As a GIS Specialist with a robust background in spatial data management, project coordination, and planning support, I leverage geospatial technologies and open-source solutions to drive informed decision-making and enhance disaster resilience. My expertise encompasses spatial data governance, advanced GIS methodologies, and the integration of AI-powered systems for environmental monitoring, supporting initiatives aimed at sustainable development and climate resilience.
I hold a Master's degree in Spatial Engineering with a specialisation in Environmental Systems. My academic journey centered on developing innovative geospatial solutions for disaster prediction and sustainable urban planning, including a capstone project titled "Digital Twin with IoT for Real-Time Monitoring and Visualisation for Indoor & Outdoor Environments," which initiated an innovative model for real-time environmental monitoring and natural disaster prediction. This academic work complements my extensive professional experience, where I have consistently applied spatial analysis to urban regeneration, disaster recovery, and environmental management projects.
I am highly skilled in the Esri suite (ArcGIS Pro, ArcGIS Enterprise, ArcGIS Online, and Collector apps), as well as QGIS, GeoServer, GeoNetwork, and FME. Additionally, I bring strong proficiency in Python and SQL to streamline data processing, spatial analysis, and visualization, ensuring that geospatial data is effectively utilized to inform key projects and policies.
My commitment to staying at the forefront of GIS technology drives me to engage with professional development opportunities, attend industry conferences, and continually refine my skills. With a passion for sustainable urban development and environmental resilience, I aim to contribute to cutting-edge projects that promote climate adaptation and net-zero goals, helping to create more resilient and sustainable communities.
Ac-Score is a Number Between 150-850 Representing Your Entire Academic Activities. This Number Not Only Gives You a Vision of Your Strengths and Weaknesses in Your Academic Background but Also Helps You Compare Yourself with Other Competitors in This Domain.
Application of an In-situ Solvent Formation Microextraction Technique Using the Functionalized Ionic Liquids (FILs) as a Green Extractant for Cadmium Determination at Trace Levels in Real and Saline SamplesFirst author
3D simulation of a giant oilfield in calcareous formations and scrutiny study of the interaction of the calculated parameters (Asmari formation in Maroon oilfield, Iran)First author