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Thematic Issue on Microstructurally driven materials development

Systematic visualisation methods for material sciences

, &
Pages 356-365 | Received 26 Feb 2015, Accepted 14 Apr 2015, Published online: 14 Apr 2016

References

  • Poirier D., Allmaras S. R., McCarthy D. R., Smith M. F. and Enomoto F. Y.: ‘The CGNS system’. AIAA paper no. 98-3007. http://www.cgns.org.
  • Tautges T. J., Meyers R., Merkley K., Stimpson C. and Ernst C.: ‘MOAB: a mesh-oriented database’. Technical Report, Sandia National Labs, April 2004. http://trac.mcs.anl.gov/projects/ITAPS/wiki/MOAB.
  • Miller M.: ‘Silo – a mesh and field I/O library and scientific database’. Lawrence Livermore National Laboratory. https://wci.llnl.gov/simulation/computer-codes/silo.
  • Davis G., Rew R., Hartnett E., Caron J., Heimbigner D., Emmerson S., Davies H. and Fisher W.: ‘NetCDF (network Common Data Form)’. http://www.unidata.ucar.edu/software/netcdf/.
  • Dougherty M. T., Folk M. J., Zadok E., Bernstein H. J., Bernstein F. C., Eliceiri K. W., Benger W. and Best C.: ‘Unifying biological image formats with HDF5’, Commun. ACM, 2009, 52, (10), 42–47. doi: 10.1145/1562764.1562781
  • The NeXus International Advisory Committee: ‘NeXus – a common data format for neutron, X-ray and muon science’. http://www.nexusformat.org/.
  • Butler D. M.: ‘The sheaf data model: a rigorous data model for scientific computing’ ‘Proc. 2012 SC Companion: ‘High performance computing, networking storage and analysis’, Salt Lake, UT, USA, November 2012, IEEE’, 1303–1305.
  • Butler D. M. and Pendley M. H.: ‘A visualization model based on the mathematics of fiber bundles’, Comput. Phys., 1989, 3, 45–51. doi: 10.1063/1.168345
  • F5. www.fiberbundle.net.
  • Tobbler R. and Maierhofer S.: ‘A mesh data structure for rendering and subdivision’; Plzen, 2006, WSCG.
  • Zienkiewicz O. C., Taylor R. L. and Zhu J. Z.: ‘The finite element method. its basis and fundamentals’, 2nd edn; 2005, Oxford, Elsevier Ltd.
  • Bui H. H. and Fukagawa R.: ‘An improved SPH method for saturated soils and its application to investigate the mechanisms of embankment failure: case of hydrostatic pore-water pressure’, Int. J. Numer. Anal. Methods Geomech., 2013, 37, (1), 31–50. doi: 10.1002/nag.1084
  • Delmarcelle T. and Hesselink L.: ‘Visualizing second-order tensor fields with hyperstreamlines’, IEEE Comput. Graph. Appl., 1993, 13, (4), 25–33. doi: 10.1109/38.219447
  • Westin C. F., Peled S., Gudbjartsson H., Kikinis R. and Jolesz F. A.: ‘Geometrical diffusion measures for MRI from tensor basis analysis’ ‘Proc. ISMRM'97, Vancouver, BC, Canada, April 1997’, 1742, International Society for Magnetic Resonance in Medicine.
  • ‘in Visualization and processing of tensor fields’, (ed. Weickert J. and Hagen H., Vol. XV, ; 2006, Berlin, Springer.
  • Laidlaw D., Ahrens E., Kremers D., Avalos M., Jacobs R. and Readhead C.: ‘Visualizing diffusion tensor images of the mouse spinal cord’, Proc. Conf. Visualization '98, Los Alamitos, CA, USA, October 1998, IEEE, 127–134.
  • Benger W., Bartsch H., Hege H. C., Kitzler H., Shumilina A. and Werner A.: ‘Visualizing neuronal structures in the human brain via diffusion tensor MRI’, Int. J. Neurosci., 2006, 116, (4), 461–514. doi: 10.1080/00207450500505977
  • Moore J. G., Schorn S. A. and Moore J.: ‘Methods of classical mechanics applied to turbulence stresses in a tip leakage vortex’, J. Turbomach., 1996, 118, 622–629. doi: 10.1115/1.2840917
  • ‘in Visualization and processing of tensors and higher order descriptors for multi-valued data’, (ed. Westin C. -F., Vilanova A. and Burgeth B., 3–15; 2014, Berlin, Springer.
  • Neeman A. G.: ‘Visualization techniques for computational mechanics’, ‘ PhD thesis’; 2009, Santa Cruz, University of California.
  • Adler J.: ‘Visualization in computational physics and materials sciences’; 2014, Taylor & Francis.
  • Weinkauf T. and Theisel H.: ‘Curvature measures of 3D vector fields and their applications’, J. WSCG, February 2002, 10, (2), 507–514.
  • IBM: ‘OpenDX-IBM's visualization data explorer’. www.opendx.org.
  • Bohara B. and Karki B. B.: ‘Clutter reduction in rendering of particle (atom) trajectories with adaptive position merging’ Proc. Int. Conf. on ‘Computer graphics theory and applications’, Lisbon, Portugal, January 2014, INSTICC, 265–271.
  • Benger W., Ritter G., Su S., Nikitopoulos D. E., Walker E., Acharya S., Roy S., Harhad F. and Kapferer W.: ‘Doppler speckles – a multi-purpose vectorfield visualization technique for arbitrary meshes’, Proc. 2009 Int. Conf. on ‘Computer graphics and virtual reality’, Las Vegas, NV, USA, July 2009, IEEE.

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