaneh Vahid Dastjerdi, Nikolaos Karadimitriou, Dongwon Lee, and Holger Steeb. Optical Microscopy and pressure measurements of Enzymatically Induced Calcite Precipitation (EICP) in a microfluidic cell. 2021. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Sebastian Schulz, Carina Bringedal, and Sina Ackermann. Code for relative permeabilities for two-phase flow between parallel plates with slip conditions. 2021. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 ubs_40041 unibibliografie]

Samaneh Vahid Dastjerdi, Holger Steeb, Matthias Ruf, Dongwon Lee, Felix Weinhardt, Nikolaos Karadimitriou, and Holger Class. micro-XRCT dataset of Enzymatically Induced Calcite Precipitation (EICP) in a microfluidic cell. 2021. [PUMA: darus edit mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Felix Weinhardt, Jingxuan Deng, Holger Steeb, and Holger Class. Optical Microscopy and log data of Enzymatically Induced Calcite Precipitation (EICP) in microfluidic cells (Quasi-2D-structure). 2022. [PUMA: darus edit mult ubs_10002 ubs_10018 ubs_10021 ubs_20002 ubs_20019 ubs_20023 ubs_30024 ubs_30028 ubs_30165 ubs_30201 ubs_40040 ubs_40399 unibibliografie]

Jun Chen, Gerasimos Chourdakis, Ishaan Desai, Carme Homs Pons, Benjamin Rodenberg, David Schneider, Frédéric Simonis, Benjamin Uekermann, Kyle Davis, Alexander Jaust, Mathis Kelm, Niklas Kotarsky, Helena Kschidock, Durganshu Mishra, Markus Mühlhäußer, Timo Pierre Schrader, Miriam Schulte, Valentin Seitz, Joseph Signorelli, Gertjan van Zwieten, Niklas Vinnitchenko, Tina Vladimirova, Leonard Willeke, and Elia Zonta. preCICE Distribution Version v2404.0. 2024. [PUMA: darus mult ubs_10002 ubs_10005 ubs_20002 ubs_20008 ubs_30028 ubs_30082 ubs_40040 ubs_40116 ubs_40427 unibibliografie]

Wietse M. Boon, Dennis Gläser, Rainer Helmig, Kilian Weishaupt, and 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_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Melanie Lipp. Data for: Capturing local details in fluid-flow simulations: options, challenges and applications using marker-and-cell schemes. 2024. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Leon Keim, and Holger Class. Replication Code for: Rayleigh invariance allows the estimation of effective CO2 fluxes due to convective dissolution into water-filled fractures. 2024. [PUMA: darus mult ubs_10002 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Leon Keim, and Holger Class. Replication Data for: Rayleigh invariance allows the estimation of effective CO2 fluxes due to convective dissolution into water-filled fractures. 2024. [PUMA: darus mult ubs_10002 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Costanza Aricò, Rainer Helmig, Daniele Puleo, and 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: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Elisabeth Nißler, Samuel Scherrer, Holger Class, Tanja Müller, Mark Hermannspan, Esad Osmancevic, and Claus Haslauer. Heat transport from atmosphere through the subsurface to drinking-water supply pipes. Vadose zone journal, (22)6:270-286, Wiley, 2023. [PUMA: mult oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 ubs_40465 unibibliografie wos]

Hanchuan Wu, Maziar Veyskarami, Martin Schneider, and 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 hybrid oa oafonds transform ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Ruben Bauer, Quynh Ngo, Guido Reina, Steffen Frey, Bernd Flemisch, Helwig Hauser, Thomas Ertl, and Michael Sedlmair. Visual Ensemble Analysis of Fluid Flow in Porous Media Across Simulation Codes and Experiment. Transport in porous media, 1-29, Springer, 2023. [PUMA: f2023 hybrid mult oa oafonds transform ubs_10002 ubs_10005 ubs_10017 ubs_20002 ubs_20008 ubs_20036 ubs_30028 ubs_30086 ubs_40040 ubs_40388 ubs_40460 unibibliografie]

Maziar Veyskarami. Coupled free-flow-porous media flow processes including drop formation. Mitteilungen / Institut für Wasser- und Umweltsystemmodellierung, Universität Stuttgart, 303Eigenverlag des Instituts für Wasser- und Umweltsystemmodellierung der Universität Stuttgart, Stuttgart, 2023. [PUMA: diss oa phsimtech ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Stefanie Kiemle, Jana Schneider, and Katharina Heck. Replication data for analyzing stable water isotopologue transport within soils using fractionation parameterizations. 2024. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20018 ubs_30028 ubs_30196 ubs_40040 unibibliografie]

Andrea Schnepf, Christopher K. Black, Valentin Couvreur, Benjamin M. Delory, Claude Doussan, Adrien Heymans, Mathieu Javaux, Deepanshu Khare, Axelle Koch, Timo Koch, Christian W. Kuppe, Magdalena Landl, Daniel Leitner, Guillaume Lobet, Félicien Meunier, Johannes A. Postma, Ernst D. Schäfer, Tobias Selzner, Jan Vanderborght, and Harry Vereecken. Collaborative benchmarking of functional-structural root architecture models : Quantitative comparison of simulated root water uptake. In silico plants, (5)1:diad005, Oxford University Press, 2023. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Dongwon Lee, Felix Weinhardt, Johannes Hommel, Joseph Piotrowski, Holger Class, and Holger Steeb. Machine learning assists in increasing the time resolution of X-ray computed tomography applied to mineral precipitation in porous media. Scientific reports, (13)1:10529, Nature Publishing Group, 2023. [PUMA: f2023 gold mult oa oafonds transform ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie wos]

Bernd Flemisch, Holger Class, Dennis Gläser, and et. al. The FluidFlower Validation Benchmark Study for the Storage of CO2. Transport in porous media, 1-48, Springer, 2023. [PUMA: f2023 hybrid oa oafonds transform ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Maziar Veyskarami, Cynthia Michalkowski, Carina Bringedal, and Rainer Helmig. Publisher Correction: Droplet Formation, Growth and Detachment at the Interface of a Coupled Free‑FLow–Porous Medium System : A New Model Development and Comparison. Transport in porous media, (149)2:421, Springer, 2023. [PUMA: errata oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Farid Mohammadi, Elissa Eggenweiler, Bernd Flemisch, Sergey Oladyshkin, Iryna Rybak, Martin Schneider, and Kilian Weishaupt. A surrogate-assisted uncertainty-aware Bayesian validation framework and its application to coupling free flow and porous-medium flow. Computational geosciences, (27)4:663-686, Springer, 2023. [PUMA: f2023 hybrid mult oa oafonds transform ubs_10002 ubs_10008 ubs_20002 ubs_20013 ubs_30028 ubs_30123 ubs_40040 ubs_40041 ubs_40190 unibibliografie wos]

Ivan Buntic, Edward Coltman, Bernd Flemisch, Tufan Ghosh, Dennis Gläser, Christoph Grüninger, Johannes Hommel, Leon Keim, Mathis Kelm, Timo Koch, Anna Mareike Kostelecky, Melanie Lipp, Hamza Oukili, Martin Schneider, Martin Utz, Yue Wang, Kilian Weishaupt, Kai Wendel, Roman Winter, and Hanchuan Wu. DuMux 3.8.0. 2023. [PUMA: darus ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Martin Schneider, Dennis Gläser, Kilian Weishaupt, Edward Coltman, Bernd Flemisch, and Rainer Helmig. Coupling staggered-grid and vertex-centered finite-volume methods for coupled porous-medium free-flow problems. Journal of computational physics, (482):112042, Elsevier, 2023. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Maziar Veyskarami, Cynthia Michaelkowski, Carina Bringedal, and Rainer Helmig. Droplet Formation, Growth and Detachment at the Interface of a Coupled Free-FLow-Porous Medium System : A New Model Development and Comparison. Transport in porous media, (149):389-419, Springer, 2023. [PUMA: f2023 hybrid oa oafonds transform ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Rebecca Kohlhaas, Ilja Kröker, Sergey Oladyshkin, and Wolfgang Nowak. Gaussian active learning on multi-resolution arbitrary polynomial chaos emulator: concept for bias correction, assessment of surrogate reliability and its application to the carbon dioxide benchmark. Computational geosciences, (27):369-389, Springer, 2023. [PUMA: f2023 hybrid mult oa oafonds transform ubs_10002 ubs_20002 ubs_30028 ubs_40040 ubs_40041 unibibliografie]

Bernd Flemisch, Sibylle Hermann, Christian Holm, Miriam Mehl, Guido Reina, Benjamin Uekermann, David Boehringer, Thomas Ertl, Jean-Noël Grad, Dorothea Iglezakis, Alexander Jaust, Timo Koch, Anett Seeland, Rudolf Weeber, Florian Weik, and Kilian Weishaupt. Umgang mit Forschungssoftware an der Universität Stuttgart. Stuttgart, 2020. [PUMA: abgleich mult ubs_10002 ubs_10005 ubs_10008 ubs_10013 ubs_20002 ubs_20008 ubs_20014 ubs_20021 ubs_20022 ubs_30028 ubs_30082 ubs_30086 ubs_30136 ubs_30167 ubs_40040 ubs_40129 ubs_40216 ubs_40427 unibibliografie]

Tobias Thomas Köppl. Multi-scale modeling of flow and transport processes in arterial networks and tissue. München, 2015. [PUMA: fis hp ubs_10002 ubs_20002 ubs_30028 ubs_40040] URL

Stefanie Kiemle, Katharina Heck, Edward Coltman, and Rainer Helmig. Stable Water Isotopologue Fractionation During Soil-Water Evaporation : Analysis Using a Coupled Soil-Atmosphere Model. Water resources research, (59)2:e2022WR032385, Wiley, 2023. [PUMA: f2023 hybrid oa oafonds transform ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Dennis Gläser. Dumux Code for flux-mortar method with mpfa. 2023. [PUMA: darus ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Dennis Gläser. Results for flux-mortar method with mpfa. 2023. [PUMA: darus ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Hamza Oukili, Sina Ackermann, Ivan Buntic, Holger Class, Edward Coltman, Bernd Flemisch, Tufan Ghosh, Dennis Gläser, Christoph Grüninger, Johannes Hommel, Tim Jupe, Leon Keim, Mathis Kelm, Stefanie Kiemle, Timo Koch, Anna Mareike Kostelecky, Harsha Vardhan Pallam, Martin Schneider, Leopold Stadler, Martin Utz, Yue Wang, Kai Wendel, Roman Winter, and Hanchuan Wu. DuMux 3.7.0. 2023. [PUMA: darus ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Holger Class, Leon Keim, Larissa Schirmer, Bettina Strauch, Kai Wendel, and Martin Zimmer. Seasonal Dynamics of Gaseous CO2 Concentrations in a Karst Cave Correspond with Aqueous Concentrations in a Stagnant Water Column. Geosciences, (13)2:51, MDPI, 2023. [PUMA: f2023 gold oa oafonds ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Carina Bringedal. Multiscale modeling and simulation of transport processes in porous media. Stuttgart, 2022. [PUMA: habil oa phsimtech ubs_10002 ubs_20002 ubs_30028 ubs_40040 ubs_40041 unibibliografie]

Dirk Scheer, Holger Class, and Bernd Flemisch. Subsurface Environmental Modelling Between Science and Policy. Advances in Geophysical and Environmental Mechanics and Mathematics, Springer, 2021. [PUMA: abgleich ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Johannes Hommel, Luca Gehring, Felix Weinhardt, Matthias Ruf, and Holger Steeb. Effects of Enzymatically Induced Carbonate Precipitation on Capillary Pressure-Saturation Relations. Minerals, (12)10:1186, MDPI, 2022. [PUMA: mult oa ubs_10002 ubs_20002 ubs_30024 ubs_30028 ubs_40040 ubs_40399 unibibliografie wos]

Navid Ahmadi, Muhammad Muniruzzaman, Riccardo Sprocati, Katharina Heck, Klaus Mosthaf, and Massimo Rolle. Coupling soil/atmosphere interactions and geochemical processes : A multiphase and multicomponent reactive transport approach. Advances in water resources, (169)November:104303, Elsevier, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Anis Younes, Hussein Hoteit, Rainer Helmig, and Marwan Fahs. A robust upwind mixed hybrid finite element method for transport in variably saturated porous media. Hydrology and earth system sciences, (26)20:5227-5239, Copernicus Publications, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Mathis Kelm, Carina Bringedal, and Bernd Flemisch. Replication Data for phase-field contributions in level-set comparison study. 2023. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie]

Leon Keim, Holger Class, Larissa Schirmer, Bettina Strauch, Kai Wendel, and Martin Zimmer. Code for: Seasonal Dynamics of Gaseous CO2 Concentrations in a Karst Cave Correspond With Aqueous Concentrations in a Stagnant Water Column. 2023. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Leon Keim, Holger Class, Larissa Schirmer, Kai Wendel, Bettina Strauch, and Martin Zimmer. Data for: Measurement Campaign of Gaseous CO2 Concentrations in a Karst Cave with Aqueous Concentrations in a Stagnant Water Column 2021-2022.. 2023. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Dongwon Lee, Felix Weinhardt, Johannes Hommel, Holger Class, and Holger Steeb. Time resolved micro-XRCT dataset of Enzymatically Induced Calcite Precipitation (EICP) in sintered glass bead columns. 2023. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30024 ubs_30028 ubs_30201 ubs_40040 ubs_40399 unibibliografie]

Wenkang Wang, Adrián Lozano-Durán, Rainer Helmig, and Xu Chu. Spatial and spectral characteristics of information flux between turbulent boundary layers and porous media. Journal of fluid mechanics, (516)1:126464, Cambridge University Press, 2022. [PUMA: mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 unibibliografie wos]

Dennis Gläser, Anett Seeland, Katharina Schulze, and Samuel Burbulla. Verification benchmarks for single-phase flow in three-dimensional fractured porous media: DuMuX source code. 2023. [PUMA: darus mult ubs_10002 ubs_10013 ubs_20002 ubs_20022 ubs_30028 ubs_40040 unibibliografie]

Avihai Tsinober, Ravid Rosenzweig, Holger Class, Rainer Helmig, and Uri Shavit. The Role of Mixed Convection and Hydrodynamic Dispersion During CO2 Dissolution in Saline Aquifers : A Numerical Study. Water resources research, (58)3:e2021WR030494, Wiley, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Cynthia Michalkowski, Maziar Veyskarami, Carina Bringedal, Rainer Helmig, and Veronika Schleper. Two-phase Flow Dynamics at the Interface Between GDL and Gas Distributor Channel Using a Pore-Network Model. Transport in porous media, (144)2:429-458, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Mathis Kelm, Sina Ackermann, Ivan Buntic, Edward Coltman, Bernd Flemisch, Dennis Gläser, Christoph Grüninger, Katharina Heck, Johannes Hommel, Leon Keim, Stefanie Kiemle, Timo Koch, Melanie Lipp, Martin Schneider, Theresa Schollenberger, Leopold Stadler, Martin Utz, Maziar Veyskarami, Yue Wang, Kai Wendel, David Werner, and Hanchuan Wu. DuMux 3.6.0. 2023. [PUMA: darus ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie]

Mathis Kelm, Stephan Gärttner, Carina Bringedal, Bernd Flemisch, Peter Knabner, and Nadja Ray. Comparison study of phase-field and level-set method for three-phase systems including two minerals. Computational geosciences, (26)3:545-570, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Johannes Eller, Tim Sauerborn, Beatrix Becker, Ivan Buntic, Joachim Groß, and Rainer Helmig. Modeling Subsurface Hydrogen Storage With Transport Properties From Entropy Scaling Using the PC-SAFT Equation of State. Water resources research, (58)4:e2021WR030885, Wiley, 2022. [PUMA: mult oa ubs_10002 ubs_10004 ubs_20002 ubs_20005 ubs_30028 ubs_30058 ubs_40040 ubs_40084 unibibliografie wos]

Marc Ohmer, Artur Klester, Alexander Kissinger, Stefan Mirbach, Holger Class, Martin Schneider, Martin Lindenlaub, Michael Bauer, Tanja Liesch, Kathrin Menberg, and Philipp Blum. Erratum zu: Berechnung von Temperaturfahnen im Grundwasser mit analytischen und numerischen Modellen. Grundwasser, (27)2:149–150, Springer, 2022. [PUMA: errata oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Carina Bringedal, Theresa Schollenberger, G. J. M. Pieters, C. J. van Duijn, and Rainer Helmig. Evaporation-Driven Density Instabilities in Saturated Porous Media. Transport in porous media, (143)2:297–341, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Po-Wei Huang, Bernd Flemisch, Chao-Zhong Qin, Martin O. Saar, and Anozie Ebigbo. Correction to: Relating Darcy-Scale Chemical Reaction Order to Pore-Scale Spatial Heterogeneity. Transport in porous media, (144)2:545-546, Springer, 2022. [PUMA: errata oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Po-Wei Huang, Bernd Flemisch, Chao-Zhong Qin, Martin O. Saar, and Anozie Ebigbo. Relating Darcy-Scale Chemical Reaction Order to Pore-Scale Spatial Heterogeneity. Transport in porous media, (144)2:507-543, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Anis Younes, Hussein Hoteit, Rainer Helmig, and Marwan Fahs. A robust fully mixed finite element model for flow and transport in unsaturated fractured porous media. Advances in water resources, (166)August:104259, Elsevier, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Timo Koch. Projection-based resolved interface 1D-3D mixed-dimension method for embedded tubular network systems. Computers and mathematics with applications, (109):15-29, Elsevier, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Cynthia Michalkowski, Kilian Weishaupt, Veronika Schleper, and Rainer Helmig. Modeling of Two Phase Flow in a Hydrophobic Porous Medium Interacting with a Hydrophilic Structure. Transport in porous media, (144)2:481-506, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Wietse M. Boon, Dennis Gläser, Rainer Helmig, and Ivan Yotov. Flux-Mortar Mixed Finite Element Methods on NonMatching Grids. SIAM journal on numerical analysis, (60)3:1193-1225, Society for Industrial and Applied Mathematics, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Felix Weinhardt, Jingxuan Deng, Johannes Hommel, Samaneh Vahid Dastjerdi, Robin Gerlach, Holger Steeb, and Holger Class. Spatiotemporal Distribution of Precipitates and Mineral Phase Transition During Biomineralization Affect Porosity-Permeability Relationships. Transport in porous media, (143)2:527-549, Springer, 2022. [PUMA: mult ubs_10002 ubs_20002 ubs_30024 ubs_30028 ubs_40040 ubs_40399 unibibliografie wos]

Tufan Ghosh, Yashwanth Kumar Gujjala, Debasis Deb, and G. P. Raja Sekhar. Numerical investigation of spontaneous imbibition in an anisotropic reservoir. Geomechanics and geophysics for geo-energy and geo-resources, (8)3:100, Springer, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Marc Ohmer, Artur Klester, Alexander Kissinger, Stefan Mirbach, Holger Class, Martin Schneider, Martin Lindenlaub, Michael Bauer, Tanja Liesch, Kathrin Menberg, and Philipp Blum. Berechnung von Temperaturfahnen im Grundwasser mit analytischen und numerischen Modellen. Grundwasser, (27)2:113-129, Springer, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Timo Koch, Hanchuan Wu, and Martin Schneider. Nonlinear mixed-dimension model for embedded tubular networks with application to root water uptake. Journal of computational physics, (450):110823, Elsevier, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Xu Chu, Guang Yang, Alexandros Terzis, Visakh Vaikuntanathan, Wenkang Wang, Zhouhang Li, Grazia Lamanna, Stephanie Fest-Santini, Maurizio Santini, Gianpietro Elvio Cossali, Phillip Ligrani, Bassam A. Younis, Michael Crawford, Peter Ott, Jürgen Köhler, Christian Rohde, Claus-Dieter Munz, Rainer Helmig, and Tianshou Zhao. Celebration of Professor Bernhard Weigand on his 60th birthday. International journal of heat and mass transfer, (188):122626, Elsevier, 2022. [PUMA: mult ubs_10002 ubs_10006 ubs_10008 ubs_10021 ubs_20002 ubs_20010 ubs_20013 ubs_20019 ubs_30028 ubs_30091 ubs_30098 ubs_30123 ubs_30165 ubs_40040 ubs_40137 ubs_40153 ubs_40190 unibibliografie wos]

Beatrix Becker, Bo Guo, Ivan Buntic, Bernd Flemisch, and Rainer Helmig. An Adaptive Hybrid Vertical Equilibrium/Full-Dimensional Model for Compositional Multiphase Flow. Water resources research, (58)1:e2021WR030990, Wiley, 2022. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Johannes Hommel, and Felix Weinhardt. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - microfluidics samples. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30024 ubs_30028 ubs_30201 ubs_40040 ubs_40399 unibibliografie]

Johannes Hommel, and Luca Gehring. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - column samples. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Stefanie Kiemle, and Katharina Heck. Dumux code for modelling stable water isotopologue transport and fractionation. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Stefanie Kiemle, and Katharina Heck. Data set for reproducing plots showing stable water isotopologue transport and fractionation. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Wenkang Wang, Guang Yang, Cenk Evrim, Alexandros Terzis, Rainer Helmig, and Xu Chu. An assessment of turbulence transportation near regular and random permeable interfaces. Physics of fluids, (33)11:115103, American Institute of Physics, 2021. [PUMA: mult sent ubs_10002 ubs_10004 ubs_10006 ubs_10021 ubs_20002 ubs_20004 ubs_20010 ubs_20019 ubs_30028 ubs_30046 ubs_30098 ubs_30165 ubs_40040 unibibliografie]

Léo Agélas, Martin Schneider, Guillaume Enchéry, and Bernd Flemisch. Convergence of nonlinear finite volume schemes for two-phase porous media flow on general meshes. IMA journal of numerical analysis, (42)2:515-568, Oxford University Press, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Holger Class, Pascal Bürkle, Tim Sauerborn, Oliver Trötschler, Bettina Strauch, and Martin Zimmer. On the Role of Density-Driven Dissolution of CO2 in Phreatic Karst Systems. Water resources research, (57)12:e2021WR030912, Wiley, 2021. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Dennis Gläser, Martin Schneider, Bernd Flemisch, and Rainer Helmig. Comparison of cell- and vertex-centered finite-volume schemes for flow in fractured porous media. Journal of computational physics, (448):110715, Elsevier, 2022. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Leon Kloker, and Carina Bringedal. Code for: Solution approaches for evaporation-driven density instabilities in a slab of saturated porous media. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 ubs_40041 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of low column (sample 10). 2022. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of medium column (sample 3). 2022. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Matthias Ruf, Johannes Hommel, and Holger Steeb. Enzymatically induced carbonate precipitation and its effect on capillary pressure-saturation relations of porous media - micro-XRCT dataset of high column (sample 4). 2022. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Kilian Weishaupt, and 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: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Felix Weinhardt, Jingxuan Deng, Holger Steeb, and Holger Class. Optical Microscopy and log data of Enzymatically Induced Calcite Precipitation (EICP) in microfluidic cells (Quasi-2D-structure). 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_10021 ubs_20002 ubs_20019 ubs_20023 ubs_30024 ubs_30028 ubs_30165 ubs_30201 ubs_40040 ubs_40399 unibibliografie]

Holger Class, Pascal Bürkle, Oliver Trötschler, Martin Zimmer, and Bettina Strauch. Data for: On the role of density-driven dissolution of CO2 in karstification. 2021. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Samaneh Vahid Dastjerdi, Holger Steeb, Matthias Ruf, Dongwon Lee, Felix Weinhardt, Nikolaos Karadimitriou, and Holger Class. micro-XRCT dataset of Enzymatically Induced Calcite Precipitation (EICP) in a microfluidic cell. 2021. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Felix Weinhardt, Holger Class, Samaneh Vahid Dastjerdi, Nikolaos Karadimitriou, Dongwon Lee, and Holger Steeb. Optical Microscopy and pressure measurements of Enzymatically Induced Calcite Precipitation (EICP) in a microfluidic cell. 2021. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30024 ubs_30028 ubs_30165 ubs_40040 ubs_40399 unibibliografie]

Theresa Schollenberger, and Rainer Helmig. Replication Data for the numerical simulations in: Evaporation-driven density instabilities in saturated porous media. 2022. [PUMA: darus mult ubs_10002 ubs_10018 ubs_20002 ubs_20023 ubs_30028 ubs_30201 ubs_40040 unibibliografie]

Sabina Haber-Pohlmeier, David Caterina, Bernhard Blümich, and Andreas Pohlmeier. Magnetic Resonance Imaging of Water Content and Flow Processes in Natural Soils by Pulse Sequences with Ultrashort Detection. Molecules, (26)17:5130, MDPI, 2021. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Kilian Weishaupt, T. Koch, and 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_10002 ubs_20002 ubs_30028 ubs_40040 wos unibibliografie]

Bo Gao, Edward Coltman, John Farnsworth, Rainer Helmig, and Kathleen M. Smits. Determination of Vapor and Momentum Roughness Lengths Above an Undulating Soil Surface Based on PIV-Measured Velocity Profiles. Water Resources Research, (57)7:e2021WR029578, Wiley, 2021. [PUMA: oa sent ubs_10002 ubs_20002 ubs_30028 ubs_40040]

Wenkang Wang, Xu Chu, Adrián Lozano-Durán, Rainer Helmig, and Bernhard Weigand. Information transfer between turbulent boundary layers and porous media. Journal of Fluid Mechanics, (920):A21, Cambridge University Press, 2021. [PUMA: mult oa sent ubs_10002 ubs_10006 ubs_10021 ubs_20002 ubs_20010 ubs_20019 ubs_30028 ubs_30098 ubs_30165 ubs_40040 ubs_40153]

Felix Weinhardt, Holger Class, Samaneh Vahid Dastjerdi, Nikolaos Karadimitriou, Dongwon Lee, and Holger Steeb. Experimental Methods and Imaging for Enzymatically Induced Calcite Precipitation in a Microfluidic Cell. Water resources research, (57)3:e2020WR029361, Wiley, 2021. [PUMA: mult oa ubs_10002 ubs_20002 ubs_30024 ubs_30028 ubs_40040 ubs_40399 unibibliografie wos]

Arndt Wagner, Elissa Eggenweiler, Felix Weinhardt, Zubin Mukundbhai Trivedi, David Krach, Christoph Lohrmann, Kartik Jain, Nikolaos Karadimitriou, Carina Bringedal, Paul Voland, Christian Holm, Holger Class, Holger Steeb, and Iryna Rybak. Permeability Estimation of Regular Porous Structures : A Benchmark for Comparison of Methods. Transport in porous media, (138)1:1-23, Springer, 2021. [PUMA: mult oa ubs_10002 ubs_10008 ubs_20002 ubs_20013 ubs_20014 ubs_30028 ubs_30123 ubs_30136 ubs_30190 ubs_40040 ubs_40041 ubs_40190 ubs_40216 ubs_40393 unibibliografie wos]

Navid Ahmadi, Katharina Heck, Massimo Rolle, Rainer Helmig, and Klaus Mosthaf. On multicomponent gas diffusion and coupling concepts for porous media and free flow : a benchmark study. Computational geosciences, (25)5:1493-1507, Springer, 2021. [PUMA: ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

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

Anneli Guthke, Amin E. Bakhshipour, Felipe de Barros, Holger Class, James E. Daniell, Ulrich Dittmer, Jannik Haas, Markus Friedrich, Cordula Kropp, Bruno Merz, Sergey Oladyshkin, Andreas M. Schäfer, Michael Sinsbeck, Daniel Straub, Kristina Terheiden, Silke Wieprecht, and Wolfgang Nowak. A unified framework for quantitative interdisciplinary flood risk assessment. American Geophysical Union, Fall Meeting 2020, H177-01, Smithsonian Astrophysical Observatory, 2020. [PUMA: liste mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 ubs_40041 unibibliografie] URL

Jana Schneider, Jannis Groh, Thomas Pütz, Rainer Helmig, Youri Rothfuss, Harry Vereecken, and Jan Vanderborght. Prediction of soil evaporation measured with weighable lysimeters using the FAO Penman-Monteith method in combination with Richards’ equation. Vadose zone journal, (20)1:e20102, Wiley, 2021. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Lars Freiherr von Wolff, Felix Weinhardt, Holger Class, Johannes Hommel, and Christian Rohde. Investigation of Crystal Growth in Enzymatically Induced Calcite Precipitation by Micro-Fluidic Experimental Methods and Comparison with Mathematical Modeling. Transport in porous media, (137)2:327-343, Springer Nature, 2021. [PUMA: mult oa ubs_10002 ubs_10008 ubs_20002 ubs_20013 ubs_30028 ubs_30123 ubs_40040 ubs_40190 unibibliografie wos]

Kata Kurgyis, Johannes Hommel, Bernd Flemisch, Rainer Helmig, and Holger Ott. Explicit continuum scale modeling of low-salinity mechanisms. Journal of petroleum science and engineering, (199)April:108336, Elsevier, 2021. [PUMA: oa ubs_10002 ubs_20002 ubs_30028 ubs_40040 unibibliografie wos]

Stefania Scheurer, Aline Schäfer Rodrigues Silva, Farid Mohammadi, Johannes Hommel, Sergey Oladyshkin, Bernd Flemisch, and Wolfgang Nowak. Surrogate-based Bayesian comparison of computationally expensive models : application to microbially induced calcite precipitation. Computational geosciences, (25)6:1899-1917, Springer Nature, 2021. [PUMA: liste mult oa ubs_10002 ubs_10005 ubs_20002 ubs_20008 ubs_30028 ubs_30082 ubs_40040 ubs_40041 ubs_40349 unibibliografie]

Sebastian Schulz, Carina Bringedal, and Sina Ackermann. Code for relative permeabilities for two-phase flow between parallel plates with slip conditions. 2021. [PUMA: darus mult ubs_10002 ubs_10021 ubs_20002 ubs_20019 ubs_30028 ubs_30165 ubs_40040 ubs_40041 unibibliografie]

Alexander Jaust, Kilian Weishaupt, Bernd Flemisch, and Miriam Schulte. Replication Data for: Partitioned Coupling Schemes for Free-Flow and Porous-Media Applications with Sharp Interfaces. 2021. [PUMA: darus mult ubs_10002 ubs_10005 ubs_10018 ubs_20002 ubs_20008 ubs_20023 ubs_30028 ubs_30082 ubs_30201 ubs_40040 ubs_40116 unibibliografie]