341 to 350 of 2,757 Results
Mar 15, 2025 -
DuMuX code for dual network for: "Local Thermal Non-Equilibrium Models in Porous Media: A Comparative Study of Conduction effects"
XZ Archive - 5.8 KB -
MD5: 266936cbce51808dcf4d1f975bb8fe32
All files related to installation of code via Docker. |
Mar 15, 2025 -
DuMuX code for dual network for: "Local Thermal Non-Equilibrium Models in Porous Media: A Comparative Study of Conduction effects"
Python Source Code - 4.9 KB -
MD5: cec0d7ef54445a987cd6f19bdf1b1723
Installation script for dumux module `Kostelecky2025a` and all related dumux and dune modules. |
Mar 15, 2025 -
DuMuX code for dual network for: "Local Thermal Non-Equilibrium Models in Porous Media: A Comparative Study of Conduction effects"
Markdown Text - 6.7 KB -
MD5: 458753947a320db45be4fc735f0e6346
Instructions to install and run simulations. |
Mar 4, 2025 - D03: Development and realisation of validation benchmarks
Kohlhaas, Rebecca; Morales Oreamuno, Maria Fernanda; Lacheim, Alina, 2025, "BayesValidRox 2.0.0", https://doi.org/10.18419/DARUS-4752, DaRUS, V1
BayesValidRox is an open-source python package that provides methods for surrogate modeling, Bayesian inference and model comparison. Release 2.0.0 improves the modularity and uniformity of the package and introduces template classes for surrogate models and methods for generating posterior samples.(2025-02-05) |
Mar 4, 2025 -
BayesValidRox 2.0.0
Gzip Archive - 142.8 KB -
MD5: b8a1b0a6df6184dd1cc2d58e8171026e
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Jan 30, 2025 - SFB1313: Project Area B01
Khurshid, Hamza; Polukhov, Elten; Keip, Marc-André, 2025, "Mixed variational formulation and finite-element implementation of second-order poro-elasticity: Datasets", https://doi.org/10.18419/DARUS-4485, DaRUS, V1
The datasets provided here are associated with our publication "Mixed variational formulation and finite-element implementation of second-order poro-elasticity". The main idea of the work is to develop a working model for second gradient poro-elasticity. This includes a mixed-variational formulation and finite-element formulation. The results are g... |
Jan 30, 2025 -
Mixed variational formulation and finite-element implementation of second-order poro-elasticity: Datasets
Hierarchical Data Format - 441.4 KB -
MD5: 0a28f536531bda27639a2f1aa0d235d5
Results for Terzaghi's quasi one-dimensional consolidation problem using the first-order formulation: The values of vertical strain, fluid mass content and pressure are given along the vertical central axis of the body at several values of the non-dimensional time during the consolidation process. The data corresponds to Fig. 4a,c,e in the paper. |
Jan 30, 2025 -
Mixed variational formulation and finite-element implementation of second-order poro-elasticity: Datasets
Hierarchical Data Format - 592.7 KB -
MD5: c53c179fd6195bcfb38f825a740650d1
Results for Terzaghi's quasi one-dimensional consolidation problem using the first-order formulation for a layered body: The values of vertical strain, fluid mass content and pressure are given along the vertical central axis of the body at several values of the non-dimensional time during the consolidation process. The data corresponds to Fig. 8a... |
Jan 30, 2025 -
Mixed variational formulation and finite-element implementation of second-order poro-elasticity: Datasets
Hierarchical Data Format - 346.5 KB -
MD5: a3f3aa54d544d45f2247ef614d608f9c
Results for the two-dimensional Mandel's problem using the first-order formulation for a layered body: The values of horizontal strain, fluid mass content and pressure are given along the horizontal central axis of the body at several values of the non-dimensional time during the consolidation process. The data corresponds to the Fig. 9a in the pap... |
Jan 30, 2025 -
Mixed variational formulation and finite-element implementation of second-order poro-elasticity: Datasets
Hierarchical Data Format - 459.9 KB -
MD5: 39d92f546c1e3a59ec843c576f69af4e
Results for the two-dimensional Mandel's problem using the first-order formulation: The values of horizontal strain, fluid mass content and pressure are given along the horizontal central axis of the body at several values of the non-dimensional time during the consolidation process. The data corresponds to Fig. 6a,c,e in the paper. |