
معرفی
Kamaljit Singh is an Associate Professor at the Institute for GeoEnergy Engineering (IGE) within the School of Energy, Geoscience, Infrastructure and Society at Heriot-Watt University in Edinburgh, UK. He has held this position since 2021, after serving as an Assistant Professor at the same institution from 2019 to 2021. Prior to joining Heriot-Watt, he held research positions at Imperial College London, the European Synchrotron Radiation Facility in France, and the Max-Planck Institute in Germany. His research employs advanced imaging techniques to study fluid dynamics in porous media with applications to energy storage and environmental challenges.
Dr. Singh's educational background includes:
- PhD in Civil Engineering from the University of New South Wales at Australian Defence Force Academy, Australia (2004-2009)
- M.E. in Environmental Engineering from Punjab Engineering College/Panjab University, India (2000-2002)
- B.E. in Civil Engineering from GNE/Punjab Technical University, India (1996-2000)
His primary research focuses on 3D imaging of fluid flow in permeable media using both in-house and synchrotron X-ray micro-CT. His current projects investigate H2 and CO2 storage in subsurface rocks, pore-to-core scale fluid displacement dynamics, wettability effects on multiphase flow, multi-scale rock characterization, and thermoregulation in termite nests for bio-inspired building design. Dr. Singh's work directly contributes to UN Sustainable Development Goals related to clean energy and climate action, with his research group (https://digiporflow.site.hw.ac.uk) advancing digital imaging techniques for porous flow systems.
Analysis of Dr. Singh's recent publications (2024-2025) reveals a strong emphasis on hydrogen storage mechanics in geological formations, particularly examining permeability evolution and deformation in sandstones under cyclic loading. His work also maintains significant focus on CO2 sequestration in carbonate reservoirs and has produced notable interdisciplinary research on termite nest ventilation as a model for sustainable building design. His methodological approach consistently integrates advanced imaging techniques with computational modeling to address energy transition challenges.
Dr. Singh serves as Global Course Leader for Reservoir Engineering (MSc) and teaches Introduction to Petroleum Engineering (undergraduate). His research has received considerable media attention, including coverage in The New York Times, The Straits Times, and Süddeutsche Zeitung for his work on bio-inspired ventilation systems. With 41 research publications, 4 datasets, and 7 invited talks, he maintains an active research program focused on solving critical challenges in subsurface energy storage and sustainable engineering.


