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An open-source, object-oriented Python package for surrogate-assisted Bayesain Validation of computational models.
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T. Koch, K. Weishaupt, J. Müller, B. Weigand, R.Helmig (2021) A (dual) network model for heat transfer in porous media, Transport in Porous Media doi: 10.1007/s11242-021-01602-5
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P. Samantray, Msc Thesis, 2014: Implementation of advanced algebraic turbulence models on a staggered grid.
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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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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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K. Weishaupt, A. Bordenave, O. Atteia, H. Class, Transport in Porous Media, 2016: [Numerical Investigation on the Benefits of Preheating for an Increased Thermal Radius of Influence...] (http://link.springer.com/article/10.1007/s11242-016-0624-z)
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V.A. Jambhekar, E. Mejri, N. Schröder, R. Helmig, N. Shokri, Transport in Porous Media, 2016: Kinetic Approach to Model Reactive Transport and Mixed Salt Precipitation in a Coupled Free-Flow-Porous-Media System
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V.A. Jambhekar, R. Helmig, N. Schröder, N. Shokri, Transport in Porous Media, 2015: Free-Flow--Porous-Media Coupling for Evaporation-Driven Transport and Precipitation of Salt in Soil
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D. Gläser, R. Helmig, B. Flemisch, and H. Class
A discrete fracture model for two-phase flow in fractured porous media
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