PoreScene¶
PoreScene is a Blender-based scientific visualization toolkit for porous media. It renders tomographic images, generated and reconstructed pore networks, as well as volume tessellations as photorealistic 3D scenes – with pores, throats, Voronoi cells, and watershed clusters colored by properties such as radius or coordination number using perceptually uniform colormaps, matching colorbars, and calibrated, on-scale axes.
The advantage: instead of clicking through a 3D editor, you describe the entire scene in a few lines of Python and render it reproducibly on Blender’s GPU-accelerated Cycles engine – so the same script always yields the same publication-quality figure, ready for papers, presentations, and animations.
Microstructure of a freeze-dried sugar solution.¶
Pore and throat morphology of a reconstructed pore network.¶
Simulated lactate concentration during biofilm growth.¶
Pore space tessellation of a reconstructed X-ray µ-CT image of a rock.¶
Microstructure of a graded titanium felt used in PEM water electrolyzers.¶
Oxygen concentration during Fickian diffusion.¶
Pore coordination numbers of a reconstructed pore network from wood.¶
Pore clusters of a regular pore network.¶
Ice saturation in the pore space during freeze-drying.¶
Structure of an in-silico computed biofilm.¶
Pore and throat diameters of a regular pore network.¶
Packed bed of monodisperse alumina spheres.¶
Microstructure of a European beech wood sphere.¶
Citation¶
If you use PoreScene to generate figures for a publication, please cite it. Citation
metadata is provided in the repository’s CITATION.cff, and the software is archived on
Zenodo under a version-independent concept
DOI that always resolves to the latest
release. You can use the BibTeX entry below:
@software{porescene,
author = {Faber, Felix and Vorhauer-Huget, Nicole},
title = {{PoreScene}},
year = {2026},
doi = {10.5281/zenodo.21494378},
url = {https://github.com/fefafe/porescene},
}
Creators¶
Nicole Vorhauer-Huget
Research group leader Transport in Porous Media at OVGU
Funding¶
CRC 287 Bulk-Reaction
This work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) – Project-ID 422037413 – TRR 287 "Bulk-Reaction".