Computation of compaction in compressible granular material |
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Authors: | Michael T. Cochran Joseph M. Powers |
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Affiliation: | aCore Furnace Systems Corporation, Coraopolis, PA 15108-3185, USA;bDepartment of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556-5637, USA |
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Abstract: | Equations modeling compaction in a mixture of granular high explosive and interstitial gas are solved numerically. Both phases are modeled as compressible, viscous fluids. This overcomes well known difficulties associated with computing shock jumps in the inviscid version of the equations, which cannot be posed in a fully conservative form. One-dimensional shock tube and piston-driven compaction solutions compare favorably with experiment and known analytic solutions. A simple two-dimensional extension is presented. |
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Keywords: | Two-dimensional compaction Granular flow Continuum mixture theory |
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