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Emad Jahangir

Emad Jahangir

Researcher Scientist

Center · GEOSCIENCES

Biography

Emad Jahangir is a researcher specializing in geothermal energy, sustainable energy systems, and rock mechanics. His work focuses on optimizing drilling and extraction technologies for deep geothermal resources, particularly through projects such as ORCHYD, where he explores innovative methods such as combining high-pressure water jets (HPWJ) and percussion drilling to improve drilling efficiency in hard rock. His research also addresses the numerical modeling of thermohydraulic exchanges in geothermal systems, comparing the performance of fluids such as supercritical CO₂ and water, as well as the impact of fracture properties on their efficiency. At the same time, Emad Jahangir contributes to the study of the mechanical properties of crystalline rocks, analyzing their behavior under stress and at different scales, from microstructure to industrial applications. His work also includes critical analyses of methods for sizing geothermal heat exchangers, highlighting the limitations of traditional analytical models and their implications for the economic viability of these systems.

Publication(s)

Teaching

Natural Hazards

Guest Lecturer

Natural hazards, damage, and vulnerability; natural risk management; Natural phenomena and event scenarios (intensities and recurrence intervals): floodplains and rising groundwater levels, urban stormwater runoff, torrential events, landslides, subsidence and ground collapse, earthquakes, etc. ; Aggravating human activities, soil and water pollution, “post-mining” situations; Monitoring methods and challenges in event forecasting; Geoprospective, natural hazards, and land-use management; Building codes and standards (introduction to seismic engineering, etc.); Regulatory mapping (urban planning documents, Risk Prevention Plans, etc.); A cindynic approach to risk management and crisis situations.

Geology Internship or Practical Geology Course (for AST 2A only)

Guest Lecturer

One-week observation internship in LARAGNE-MONTEGLIN (Hautes-Alpes)

PhD supervision

  • 2025 Deep geothermal drilling optimization: coupled modeling of percussion and shearing mechanisms to enhance cutting performance UZQUIANO AL-RICABI Fernando
  • 2023 Digital investigation of coupled subsurface THM processes: importance of thermal effects and pressure diffusivity on stress transfers KHEZRI Khashayar
  • 2022 Optimization of the sizing of the surface geothermal installation BEZ Fabien
  • 2015 The impact of shallow underground construction in urban environments RACHDI Sara