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Andrea Thom
Andrea Thom
Institute of Mechanics, Structural Analysis and Dynamics, University of Stuttgart
Bestätigte E-Mail-Adresse bei isd.uni-stuttgart.de
Titel
Zitiert von
Zitiert von
Jahr
Concentration driven phase transitions in multiphase porous media with application to methane oxidation in landfill cover layers
T Ricken, A Sindern, J Bluhm, R Widmann, M Denecke, T Gehrke, ...
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2014
262014
Characterization of methane oxidation in a simulated landfill cover system by comparing molecular and stable isotope mass balances
M Schulte, MA Jochmann, T Gehrke, A Thom, T Ricken, M Denecke, ...
Waste management 69, 281-288, 2017
132017
Biological driven phase transitions in fully or partly saturated porous media: A multi-component FEM simulation based on the theory of porous media
T Ricken, A Thom, T Gehrke, M Denecke, R Widmann, M Schulte, ...
Views on Microstructures in Granular Materials, 157-183, 2020
102020
Simulation of contaminant transport through the vadose zone: A continuum mechanical approach within the framework of the extended theory of porous media (etpm)
SM Seyedpour, A Thom, T Ricken
Water 15 (2), 343, 2023
52023
In Silico Modeling of Coupled Physical‐Biogeochemical (P‐BGC) Processes in Antarctic Sea Ice
A Thom, T Ricken
PAMM 20 (1), e202000308, 2021
42021
Prediction of construction-induced deformations of deep excavation walls by the use of a holistic 3D-finite-element model
A Thom, A Hettler
Holistic Simulation of Geotechnical Installation Processes: Benchmarks and …, 2016
32016
Validation of a coupled FE‐model for the simulation of methane oxidation via thermal imaging
A Thom, T Ricken, J Bluhm, R Widmann, M Denecke, T Gehrke
PAMM 15 (1), 433-434, 2015
32015
Theory and model implementation of gaseous transport and reaction processes in porous media applied to methane oxidation in landfill cover layers
A Thom
Stuttgart: Institut für Statik und Dynamik der Luft und …, 2022
22022
Towards a physical model of Antarctic sea ice microstructure including biogeochemical processes using the extended Theory of Porous Media
A Thom, T Ricken
PAMM 19 (1), e201900285, 2019
22019
Development of a thermodynamically consistent model towards biogeochemical processes within antarctic sea ice microstructure within the extended theory of porous media (eTPM)
A Thom, T Ricken
Advances in Engineering Materials, Structures and Systems: Innovations …, 2019
22019
A coupled multi‐component approach for bacterial methane oxidation in landfill cover layers
A Sindern, T Ricken, J Bluhm, R Widmann, M Denecke, T Gehrke
PAMM 14 (1), 469-470, 2014
22014
Bacterial methane oxidation in landfill cover layers‐a coupled FE multiphase description
A Sindern, T Ricken, J Bluhm, R Widmann, M Denecke
PAMM 13 (1), 193-194, 2013
22013
Numerical investigations of diffusion coefficients in the context of multi‐component gas transport within the Theory of Porous Media
A Thom, T Ricken, M Koßler, T Gehrke, M Denecke, R Widmann, ...
PAMM 18 (1), e201800446, 2018
12018
Numerical Investigations of the Effects of Dynamic Construction Processes on Deep Excavation Walls
C Henning, A Thom, A Hettler
Holistic Simulation of Geotechnical Installation Processes: Theoretical …, 2017
12017
Phase transition in methane oxidation layers–a coupled FE multiphase description
A Sindern, T Ricken, J Bluhm, M Denecke, TC Schmidt
PAMM 12 (1), 371-372, 2012
12012
Instantons for the process of ice nucleation in fresh and sea water
B Kutschan, S Thoms, A Thom, R Pathak, T Ricken
2024
A continuum multi-phase and multi-component description of the freezing process of seawater to porous sea ice
T Ricken, A Thom, R Pathak, S Thoms, B Kutschan
2023
Sea ice mechanics
F Paul, C Schwarz, RR Audh, J Bluhm, S Johnson, K MacHutchon, ...
Computer Methods in Materials Science 23, 2023
2023
Modeling of small scale processes in Antarctic sea ice-a multiphase continuum approach
A Thom, T Ricken, S Thoms, B Kutschan
2022
Modeling of small scale processes in Antarctic sea ice-a bio-physical coupled bi-scale approach
A Thom, T Ricken, S Thoms, B Kutschan
2022
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