A Lagrangian model for debris cloud dynamics simulation

Author:

Fahrenthold E.P.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Safety, Risk, Reliability and Quality,Aerospace Engineering,Automotive Engineering,Civil and Structural Engineering

Reference14 articles.

1. Studies of Density Distributions in One-Dimensional Shock-Induced Debris Clouds;Asay;Int. J. of Impact Engineering,1990

2. Compressible Porous Media Models by Use of the Theory of Mixtures;Bowen;Int. J. of Engineering Science,1982

3. Advanced Meteoroid and Debris Shielding Concepts;Christiansen,1990

4. A Multi-Shock Concept for Spacecraft Shielding;Cour-Palais;Int. J. of Impact Engineering,1990

5. Hypervelocity Impact of Mixtures;Drumheller;Int. J. of Impact Engineering,1987

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1. An analytical solution for unconfined, unsteady, inviscid jets; with applications to penetration problem debris cloud formation;Computers & Mathematics with Applications;2004-07

2. Characterizing Debris Clouds Created in Oblique Orbital Debris Particle Impact;Journal of Aerospace Engineering;2003-10

3. Numerical simulation of oblique impact on orbital debris shielding;International Journal of Impact Engineering;1999-12

4. A hybrid particle-finite element method for hypervelocity impact simulation;International Journal of Impact Engineering;1999-12

5. Hamiltonian particle hydrodynamics;Computer Methods in Applied Mechanics and Engineering;1997-07

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