Publications

Matthias Ruf, Dongwon Lee, und Holger Steeb. A multifunctional mechanical testing stage for micro x-ray computed tomography. Review of Scientific Instruments, (94)82023. [PUMA: mib mib_ls2 mib_ls2_STE969_13_1 mib_ls2_pml mib_ls2_pml_xrct mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown] URL

H. Gao, A. B. Tatomir, N. K. Karadimitriou, H. Steeb, und M. Sauter. Effect of Pore Space Stagnant Zones on Interphase Mass Transfer in Porous Media, for Two-Phase Flow Conditions. Transport in Porous Media, 10.11.2022. [PUMA: mib mib_ls2 mib_ls2_exc2075_PN1_PN1_1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown] URL

H. Gao, A. B. Tatomir, N. K. Karadimitriou, H. Steeb, und M. Sauter. Effect of Pore Space Stagnant Zones on Interphase Mass Transfer in Porous Media, for Two-Phase Flow Conditions. Transport in Porous Media, 10.11.2022. [PUMA: myown mib from:hsteeb mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb mib_ls2_sfb1313 mib_ls2 mib_ls2_exc2075_PN1_PN1_1_4] URL

H. Gao, A. B. Tatomir, N. K. Karadimitriou, H. Steeb, und M. Sauter. Effect of Pore Space Stagnant Zones on Interphase Mass Transfer in Porous Media, for Two-Phase Flow Conditions. Transport in Porous Media, 10.11.2022. [PUMA: myown mib from:hsteeb mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb mib_ls2_sfb1313 mib_ls2 mib_ls2_exc2075_PN1_PN1_1_4] URL

Dongwon Lee, Nikolaos Karadimitriou, Matthias Ruf, und Holger Steeb. Detecting micro fractures: a comprehensive comparison of conventional and machine-learning-based segmentation methods. Solid Earth, (13):1475--1494, 2022. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

Felix Weinhardt, Jingxuan Deng, Johannes Hommel, Samaneh Vahid Dastjerdi, Robin Gerlach, Holger Steeb, und Holger Class. Spatiotemporal Distribution of Precipitates and Mineral Phase Transition During Biomineralization Affect Porosity--Permeability Relationships. Transport in Porous Media, (143)2:527--549, 2022. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B_B05 mib_ls2_sfb1313_b mib_ls2_steeb myown]

Matthias Ruf, Kianoosh Taghizadeh, und Holger Steeb. Multi-scale characterization of granular media by~in~situ~laboratory X-ray computed tomography. GAMM-Mitteilungen, e202200011, 2022. [PUMA: mib mib_ls2 mib_ls2_SFB1313 mib_ls2_SPP1897 mib_ls2_STE969_13_1 mib_ls2_sfb1313_B mib_ls2_sfb1313_b05 mib_ls2_steeb myown]

Ana Gonzalez-Nicolas, Deborah Bilgic, Ilja Kröker, Assem Mayar, Luca Trevisan, Holger Steeb, Silke Wieprecht, und Wolfgang Nowak. Optimal Exposure Time in Gamma-Ray Attenuation Experiments for Monitoring Time-Dependent Densities. Transport in Porous Media, (143)2:463-496, 2022. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

Patrick Schmidt, Alexander Jaust, Holger Steeb, und Miriam Schulte. Simulation of flow in deformable fractures using a quasi-Newton based partitioned coupling approach. Computational Geosciences, (26)2:381--400, 2022. [PUMA: mib_ls2 mib_ls2_SFB1313_B_B05 mib_ls2_geomint mib_ls2_sfb1313_B mib_ls2_steeb myown]

Y. Chen, H. Steeb, H.E. Gahrooei, N. Karadimitriou, M. Walczak, M. Ruf, D. Lee, S. An, S. Hasan, T. Connolley, N.T. Vo, und V. Niasar. Non-Uniqueness of Hydrodynamic Dispersion Revealed using Fast 4D Synchrotron X-ray Imaging. Science Advances, (7):eabj0960, 2021. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

H. Gao, A.B. Tatomir, N.K. Karadimitriou, H. Steeb, und M. Sauter. Effects of surface roughness on the kinetic interface-sensitive tracer transport during drainage processes. Advances in Water Resources, (157):104044, 2021. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

F. Weinhardt, H. Class, S. Vahid Dastjerdi, N. Karadimitriou, D. Lee, und H. Steeb. Experimental Methods and Imaging for Enzymatically Induced Calcite Precipitation in a Microfluidic Cell. Water Resources Research, (57)3:e2020WR029361, 2021. [PUMA: myown mib from:hsteeb mib_ls2_sfb1313_C mib_ls2_exc2075_PN1 mib_ls2_sfb1313_B mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313_B_B05 mib_ls2_steeb mib_ls2_sfb1313 mib_ls2 mib_ls2_sfb1313_C_C05 mib_ls2_exc2075]

H. Steeb, und J. Renner. Mechanics of Poro-Elastic Media: A Review with Emphasis on Foundational State Variables. Transport in Porous Media, (120)2:437-461, 2019. [PUMA: myown mib from:hsteeb mib_ls2_steeb mib_ls2 mib_ls2_SFB1313 mib_ls2_SFB1313_B mib_ls2_SFB1313_B_B05]

P. Schmidt, H. Steeb, und J. Renner. Investigations into the opening of fractures during hydraulic testing using a hybrid-dimensional flow formulation. Environmental Earth Sciences, (80):497, 2021. [PUMA: mib mib_ls2 mib_ls2_geomint mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

P. Schmidt, N. Dutler, und H. Steeb. Importance of fracture deformation throughout hydraulic testing under in situ conditions. Geophysical Journal International, (228):493-509, 2021. [PUMA: mib mib_ls2 mib_ls2_geomint mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

A. Yiotis, N. K. Karadimitriou, I. Zarikos, und H. Steeb. Pore-scale effects during the transition from capillary- to viscosity-dominated flow dynamics within microfluidic porous-like domains. Scientific Reports, (11)1:3891, 2021. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_sfb1313_C mib_ls2_sfb1313_C_C05 mib_ls2_steeb myown myownsend:unibibliosend:unibiblio]

F. Weinhardt, H. Class, S. Vahid Dastjerdi, N. Karadimitriou, D. Lee, und H. Steeb. Experimental Methods and Imaging for Enzymatically Induced Calcite Precipitation in a Microfluidic Cell. Water Resources Research, (57)3:e2020WR029361, 2021. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_sfb1313_C mib_ls2_sfb1313_C_C05 mib_ls2_steeb myown]

Arndt Wagner, Elissa Eggenweiler, Felix Weinhardt, Zubin Trivedi, David Krach, Christoph Lohrmann, Kartik Jain, Nikolaos Karadimitriou, Carina Bringedal, Paul Voland, Christian Holm, Holger Class, Holger Steeb, und Iryna Rybak. Permeability Estimation of Regular Porous Structures: A Benchmark for Comparison of Methods. Transport in Porous Media, (138):1-23, 2021. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_sfb1313_C mib_ls2_sfb1313_C_C05 mib_ls2_steeb myown]

H. Gao, A. B. Tatomir, N. K. Karadimitriou, H. Steeb, und M. Sauter. A Two-Phase, Pore-Scale Reactive Transport Model for the Kinetic Interface-Sensitive Tracer. Water Resources Research, (57)6:e2020WR028572, 2021. [PUMA: mib mib_ls2 mib_ls2_ mib_ls2_STE969_17_1 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

Martin Balcewicz, Mirko Siegert, Marcel Gurris, Matthias Ruf, David Krach, Holger Steeb, und Erik H. Saenger. Digital Rock Physics: A Geological Driven Workflow for the Segmentation of Anisotropic Ruhr Sandstone. Frontiers in Earth Science, (9):673753, 2021. [PUMA: mib mib_ls2 mib_ls2_STE969_13_1 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]

S. Hasan, V. Niasar, N.K. Karadimitriou, J.R.A. Godinho, N.T. Vo, S. An, A. Rabbani, und H. Steeb. Direct characterization of solute transport in unsaturated porous media using fast X-ray synchrotron microtomography. Proceedings of the National Academy of Sciences, (September 22):202011716, 2020. [PUMA: mib mib_ls2 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_4 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown myownsend:unibibliosend:unibiblio]

M. Ruf, und H. Steeb. An open, modular, and flexible micro X-ray computed tomography system for research. Review of Scientific Instruments, (91)11:113102, 2020. [PUMA: mib mib_ls2 mib_ls2_SFB1313 mib_ls2_SFB1313B_B05 mib_ls2_SFB1313_B mib_ls2_STE969_13_1 mib_ls2_steeb myown]

N.K. Karadimitriou, H. Mahani, H. Steeb, und V. Niasar. Nonmonotonic Effects of Salinity on Wettability Alteration and Two-Phase Flow Dynamics in PDMS Micromodels. Water Resources Research, (55)11:9826--9837, 2019. [PUMA: mib mib_ls2 mib_ls2_SFB1313 mib_ls2_SFB1313_B mib_ls2_SFB1313_B_B05 mib_ls2_steeb myown]

H. Steeb, und J. Renner. Mechanics of Poro-Elastic Media: A Review with Emphasis on Foundational State Variables. Transport in Porous Media, (120)2:437-461, 2019. [PUMA: mib mib_ls2 mib_ls2_SFB1313 mib_ls2_SFB1313_B mib_ls2_SFB1313_B_B05 mib_ls2_SFB1313_C mib_ls2_SFB1313_C_C05 mib_ls2_exc2075 mib_ls2_exc2075_PN1 mib_ls2_exc2075_PN1_PN1_1_4 mib_ls2_steeb myown]

H. Zhang, S. Frey, H. Steeb, D. Uribe, T. Ertl, und W. Wang. Visualization of Bubble Formation in Porous Media. IEEE Transactions on Visualization and Computer Graphics, (25)1:1060-1069, 2019. [PUMA: mib mib_ls2 mib_ls2_exc310 mib_ls2_sfb1313 mib_ls2_sfb1313_B mib_ls2_sfb1313_B_B05 mib_ls2_steeb myown]