Explore projects
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A. Bilal, Master Thesis, 2016, Development of 1D and 3D Dumux models to simulate transport of nano zero-valent iron particles in porous media.
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F. Weinhardt, BSc thesis, 2016: Algorithmus zur Zeitschrittweitenanpassung für das linear elastische Modell.
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T. Fetzer, Diploma Thesis, 2012: Numerical analysis of the influence of turbulence on exchange processes between porous-medium and free flow
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Shokri‐Kuehni, S. M. S., Raaijmakers, B., Kurz, T., Or, D., Helmig, R., & Shokri, N. ( 2020). Water table depth and soil salinization: From pore‐scale processes to field‐scale responses. Water Resources Research, 56.
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T. Kurz, MSc thesis, 2018: Investigation of different coupling schemes for hybrid-dimensional models
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M. Mittelbach, MSc thesis, 2019: Development of interface criteria for model reduction strategies for the simulation of hydrogen storage.
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Dissertation 2020:
Model Concepts for Coupling Free Flow with Porous Medium Flow at the Pore-Network Scale: From Single-Phase Flow to Compositional Non-Isothermal Two-Phase Flow
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T. Fetzer, K. Smits, R. Helmig, Transport in Porous Media, 2016: [Effect of Turbulence and Roughness on Coupled Porous-Medium/Free-Flow Exchange Processes] (http://link.springer.com/article/10.1007/s11242-016-0654-6)
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dumux-pub / Grueninger2017a
GNU General Public License v2.0 or laterDissertation 2017: Numerical Coupling of Navier-Stokes and Darcy Flow for Soil-Water Evaporation
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Becker, B., Guo, B., Flemisch, B., & Helmig, R. (2021). An adaptive hybrid vertical equilibrium/full multidimensional model for compositional multiphase flow.
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dumux-pub / Koch2017a
GNU General Public License v2.0 or laterdumux-root module with apps from: T. Koch, K. Heck, N. Schröder, H. Class, R. Helmig: A new simulation framework for plant-scale soil-root interaction including soil evaporation, growth and transport processes using Dumux (doi: 10.2136/vzj2017.12)
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