Civil Engineer with Knowledge in GIS, hydrological modeling, and geospatial analysis. Proficient in ArcGIS and remote sensing for flood risk assessment, drought prediction, and land-use planning. Experience as a Project Assistant in water resource and geospatial projects. Former faculty, teaching Hydrology, Water Resources Engineering, and Open Channel Flow, while mentoring students in GIS-based projects. Passionate about applying geospatial technology for data-driven decision-making and sustainable development.
MTech (Flood Susceptibility mapping using Analytical and Fuzzy Analytical Hierarchy Process), The flood susceptibility maps were created using the analytic hierarchy process (AHP) and fuzzy analytic hierarchy process (FAHP) with seven flood conditioning factors. The above models were utilized to calculate the weighting value of the conditioning factors in this investigation. To compare the accuracy of the maps prepared by both AHP and FAHP method, validation is done by comparing the results to the flood inventory map which was prepared by available informations of previous flood data.
BTech (Soil Stabilization by Adding Admixture as Fly ash), Analysis of maximum dry density and optimum moisture content of soil by adding fly ash as admixture at different proportions. Analysis of index properties of soil along with the analysis of maximum dry density and optimum moisture content of soil. Observation of the compressive stress of soil in UCS test by taking the omc and mdd of the admixture plus soil at different proportions.