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A Cell-Centered Multiphase ALE Scheme With Structural Coupling

Posted on:2012-01-20Degree:Ph.DType:Dissertation
University:University of California, DavisCandidate:Dunn, Timothy AlanFull Text:PDF
GTID:1451390008996390Subject:Applied Mathematics
Abstract/Summary:
A novel computational scheme has been developed for simulating compressible multiphase flows interacting with solid structures. The multiphase fluid is computed using a Godunov-type finite-volume method. This has been extended to allow computations on moving meshes using a direct arbitrary-Eulerian-Lagrangian (ALE) scheme. The method has been implemented within a Lagrangian hydrocode, which allows modeling the interaction with Lagrangian structural regions. Although the above scheme is general enough for use on many applications, the ultimate goal of the research is the simulation of heterogeneous energetic material, such as explosives or propellants. The method is powerful enough for application to all stages of the problem, including the initial burning of the material, the propagation of blast waves, and interaction with surrounding structures. The method has been tested on a number of canonical multiphase tests as well as fluid-structure interaction problems.
Keywords/Search Tags:Multiphase, Scheme, Method
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