1. Maria Alkämper and Jim Magiera. 2021. Interface Preserving Moving Mesh (Code). https://doi.org/10.18419/darus-1671 10.18419/darus-1671
2. Maria Alkämper and Jim Magiera. 2021. Interface Preserving Moving Mesh (Code). https://doi.org/10.18419/darus-1671
3. Pierre Alliez Clément Jamin Laurent Rineau Stéphane Tayeb Jane Tournois and Mariette Yvinec. 2020. 3D Mesh Generation. In CGAL User and Reference Manual(5.0.1 ed.). CGAL Editorial Board. https://doc.cgal.org/5.0.1/Manual/packages.html#PkgMesh3 Pierre Alliez Clément Jamin Laurent Rineau Stéphane Tayeb Jane Tournois and Mariette Yvinec. 2020. 3D Mesh Generation. In CGAL User and Reference Manual(5.0.1 ed.). CGAL Editorial Board. https://doc.cgal.org/5.0.1/Manual/packages.html#PkgMesh3
4. Pierre Alliez Sylvain Pion and Ankit Gupta. 2020. Principal Component Analysis. In CGAL User and Reference Manual(5.0.1 ed.). CGAL Editorial Board. https://doc.cgal.org/5.0.1/Manual/packages.html#PkgPrincipalComponentAnalysisD Pierre Alliez Sylvain Pion and Ankit Gupta. 2020. Principal Component Analysis. In CGAL User and Reference Manual(5.0.1 ed.). CGAL Editorial Board. https://doc.cgal.org/5.0.1/Manual/packages.html#PkgPrincipalComponentAnalysisD
5. Timothy Baker and Peter Cavallo . 1999 . Dynamic adaptation for deforming tetrahedral meshes . In 14th Computational Fluid Dynamics Conference. https://doi.org/10 .2514/6. 1999 - 3253 10.2514/6.1999-3253 Timothy Baker and Peter Cavallo. 1999. Dynamic adaptation for deforming tetrahedral meshes. In 14th Computational Fluid Dynamics Conference. https://doi.org/10.2514/6.1999-3253