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Contacts Between Many Bodies

Identyfikatory
Warianty tytułu
Konferencja
German-Polish Workshop on Dynamical Problems in Mechanical Systems (8 ; 31.08-5.09.2003 ; Schmochtitz, Germany)
Języki publikacji
EN
Abstrakty
EN
In this paper the calculation and administration for motion and contacts of systems is investigated that are consisting of many colliding bodies. Both, two dimensional (2D) and three dimensional (3D) cases are investigated. In order to reduce the high calculation time that is usually spent on collision detection, sophisticated sorting algorithms for the neighborhood search are required. Here, these algorithms are compared with respect to their efficiency, for systems consisting of spherical 3D bodies of different sizes. The very time consuming collision detection then only needs to be done for neighboring bodies. The collision detection for polygonal bodies as well as the determination of the contact geometry is alluded. In order to simulate a very high number of contacting bodies, methods from Molecular Dynamics are used. By means of constitutive equations, the contact force can be determined, as addressed for polygonal bodies.
Rocznik
Strony
101--114
Opis fizyczny
Bibliogr. 18 poz.
Twórcy
autor
  • Institute B of Mechanics, University of Stuttgart
  • DelftChemTech, TU Delft
autor
  • Institute B of Mechanics, University of Stuttgart
autor
  • DelftChemTech, TU Delft
Bibliografia
  • 1. Allen, M.P., Tildesley, D.J., 1989, Computer Simulations of Liquids, Clarendon Press, Oxford.
  • 2. D’Addetta, G.A., Kun, F., Ramm, E., 2002, On the Application of a Discrete Model to the Fracture Process of Cohesive Granular Materials, Granular Matter., 4 (2), 77-90.
  • 3. Kishino, Y., 2001 (ed.), Powders &Grains, Balkena, Rotterdam.
  • 4. Lätzel, M., Luding, S., and Herrmann, H.J. (ed.), 2001, Continuous and Discontinuous Modelling of Cohesive Frictional Materials, Lecture Notes in Physics 568, Springer, Berlin.
  • 5. Luding, S., 1998, Collisions & Contacts between Two Particles, in: H.J. Herrmann, J.-P. Hovi and S. Luding (ed.), Physics of Dry Granular Media, NATO ASI Series E350, Kluwer Academic Publishers, Dordrecht, 285.
  • 6. Luding, S., 1998, Die Physik trockener granularer Medien, Logos Verlag, Berlin.
  • 7. Matuttis, H.-G., Luding, S., Herrmann, H.J., 2000, Discrete Element Methods for the Simulation of Dense Packings and Heaps made of Spherical and Non-Spherical Particles, Powder Technology, 109, 278-292.
  • 8. Muth, B., 2001, Simulation von Kontaktvorgdngen einfacher Korper mit Methoden der Molekulardynamik, Diploma Thesis, University of Stuttgart.
  • 9. O’Rourke, J., 1993, Computational Geometry in C, Cambridge University Press, Cambridge.
  • 10. Peters, B., Dźiugys, A., 2002, Numerical Simulation of the Motion of Granular Material Using Object-Oriented Techniques, Comp. Methods Appl. Meeh. Eng., 191, 1983-2007.
  • 11. Pfister, J., 1999, Implementierung von Reibkontakten fur nichtlineare Finite Elemente Berechnungen, Diploma Thesis, University of Stuttgart.
  • 12. Püschel, T., Luding, S. (ed.), 2001, Granular Gases, Lecture Notes in Physics, 564, Springer, Berlin.
  • 13. Rapaport, D.C., 1995, The Art of Molecular Dynamics Simulation, Cambridge University Press, Cambridge.
  • 14. Schiehlen, W., 1986, Technische Dynamik, B.G. Teubner, Stuttgart.
  • 15. Schinner, A., 1999, Fast Algorithms for the Simulations of Polygonal Particles, Granular Matter., 2(l),35-43.
  • 16. Tzaferopoulos, M.A., 1995, On the Numerical Modeling of Convex Particle Assemblies with Friction, Comp. Methods Appl. Meeh. Eng., 127, 371-386.
  • 17. Vu-Quoc, L., Zhang, X., Walton, O.R., 2000, A 3-D Discrete-Elemente Method for Dry Granular Flows of Ellipsoidal Particles, Comp. Methods Appl. Meeh. Eng., 187,483-528.
  • 18. Wriggers, P., 2002, Computational Contact Mechanics, J. Wiley & Sons, Chichester.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA1-0005-0129
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