{"dcterms:modified":"2023-12-08","dcterms:creator":"DaRUS","@type":"ore:ResourceMap","@id":"https://nfldevdataverse2.rus.uni-stuttgart.de/api/datasets/export?exporter=OAI_ORE&persistentId=https://doi.org/10.18419/darus-1712","ore:describes":{"author":[{"citation:authorName":"Burbulla, Samuel","citation:authorAffiliation":"University of Stuttgart","authorIdentifierScheme":"ORCID","authorIdentifier":"0000-0002-2566-9777"},{"citation:authorName":"Rohde, Christian","citation:authorAffiliation":"University of Stuttgart","authorIdentifierScheme":"ORCID","authorIdentifier":"0000-0002-8088-5528"}],"softwareRequirementsItem":[{"softwareRequirements":"C++ compiler supporting c++-17 language standard, e.g. clang >= 5, g++ >= 7","codeMeta20:softwareRequirementsUrl":"https://gcc.gnu.org"},{"softwareRequirements":"CMake >= 3.13","codeMeta20:softwareRequirementsUrl":"https://cmake.org"},{"softwareRequirements":"pkg-config","codeMeta20:softwareRequirementsUrl":"https://www.freedesktop.org/wiki/Software/pkg-config/"},{"softwareRequirements":"CGAL >= 5.2","codeMeta20:softwareRequirementsUrl":"https://www.cgal.org"},{"softwareRequirements":"Python >= 3.7","codeMeta20:softwareRequirementsUrl":"https://www.python.org"},{"softwareRequirements":"Matplotlib","codeMeta20:softwareRequirementsUrl":"https://matplotlib.org"},{"softwareRequirements":"Paraview","codeMeta20:softwareRequirementsUrl":"https://www.paraview.org"},{"softwareRequirements":"DUNE (dune-common, dune-geometry, dune-grid, dune-ist, dune-localfunctions)","codeMeta20:softwareRequirementsUrl":"https://www.dune-project.org"},{"softwareRequirements":"DuMuX","codeMeta20:softwareRequirementsUrl":"https://dumux.org"}],"citation:datasetContact":{"citation:datasetContactName":"Rohde, Christian","citation:datasetContactAffiliation":"University of Stuttgart"},"grantNumber":{"citation:grantNumberAgency":"Deutsche Forschungsgemeinschaft (DFG, GermanResearch Foundation)","citation:grantNumberValue":"Project Number 327154368 - SFB 1313"},"EngMeta:engMetaTemp":{"EngMeta:engMetaTempCountPoints":"100","EngMeta:engMetaTempInterval":"0.01","engMetaTempUnit":"s"},"citation:dsDescription":{"citation:dsDescriptionValue":"This is the replication data for the publication \"A Finite-Volume Moving-Mesh Method for Two-phase Flow in Fracturing Porous Media\".\nThis dataset contains the source code of the implementation and the raw data of the published results."},"engMetaMeasuredVar":[{"engMetaMeasuredVarName":"Saturation","engMetaMeasuredVarSymbol":"S","engMetaMeasuredVarValueFrom":"0","engMetaMeasuredVarValueTo":"1"},{"engMetaMeasuredVarName":"Pressure","engMetaMeasuredVarSymbol":"P","engMetaMeasuredVarUnit":"Pa"}],"publication":{"publicationCitation":"Samuel Burbulla and Christian Rohde. A Finite-Volume Moving-Mesh Method for Two-phase Flow in Fracturing Porous Media.","publicationIDType":"arXiv","publicationIDNumber":"2103.13320","publicationURL":"https://arxiv.org/abs/2103.13320"},"EngMeta:engMetaGitter":{"EngMeta:engMetaGitterCountCells":"18000"},"programmingLanguage":["C++","Python"],"language":"English","citation:depositor":"Burbulla, Samuel","title":"Replication Data for: A Finite-Volume Moving-Mesh Method for Two-phase Flow in Fracturing Porous Media","EngMeta:engMetaMode":"Simulation","subject":"Mathematical Sciences","citation:notesText":"
This module implements two-phase flow in dynamically fractured porous media with a finite-volume moving-mesh method. The discretization employs both a mixed-dimensional and a full-dimensional fracture model. The model equations are incorporated in the fractional flow formulation and include gravitational effects. A generalized Godunov flux is incorporated to treat the hyperbolic part of the model appropriately.
\n\nGetting started
\n\nIf you have put all dependent Dune modules (dune-common, dune-geometry,\ndune-grid, dune-istl, dune-localfunctions, dune-mmesh and dumux in the shipped version) into a directory of your choice,\nyou can configure and build the modules calling\n
./dune-common/bin/dunecontrol all\nAfterwards, you can run the example case in dumux-movingmesh/build-cmake/examples executing\n
python3 run.py --case [1|2|3]\nwhich executes both the lowdim and the fulldim version and plots the results into the folder\n dumux-movingmesh/build-cmake/examples/case[1|2|3]/out/","dateOfDeposit":"2021-03-22","@id":"https://doi.org/10.18419/darus-1712","@type":["ore:Aggregation","schema:Dataset"],"schema:version":"1.0","schema:name":"Replication Data for: A Finite-Volume Moving-Mesh Method for Two-phase Flow in Fracturing Porous Media","schema:dateModified":"Thu Feb 09 14:58:07 CET 2023","schema:datePublished":"2021-03-25","dvcore:termsOfUse":"
The parts of this dataset are licensed as follows:
\r\nP. Bastian, M. Blatt, A. Dedner, N.-A. Dreier, C. Engwer, R. Fritze, C. Gräser, C. Grüninger, D. Kempf, R. Klöfkorn, M. Ohlberger, O. Sander. The DUNE framework: Basic concepts and recent developments. Computers & Mathematics with Applications 81, 2021, pp. 75-112.
\r\n\r\nColtman, Edward, Ackermann, Sina, Becker, Beatrix, Blatt, Markus, Burbulla, Samuel, Class, Holger, … Winter, Roman. (2020, May 4). DuMuX 3.2.0 (Version 3.2.0). Zenodo. http://doi.org/10.5281/zenodo.3784768
","dvcore:fileTermsOfAccess":{"dvcore:fileRequestAccess":false},"schema:includedInDataCatalog":"DaRUS","schema:isPartOf":{"schema:name":"B03: Heterogeneous multi-scale methods for two-phase flow in dynamically fracturing porous media","@id":"https://nfldevdataverse2.rus.uni-stuttgart.de/dataverse/sfb1313_B03","schema:description":"The propagation and bifurcation of fractures in fluid-filled porous media depends on the likewise inter-related flow in the pore space and on the mechanical displacement field in the solid matrix. Assuming that fractures cannot be homogenised but persist on a continuum-mechanical scale as sharp time-dependent interfaces, a discrete fracture-network approach is developed. The final task of the project is the construction of a multi-scale model that serves as the basis for numerical simu-lations by a moving mesh ansatz. In particular, the new approach accounts for the dynamical evolution of fractures and allows to integrate arbitrary flow processes within the fractures.","schema:isPartOf":{"schema:name":"SFB 1313 \"Interface-Driven Multi-Field Processes in Porous Media\"","@id":"https://nfldevdataverse2.rus.uni-stuttgart.de/dataverse/sfb1313","schema:description":"SFB 1313 is an interdisciplinary Collaborative Research Centre of the University of Stuttgart, consisting of four major project areas (A-D), divided in 17 individual research projects. It is funded by the German Research Foundation (DFG) and affiliated to the Cluster of Excellence \"Data-integrated Simulation Science (SimTech)\".
\nInterfaces have a great impact on multi-field processes (flow, transport and deformation) in porous-media systems. SFB 1313 aims to research these interfaces and to gain a fundamental understanding how they affect multi-field processes. An important step is therefore to quantify how the dynamics of fluid-fluid and fluid-solid interfaces in porous-media systems are affected by pore geometry, heterogeneity and fractures. Furthermore, developing experimental knowledge as well as mathematical and computational models will support SFB 1313‘s research.
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