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Meshfree particle methods for thin plates
Meshfree particle methods for thin plates












A series of numerical examples and studies of the obtained convergence rates are presented to demonstrate the accuracy and effectiveness of the developed coupled method. The sub-domains of these methods are conjoined over transition zones by utilising a modified collocation approach which ensures the linear consistency of the approximation field. Free vibration analysis of corrugated-core sandwich plates using a meshfree Galerkin method based on the first-order shear deformation theory. parts of the domain with high gradients and irregular boundaries, whereas the FSM is adopted in the rest of the domain. The complex variable reproducing kernel particle method for bending problems of thin plates on elastic foundations. The RKPM is used in the regions surrounding the cracks, i.e.

meshfree particle methods for thin plates

A straightforward and effective method is developed to accurately integrate these methods, and the obtained coupled technique is utilised for analysing two-dimensional linear elastic plates weakened by arbitrarily shaped perforations or cracks. This work presents a coupling of the finite strip method (FSM) and the meshless reproducing kernel particle method (RKPM), which is inspired by the complementary features of both methods.














Meshfree particle methods for thin plates