SPHY: Shock Physics and Hydrodyamics III: Modeling

ORAL · H04 · ID: 3364256





Presentations

  • ORAL

    Publication: Seo, D., Heatwole, E.M., Feagin, T.A., Lopez-Pulliam, I.D., Luscher, D.J., Koskelo, A., Kenamond, M., Rousculp, C., Ticknor, C., Scovel, C. and Daphalapurkar, N.P., 2024. Weak shock compaction on granular salt. Scientific Reports, 14(1), p.16695.
    Seo, D., Luscher, D.J., Scovel, C. and Daphalapurkar, N.P., 2024. Mesoscale simulation of granular materials under weak shock compaction–pore size distribution effects. Journal of Applied Physics, 136(15).
    Seo, D., Luscher, D.J., and Daphalapurkar, N.P., 2025. Mesoscale modeling of weak shock wave response
    of granular materials – particle size effects (submitted).

    Presenters

    • Dawa Seo

      • Los Alamos National Laboratory

    Authors

    • Dawa Seo

      • Los Alamos National Laboratory
    • Nitin Daphalapurkar

      • Los Alamos National Laboratory
    • Darby J Luscher

      • Los Alamos National Laboratory (LANL)

    View abstract →

  • ORAL

    Publication: [1] Aslam, Tariq Dennis, "A Recipe for implementing the Arrhenius-Shock-Temperature State Sensitive WSD (AWSD) model, with parameters for PBX 9502," (2017), https://doi.org/10.2172/1396160
    [2] McGlaun, J. M., Thompson, S. L., and Elrick, M. G, "CTH: A three-dimensional shock wave physics code," (1986), https://doi.org/10.1016/0734-743X(90)90071-3
    [3] Wescott, Stewart, Davis, "Equation of state and reaction rate for condensed-phase explosives," J. Appl. Phys., 98, 2005
    [4] Kittell, D., Schmitt R., Tuttle L., and Harstad, E., "Implementation of a CREST multistate reactive burn model in CTH for two solid high explosives," in Proceedings of the Sixteenth Detonation Symposium, (2018) pp. 1021–31.

    Presenters

    • Kevin Ruggirello

      • Sandia National Laboratories

    Authors

    • Kevin Ruggirello

      • Sandia National Laboratories

    View abstract →