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Volumn 19, Issue 3, 2007, Pages 223-232

Improved velocity projection for the material point method

Author keywords

GIMP; Material Point Method; Meshless methods; MPM; PIC

Indexed keywords

COMPUTATIONAL METHODS; COMPUTER SIMULATION; DATA TRANSFER; ERROR ANALYSIS; INFORMATION TECHNOLOGY;

EID: 34250172438     PISSN: 15261492     EISSN: None     Source Type: Journal    
DOI: None     Document Type: Article
Times cited : (44)

References (21)
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  • 5
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    • Tulsa, Oklahoma, March 6-7
    • Bardenhagen, S. G. (2006): Completeness of the Material Point Method. Second Annual MPM Workshop, Tulsa, Oklahoma, March 6-7, 2006.
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  • 8
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    • Implicit time integration for the material point method: Quantitative and algorithmic comparisons with the finite element method
    • Guilkey, J. E.; Weiss, J. A. (2003): Implicit time integration for the material point method: quantitative and algorithmic comparisons with the finite element method. International Journal for Numerical Methods in Engineering, vol. 57, pp. 1323-1338.
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    • Guilkey, J.E.1    Weiss, J.A.2
  • 9
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    • Computational modeling of multicellular constructs with the material point method
    • Guilkey, J. E.; Hoying, J. B.; Weiss, J. A. (2006): Computational modeling of multicellular constructs with the material point method, Journal of Biomechanics, vol. 39, pp. 2074-2086.
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    • Guilkey, J.E.1    Hoying, J.B.2    Weiss, J.A.3
  • 10
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    • Calculation of J-Integral and Stress Intensity Factors using the Material Point Method
    • Guo, Y.; Nairn, J. A. (2004): Calculation of J-Integral and Stress Intensity Factors using the Material Point Method. CMES: Computer Modeling in Engineering & Science, vol. 6, pp. 295-308.
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    • Guo, Y.1    Nairn, J.A.2
  • 11
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    • An unconditionally stable, energy-momentum consistent implementation of the material-point method
    • Love, E.; Sulsky, D. L. (2006): An unconditionally stable, energy-momentum consistent implementation of the material-point method. Com puter Methods in Applied Mechanics and Engineering; vol. 195, pp. 3903-3925.
    • (2006) Com puter Methods in Applied Mechanics and Engineering , vol.195 , pp. 3903-3925
    • Love, E.1    Sulsky, D.L.2
  • 12
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    • Multiscale Simulation of Nanoindentation Using the Generalized Interpolation Material Point (GIMP) Method, Dislocation Dynamics (DD) and Molecular Dynamics (MD)
    • Ma, J.; Liu, Y.; Lu, H; Komanduri, R. (2006): Multiscale Simulation of Nanoindentation Using the Generalized Interpolation Material Point (GIMP) Method, Dislocation Dynamics (DD) and Molecular Dynamics (MD). CMES: Computer Modeling in Engineering & Science, vol. 16, pp. 41-56.
    • (2006) CMES: Computer Modeling in Engineering & Science , vol.16 , pp. 41-56
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  • 13
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    • Multiscale Simulation Using Generalized Interpolation Material Point (GIMP) Method and Molecular Dynamics (MD)
    • Ma, J.; Lu, H.; Wang, B.; Hornung, R; Wissink, A,; Komanduri, R. (2006): Multiscale Simulation Using Generalized Interpolation Material Point (GIMP) Method and Molecular Dynamics (MD). CMES: Computer Modeling in Engineering & Science, vol. 14, pp. 101-118.
    • (2006) CMES: Computer Modeling in Engineering & Science , vol.14 , pp. 101-118
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  • 14
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    • Structured Mesh Refinement in Generalized Interpolation Material Point (GIMP) Method for Simulation of Dynamic Problems
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    • To Appear
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.