Title of article :
DESIGN OF ENERGY CONSERVING ALGORITHMS FOR FRICTIONLESS DYNAMIC CONTACT PROBLEMS
Author/Authors :
T. A. LAURSEN، نويسنده , , Nitesh V. Chawla، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Abstract :
This paper proposes a formulation of dynamic contact problems which enables exact algorithmic conservation
of linear momentum, angular momentum, and energy in nite element simulations. It is seen that a Lagrange
multiplier enforcement of an appropriate contact rate constraint produces these conservation properties. A
related method is presented in which a penalty regularization of the aforementioned rate constraint is utilized.
This penalty method sacri ces the energy conservation property, but is dissipative under all conditions of
changing contact so that the global algorithm remains stable. Notably, it is also shown that augmented
Lagrangian iteration utilizing this penalty kernel reproduces the energy conserving (i.e. Lagrange multiplier)
solution to any desired degree of accuracy. The result is a robust, stable method even in the context of
large deformations, as is shown by some representative numerical examples. In particular, the ability of the
formulation to produce accurate results where more traditional integration schemes fail is emphasized by the
numerical simulations
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering