Title of article :
Simple modifications for stabilization of the finite point method
Author/Authors :
B. BOROOMAND، نويسنده , , A. A. Tabatabaei، نويسنده , , E. Onate، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
A stabilized version of the finite point method (FPM) is presented. A source of instability due to the
evaluation of the base function using a least square procedure is discussed. A suitable mapping is
proposed and employed to eliminate the ill-conditioning effect due to directional arrangement of the
points. A step by step algorithm is given for finding the local rotated axes and the dimensions of
the cloud using local average spacing and inertia moments of the points distribution. It is shown that
the conventional version of FPM may lead to wrong results when the proposed mapping algorithm is
not used.
It is shown that another source for instability and non-monotonic convergence rate in collocation
methods lies in the treatment of Neumann boundary conditions. Unlike the conventional FPM, in
this work the Neumann boundary conditions and the equilibrium equations appear simultaneously in
a weight equation similar to that of weighted residual methods. The stabilization procedure may be
considered as an interpretation of the finite calculus (FIC) method. The main difference between the
two stabilization procedures lies in choosing the characteristic length in FIC and the weight of the
boundary residual in the proposed method. The new approach also provides a unique definition for
the sign of the stabilization terms. The reasons for using stabilization terms only at the boundaries is
discussed and the two methods are compared.
Several numerical examples are presented to demonstrate the performance and convergence of the
proposed methods
Keywords :
Finite point method , Meshless method , Stabilized method
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering