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Numerical Simulation of Crater Creating Process in Dynamic Replacement Method by Smooth Particle Hydrodynamics Cover

Numerical Simulation of Crater Creating Process in Dynamic Replacement Method by Smooth Particle Hydrodynamics

Open Access
|Feb 2015

References

  1. [1] HIERMAIER S., Structures Under Crash and Impact, Springer, 2008.
  2. [2] LUCY L.B., A Numerical Approach to The Testing of The Fission Hypothesis, Astronomical Journal, 1977, 82, 1013-1024.10.1086/112164
  3. [3] MONAGHAN J.J., GINGOLD R.A., Smoothed Particle Hydrodynamics: Theory and Applications to Non-Spherical Stars, Royal Astronomical Society, 1977, 181, 275-389.10.1093/mnras/181.3.375
  4. [4] MONAGHAN J.J., LATTANZIO J.C., A Refined Particle Mathod for Astrophysical Problems, Astronomy and Astrophysics, 1985, 149, 135-143.
  5. [5] LIBERSKY L.D., PETSCHEK A.G., Smooth Particle Hydrodynamics With Strength of Materials, Proceedings of the Next Free-Lagrange Conference, Moran, WY, USA, 1990, 347, 248-267.10.1007/3-540-54960-9_58
  6. [6] BOJANOWSKI C., KULAK R., Comparsion of Lagrangian, SPH and MM-ALE approaches for Modeling Large Deformation in Soil, 11th International LS-DYNA Users Conference, 2010.
  7. [7] BOJANOWSKI C., KULAK R., Modeling of Cone Penetration Test Using SPH and MM-ALE Approaches, 8th European LS-DYNA Users Conference, 2011.
  8. [8] DANILEWICZ A., Smooth Particle Hydrodynamics (SPH) Approach in Simulating Large Penetration Into Soil, Proceedings of European Young Geotechnical Engineers Conference, Gothenburg 2012.
  9. [9] FASANELLA E.L., LYLE R.K.H., JACKSON K.E., Developing Soil Models for Dynamic Impact Simulations, NASA Langley Research Center, Hampton USA.
  10. [10] KULAK R.F., SCHWER L., Effect of Soil Material Models on SPH Simulations for Soil-Structure Interaction, Proceedings of 12th International LS-DYNA Users Conference, 2012.
  11. [11] LI S., LIU W.K., Meshfree Particle Methods, Springer, 2004.
  12. [12] VON NEUMANN J., RICHTMYER R.D., A Method for Numerical Calculation of Hydrodynamic Shocks, Journal of Applied Physics, 1950, 21, 232-237.10.1063/1.1699639
  13. [13] MONAGHAN J.J., Simulating Free Surface Flows With SPH, Journal of Computational Physics, 1994, 399-406.10.1006/jcph.1994.1034
  14. [14] THOMS M.A., CHITTY E.C., GILDEA M.L., T'KINDT C.M., Constitutive Soil Properties for Cuddeback Lake, California and Carson Sink, Nevada, Raport NASA/CR-2008-215345, NASA Langley Research Center's (LaRC), 2008.
  15. [15] JICHONG AN, Soil Behavior under Blast Loading, PhD thesis, University of Nebraska, Lincoln 2010.
DOI: https://doi.org/10.2478/sgem-2014-0022 | Journal eISSN: 2083-831X | Journal ISSN: 0137-6365
Language: English
Page range: 3 - 8
Published on: Feb 28, 2015
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Andrzej Danilewicz, Zbigniew Sikora, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.