ZEO++: Difference between revisions

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[[Category:Software]][[Category:Chemistry]]
[[Category:Software]][[Category:Chemistry]]
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|{{#vardefine:app|zeo++}}
|{{#vardefine:app|zeo}}
|{{#vardefine:url|http://www.maciejharanczyk.info/Zeopp/about.html}}
|{{#vardefine:url|http://www.maciejharanczyk.info/Zeopp/about.html}}
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Zeo++ is a open source software for performing high-throughput geometry-based
Zeo++ is a open source software for performing high-throughput geometry-based analysis of porous materials and their voids. The main code provides capabilities to calculate the following: Pore diameters
    analysis of porous materials and their voids. The main code provides
Surface area and volume "Per channel" analysis Pore Size Distribution (PSD) Hologram representations Stochastic ray approaches Distance grid calculations File format conversion and visualization aids
    capabilities to calculate the following:
    Pore diameters
    Surface area and volume
    "Per channel" analysis
    Pore Size Distribution (PSD)
    Hologram representations
    Stochastic ray approaches
    Distance grid calculations
    File format conversion and visualization aids


    The structure of the code makes it particularly well-suited to many problems in
The structure of the code makes it particularly well-suited to many problems in
    physics and materials science, where Voronoi cells can be a useful method of
physics and materials science, where Voronoi cells can be a useful method of
    analyzing particle packings.
analyzing particle packings.





Revision as of 19:56, 12 January 2018

Description

zeo website  

Zeo++ is a open source software for performing high-throughput geometry-based analysis of porous materials and their voids. The main code provides capabilities to calculate the following: Pore diameters Surface area and volume "Per channel" analysis Pore Size Distribution (PSD) Hologram representations Stochastic ray approaches Distance grid calculations File format conversion and visualization aids

The structure of the code makes it particularly well-suited to many problems in physics and materials science, where Voronoi cells can be a useful method of analyzing particle packings.


Environment Modules

Run module spider zeo to find out what environment modules are available for this application.

System Variables

  • HPC_{{#uppercase:zeo}}_DIR - installation directory
  • HPC_{{#uppercase:zeo}}_BIN - executable directory