A semi-analytical method is suggested to determine the stress intensity factor (SIF) of two-dimensional (2D) crack problems. In it, the singularity is eliminated from the computational domain by the fractal two level finite element method (F2LFEM). In the present method, the fractal geometry concept and two level finite element method (2LFEM) are employed to automatically generate an infinitesimal mesh and transform these large number of degrees of freedom around the crack tip to a small set of generalized coordinates. By taking advantage of the same stiffness of 2D elements with similar shape, one transformation of the stiffness for the first layer of mesh is enough for all. This simple method is very economical in terms of computational t...
A cracked thick plate subjected to edge moment and transverse loading was customarily analysed eithe...
We extend the two-level finite element method (2LFEM) to the accurate analysis of axisymmetric crack...
The fractal finite element method (FFEM) was extended to calculate the stress intensity factor (SIF)...
Fractal two-level finite-element method has been extended to mode II crack problems. In order to enc...
The fractal two-level finite element method has been proved to be very efficient and accurate for de...
Fractal two level finite element method (F2LFEM) has been extended to calculate the mixed mode stres...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
Fractal two level finite element method (F2LFEM) for the analysis of linear fracture problems subjec...
A technique for calculating moment intensity factors (MIF) and stress intensity factors (SIF) for th...
The fractal finite element method, previously developed for stress intensity factor calculation for ...
A new method to evaluate the stress intensity factors for plates of arbitary shape by conventional f...
A semi-analytical method namely fractal finite element method is presented for the determination of ...
published_or_final_versionCivil and Structural EngineeringDoctoralDoctor of Philosoph
A cracked thick plate subjected to edge moment and transverse loading was customarily analysed eithe...
We extend the two-level finite element method (2LFEM) to the accurate analysis of axisymmetric crack...
The fractal finite element method (FFEM) was extended to calculate the stress intensity factor (SIF)...
Fractal two-level finite-element method has been extended to mode II crack problems. In order to enc...
The fractal two-level finite element method has been proved to be very efficient and accurate for de...
Fractal two level finite element method (F2LFEM) has been extended to calculate the mixed mode stres...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
The fractal two-level finite element method is extended to the free vibration behavior of cracked be...
Fractal two level finite element method (F2LFEM) for the analysis of linear fracture problems subjec...
A technique for calculating moment intensity factors (MIF) and stress intensity factors (SIF) for th...
The fractal finite element method, previously developed for stress intensity factor calculation for ...
A new method to evaluate the stress intensity factors for plates of arbitary shape by conventional f...
A semi-analytical method namely fractal finite element method is presented for the determination of ...
published_or_final_versionCivil and Structural EngineeringDoctoralDoctor of Philosoph
A cracked thick plate subjected to edge moment and transverse loading was customarily analysed eithe...
We extend the two-level finite element method (2LFEM) to the accurate analysis of axisymmetric crack...
The fractal finite element method (FFEM) was extended to calculate the stress intensity factor (SIF)...