Verification Studies for the Noh Problem Using Nonideal Equations of State and Finite Strength Shocks

Author:

Burnett Sarah C.1,Honnell Kevin G.2,Ramsey Scott D.3,Singleton Robert L.2

Affiliation:

1. Department of Mathematics, University of Maryland, College Park College Park, MD 20742 e-mail:

2. Computational Physics Division, Los Alamos National Laboratory, Los Alamos, NM 87545 e-mail:

3. Theoretical Design Division, Los Alamos National Laboratory, Los Alamos, NM 87545 e-mail:

Abstract

The Noh verification test problem is extended beyond the commonly studied ideal gamma-law gas to more realistic equations of state (EOSs) including the stiff gas, the Noble-Abel gas, and the Carnahan–Starling EOS for hard-sphere fluids. Self-similarity methods are used to solve the Euler compressible flow equations, which, in combination with the Rankine–Hugoniot jump conditions, provide a tractable general solution. This solution can be applied to fluids with EOSs that meet criterion such as it being a convex function and having a corresponding bulk modulus. For the planar case, the solution can be applied to shocks of arbitrary strength, but for the cylindrical and spherical geometries, it is required that the analysis be restricted to strong shocks. The exact solutions are used to perform a variety of quantitative code verification studies of the Los Alamos National Laboratory Lagrangian hydrocode free Lagrangian (FLAG).

Funder

National Science Foundation

Los Alamos National Laboratory

Publisher

ASME International

Subject

Computational Theory and Mathematics,Computer Science Applications,Modelling and Simulation,Statistics and Probability

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