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Two-Dimensional Elastic-Plastic Flow

Chapter
Part of the Scientific Computation book series (SCIENTCOMP)

Abstract

The equations listed below are used by the HEMP computer program to solve problems in elasticity and plasticity in plane geometry or cylindrical geometry including rotation about the axis of cylindrical symmetry.

Keywords

Rayleigh Wave Sound Speed Plane Geometry Cylindrical Geometry Cylindrical Symmetry 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References

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    M. Reiner: Twelve Lectures on Theoretical Rheology ( North-Holland, Amsterdam 1949 )zbMATHGoogle Scholar
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    G. Maenchen, J. Nuckolls: Calculations of Underground Explosions, Proceedings of the Geophysical Laboratory, Lawrence Radiation Laboratory Cratering Symposium, Lawrence Radiation Laboratory, Report UCRL-6438, Part I I (1961)Google Scholar
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    E.D. Giroux: HEMP User’s Manual, Lawrence Livermore National Laboratory, UCRL-51079 Rev. 1, (1973)Google Scholar
  4. [4.4]
    K.H. Warren: HEMP DS User’s Manual, UCID-18075 Rev 1 (Feb. 1983)Google Scholar
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    S. Timoshenko: Theory of Elasticity ( McGraw-Hill, New York 1951 )zbMATHGoogle Scholar
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    J. Von Neumann, R.D. Richtmyer: J. Appl. Phys. 21, 232 (1950)MathSciNetADSzbMATHCrossRefGoogle Scholar
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    M.L. Wilkins: Use of Artificial Viscosity in Multidimensional Fluid Dynamic Calculations, J. Computational Phys. 36, No. 3, (1980)Google Scholar
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    J.A. Viecelli: Applications of the TENSOR Code to the Calculation of Rayleigh Waves, Lawrence Livermore National Laboratory Report UCRL 50992 (Jan. 1971)Google Scholar
  9. [4.9] M.L. Wilkins: Calculation of Surface and Ground Waves from Above-Ground and Underground Explosions, UCRL-93369 Rev. 1 (Nov. 1971).
    Prepared for the Proceedings of the Third International Colloquium on Gasdynamics of Explosions and Reactive Systems, International Academy of Astronautics, Marseille, France, 12–17 Sept. 1971 1971Google Scholar
  10. [4.10]
    M.L. Wilkins, R.D. Streit, J.E. Reaugh: Cumulative-Strain-Damage Model of Ductile Fracture: Simulation and Prediction of Engineering Fracture Tests, UCRL-53058 (Oct. 1980)CrossRefGoogle Scholar

Copyright information

© Springer-Verlag Berlin Heidelberg 1999

Authors and Affiliations

  1. 1.Lawrence Livermore National LaboratoryLivermoreUSA

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