Summary
Experience
- Led a multidisciplinary team to optimize production from 15 mature wells, increasing daily oil output by 12% (1,500 BOEPD) through advanced artificial lift optimization and re-completion strategies.
- Developed and applied integrated reservoir simulation models (Eclipse, CMG) to forecast production for new drilling campaigns, reducing drilling NPT by 10% and improving well placement accuracy by 15%.
- Managed well intervention projects with a cumulative budget of $5M, successfully reducing operational downtime by 20% and extending average well lifespans by 3 years.
- Designed and implemented a real-time data monitoring and analytics system for offshore platforms, improving incident response time by 30% and significantly enhancing operational safety and efficiency.
- Conducted detailed reservoir characterization studies for 7 major client fields, identifying new opportunities that added 20 MMBOE in proven and probable reserves.
- Performed comprehensive decline curve analysis and material balance calculations for over 100 wells, improving reserve estimations accuracy by 8% for client assets.
- Collaborated with geoscientists to integrate seismic and well log data into robust geological models, resulting in a 25% improvement in understanding reservoir heterogeneity and fluid distribution.
- Authored technical reports and presentations for clients, securing an additional $10M in project funding by clearly demonstrating potential returns on investment for proposed field developments.
Projects
- Led a project to revamp the artificial lift system on an offshore platform, resulting in a sustained 7% increase in oil production rate.
- Implemented real-time data analytics for system monitoring, which reduced unplanned downtime by 15% and optimized operational efficiency.
- Developed a predictive maintenance schedule, extending equipment lifespan by 2 years and reducing maintenance costs by $500K annually.
- Developed and validated a comprehensive numerical model for a shale gas reservoir using CMG simulators, improving production forecasts by 10%.
- Integrated complex geological and geomechanical data, enabling more accurate prediction of fracture network behavior and fluid flow.
- Presented findings to senior management, influencing a $25M investment in optimized well spacing and completion designs.
- Conducted an extensive feasibility study for CO2 Enhanced Oil Recovery in a mature onshore field, predicting an additional 15% recovery factor.
- Performed economic analysis, demonstrating a positive NPV of $30M over a 10-year project life, contingent on successful pilot implementation.
- Simulated various injection scenarios to optimize CO2 slug size and injection rates, minimizing CO2 consumption by 5% while maximizing oil recovery.
Education
- Thesis: "Enhanced Oil Recovery using Nanoparticle-Stabilized Emulsions for Unconventional Reservoirs"
- Published 3 peer-reviewed articles in prestigious industry journals, contributing to advancements in EOR techniques.
- Awarded departmental research fellowship for 3 years based on academic merit and research potential.
- Graduated Summa Cum Laude (Top 5% of class), consistently achieving high academic honors.
- Maintained Dean's List status for all semesters of study, demonstrating exceptional academic performance.
- President of the AIChE Student Chapter, organizing industry seminars and networking events.




