Research Scholar In Computational Mechanics
Current๐ฒ๐๐ ๐น๐๐๐๐๐๐๐๐๐๐๐๐๐๐๐ -โ Conducting Mathematical and Numerical Modeling: Employing advanced techniques for the mathematical and numerical modeling of linear, non-linear, and coupled field fracture mechanics problems using the Element Free Galerkin Method (EFGM).โ Innovative Implementation of IMMLS-based EFGM: Spearheading the implementation of a novel Interpolating Modified Moving Least Squares (IMMLS) based EFGM to address and resolve singularity issues encountered in Moving Least Squares Approximation (MLSA) based EFGM.โ Fracture Parameter Evaluation: Systematically evaluating fracture parameters for problems posed under various conditions, including isotropic, orthotropic, isotropic thermoelastic, and orthotropic thermoelastic Linear Elastic Fracture Mechanics (LEFM).โ Analysis of Coupled Anisotropic Hygrothermal Fracture Mechanics (AHFM): Employing expertise in coupled field analysis to assess mixed mode stress intensity factors in the context of Anisotropic Hygrothermal Fracture Mechanics (AHFM).โ Evaluation of Magneto-Electro-Elastic Fracture Mechanics (MEE-FM): Conducting detailed analyses within Coupled MEE-FM, contributing to the evaluation of electric and magnetic intensity factors in fracture scenarios.โ Nonlinear Analysis in Elastoplastic Fracture Mechanics (EPFM): Undertaking in-depth nonlinear analysis in EPFM to precisely evaluate the plastic zone size ahead of the crack tip, enhancing understanding of material behavior under complex conditions.โ Research Design and Methodology Development: Formulating and refining research design and methodologies to address specific challenges in computational fracture mechanics, ensuring methodical and rigorous investigations.โ Publication and Dissemination of Research Findings: Collaborating on the preparation and publication of research findings in reputable journals, contributing to the dissemination of valuable insights in the field.