GSI ToolBox underlying the publication: A Wave Scattering Approach to Modelling Surface Roughness in Orbital Aerodynamics

DOI:10.4121/52e59c45-5187-44e0-8fec-a77c6d769c8b.v1
The DOI displayed above is for this specific version of this dataset, which is currently the latest. Newer versions may be published in the future. For a link that will always point to the latest version, please use
DOI: 10.4121/52e59c45-5187-44e0-8fec-a77c6d769c8b

Datacite citation style

Anton, Sabin; Sousa Alves, Bernardo; Siemes, Christian; van den IJssel, Jose; Visser, Pieter (2025): GSI ToolBox underlying the publication: A Wave Scattering Approach to Modelling Surface Roughness in Orbital Aerodynamics. Version 1. 4TU.ResearchData. software. https://doi.org/10.4121/52e59c45-5187-44e0-8fec-a77c6d769c8b.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite

Software

A C++ code for sampling a newly-proposed scattering kernel for gas-surface interaction applications. This kernel incorporates geometric surface morphology effects on the scattering dynamics in a physical way, through the use of electromagnetic wave scattering theory.

History

  • 2025-03-21 first online, published, posted

Publisher

4TU.ResearchData

Format

source code: .cpp / .h

Funding

  • Accurate thermosphere observations from multi-mission analysis (ATOMMA) (grant code ENW.GO.001.008) [more info...] Dutch Research Council (NWO)

Organizations

TU Delft, Faculty of Aerospace Engineering, Department of Space Engineering, Astrodynamics and Space Missions

To access the source code, use the following command:

git clone https://data.4tu.nl/v3/datasets/07a5820f-4914-4e5c-b48f-61369583ea9c.git "GSI_ToolBox"

Or download the latest commit as a ZIP.