Meso-Scale Heating Predictions for Weak Impact of Granular Energetic Solids
An explicit, two-dimensional, Lagrangian finite and discrete element technique is formulated and used to computationally characterize meso-scale fluctuations in thermomechanical fields induced by low pressure deformation waves propagating through particulate energetic solids. Emphasis is placed on c...
Main Author: | Panchadhara, Rohan |
---|---|
Other Authors: | Keith A. Gonthier |
Format: | Others |
Language: | en |
Published: |
LSU
2009
|
Subjects: | |
Online Access: | http://etd.lsu.edu/docs/available/etd-07032009-131245/ |
Similar Items
-
Predictions for Multi-Scale Shock Heating of a Granular Energetic Material
by: Jogi, Venugopal
Published: (2003) -
Meso-Scale Analysis of Deformation Induced Heating in Granular Metalized Explosives by Piston Supported Waves
by: Chakravarthy, Sunada Srinath Nagamani
Published: (2014) -
Modeling, Numerical Analysis, and Predictions for the Detonation of Multi-Component Energetic Solids
by: Crochet, Michael Wayne
Published: (2013) -
Prediction of meso-scale combustion using different turbulence model
by: Chen, King Sing
Published: (2017) -
Design and fabrication of the MesoMill : a five-axis milling machine for meso-scaled parts
by: Werkmeister, Jaime Brooke, 1977-
Published: (2005)