3,321 to 3,330 of 3,486 Results
Feb 4, 2021Stuttgart Research Center Systems Biology
For disposition and exchange of data between members of the SRCSB. |
Feb 4, 2021Stuttgart Research Center Systems Biology
For sharing SRCSB-developed software between members of the SRCSB or to the public (with DOI). |
Feb 4, 2021
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Feb 3, 2021SFB 1313 "Interface-Driven Multi-Field Processes in Porous Media"
We describe fracturing porous solids with arbitrary pore content by two basic ingredients, the macroscopic Theory of Porous Media and the phase-field approach to fracturing. Initially, the solid is treated as a brittle elastic material that is permeable for arbitrary fluids in the sense of a Darcian pore-fluid flow. Under hydraulic fracturing condi... |
Jan 26, 2021SFB 1313 "Interface-Driven Multi-Field Processes in Porous Media"
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... |
Jan 25, 2021
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Jan 18, 2021
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Jan 14, 2021 - lee18b_supplement
Lee, Miru, 2021, "Simulation Scripts for Motile Bacteria in a Channel", https://doi.org/10.18419/DARUS-1188, DaRUS, V1
Simulation scripts to simulate bacteria in a channel. Motility patterns run and tumble or straight swimming are supported. Requires Espresso simulation package. (http://espressomd.org/) For more information, see README.MD |
Jan 14, 2021 - lee18b_supplement
Lohrmann, Christoph, 2021, "Bacterial Trajectory Videos", https://doi.org/10.18419/DARUS-1187, DaRUS, V1
Videos showing simulation of bacteria in a channel. The trajectories are generated using custom code for the Espresso simulation software (http://espressomd.org/) |
Jan 13, 2021 - Microscale analysis
Weishaupt, Kilian, 2021, "High-resolution 3D Stokes reference solution for a free-flow channel over a structured porous domain", https://doi.org/10.18419/DARUS-782, DaRUS, V1
3D numerical reference for the setup described in https://doi.org/10.1063/1.5092169. |
