DOE OSTI · 1907763
Singularity-EOS XCAP Report
Abstract
Solving the Euler equations is a fundamental component of simulating many physical phenomena ranging from high explosives to astrophysics. An equation of state (EOS) is a required piece that relates any two thermodynamic quantities to all other thermodynamic values. The presence of multiple materials within a control volume further complicates the solution requiring additional equations to describe the interaction of materials at a sub-grid level. Equations of state themselves can also come in many forms ranging from simple algebraic relations to more complicated differential equation models that describe material interactions over a broad range of physical conditions. In the latter case, the EOS is often pre-computed at a given set of grid points and provided in a tabular form where additional properties can be derived from the interpolation functions.
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Peterson, Jeffrey Hammett, Miller, Jonah Maxwell, Pietarila Graham, Anna Mataleena, Holladay, Daniel Alphin, Mauney, Christopher Michael, Berger, Richard Felix, Tsai, Karen Chung-Yen. 2022-12-23. Singularity-EOS XCAP Report. https://doi.org/10.2172/1907763
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