Hello Shunsuke,
you can compute a wide variety of material properties with GeoDict. Below I have listed the modules that are directly related to the properties you mentioned and added brief notes on other modules that might interest you for fuel cell applications. I recommend reviewing the corresponding sections of our user guide to get a full picture of what is possible.
Diffusivity
Diffusion can be simulated with our module DiffuDict (located under Predict). In general this allows you to simulate the net movement of molecules or atoms from a region of higher to lower concentration.
More information: https://geodict-userguide.math2market.de/2026/diffudict.html
Tortuosity
For the computation of the tortuosity there are many different approaches based on geometric or physical properties of the sample. All available approaches for calculating tortuosity are combined in the Compute Tortuosity GeoApp (located under GeoApp → General GeoApps → Geometric Properties → Compute Tortuosity).
More information: https://geodict-userguide.math2market.de/2026/geoapp_computetortuosity.html
Bottleneck Diameter & Pore Size Distribution
These properties are computed with PoroDict (located under Analyze), which offers several options for pore size distributions, percolation paths, and more.
More information: https://geodict-userguide.math2market.de/2026/porodict.html
Other structural parameters
Accuracy of calculated properties
A comparison of simulated and measured permeabilities and diffusivities for a gas diffusion layer is presented in the following publication:
Becker, J., Flückiger, R., Reum, M., Büchi, F. N., Marone, F., & Stampanoni, M. (2009). Determination of Material Properties of Gas Diffusion Layers: Experiments and Simulations Using Phase Contrast Tomographic Microscopy. Journal of the Electrochemical Society, 156, B1175–B1181. https://doi.org/10.1149/1.3176876
Additional studies on fuel cells that employ GeoDict can be found here: https://www.math2market.com/showroom/scientific-publications.html?industry=fuel-cells
Additional resources
Best regards,
Jonas
you can compute a wide variety of material properties with GeoDict. Below I have listed the modules that are directly related to the properties you mentioned and added brief notes on other modules that might interest you for fuel cell applications. I recommend reviewing the corresponding sections of our user guide to get a full picture of what is possible.
Diffusivity
Diffusion can be simulated with our module DiffuDict (located under Predict). In general this allows you to simulate the net movement of molecules or atoms from a region of higher to lower concentration.
More information: https://geodict-userguide.math2market.de/2026/diffudict.html
Tortuosity
For the computation of the tortuosity there are many different approaches based on geometric or physical properties of the sample. All available approaches for calculating tortuosity are combined in the Compute Tortuosity GeoApp (located under GeoApp → General GeoApps → Geometric Properties → Compute Tortuosity).
More information: https://geodict-userguide.math2market.de/2026/geoapp_computetortuosity.html
Bottleneck Diameter & Pore Size Distribution
These properties are computed with PoroDict (located under Analyze), which offers several options for pore size distributions, percolation paths, and more.
More information: https://geodict-userguide.math2market.de/2026/porodict.html
Other structural parameters
- AddiDict: Simulate particle, molecule, or concentration transport and adsorption
https://geodict-userguide.math2market.de/2026/addidict.html - MatDict: Compute material properties of the solid phase such as surface areas
https://geodict-userguide.math2market.de/2026/matdict_materialcharacterization.html - FiberFind: Identify fibers and obtain statistics such as orientation, diameter, or length
https://geodict-userguide.math2market.de/2026/fiberfind.html - ConductoDict: Compute effective conductivities
https://geodict-userguide.math2market.de/2026/conductodict.html - FlowDict: Simulate fluid flow and obtain properties like permeability or pressure drop
https://geodict-userguide.math2market.de/2026/flowdict_link.html - ElastoDict: Compute mechanical properties and simulate deformations
https://geodict-userguide.math2market.de/2026/elastodict.html - SatuDict: Simulate two phase fluid systems, saturation, and related properties
https://geodict-userguide.math2market.de/2026/satudict.html
Accuracy of calculated properties
A comparison of simulated and measured permeabilities and diffusivities for a gas diffusion layer is presented in the following publication:
Becker, J., Flückiger, R., Reum, M., Büchi, F. N., Marone, F., & Stampanoni, M. (2009). Determination of Material Properties of Gas Diffusion Layers: Experiments and Simulations Using Phase Contrast Tomographic Microscopy. Journal of the Electrochemical Society, 156, B1175–B1181. https://doi.org/10.1149/1.3176876
Additional studies on fuel cells that employ GeoDict can be found here: https://www.math2market.com/showroom/scientific-publications.html?industry=fuel-cells
Additional resources
- Our website: https://www.math2market.com/industrial-solutions/fuel-cells.html
- Our YouTube channel, in particular:
- Tutorial in our learning center: https://www.math2market.com/service-support/learning-center/digital-analysis-of-fibers-and-binder-content-of-four-carbon-paper-gdls.html
Best regards,
Jonas
