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Hydrogen storage in heterogeneous reservoirs: evaluating well configurations an...

Pereira, Pedro; Carneiro, Júlio; Canhoto, Paulo; Pedro, Jorge; Khudhur, Karwan; Mazezo, Augusto

The urgency in mitigating the climate change effects and the expecting rise of energy consumption in the coming decades will require zero-carbon sources like renewables, fossil fuels with carbon capture and storage, and sustainable storage solutions like underground gas storage. Hydrogen geological storage in porous rock formations is expected to play a major role for sustainable energy systems, offering large-...


Interactions and Impacts on the Efficiency of Underground Hydrogen Storage in S...

Pereira, Pedro; Carneiro, Júlio; Canhoto, Paulo; Pedro, Jorge; Khudhur, Karwan; Mazezo, Augusto

This study, part of the H2GeoStore R&D project, investigates underground hydrogen storage in saline aquifers as a solution for large-scale, long-term energy storage to support renewable energy systems. Using reservoir simulations of cyclic hydrogen injection and withdrawal under various conditions and reservoir heterogeneities, the research evaluates performance metrics like injectivity, productivity, and stora...


Hydrogen geological storage in saline aquifers based on seasonal and hourly cyc...

Pereira, Pedro; Canhoto, Paulo; Khudhur, Karwan; Carneiro, Júlio; Pedro, Jorge; Mazezo, Augusto

Underground hydrogen storage (UHS) in saline aquifers is a scalable solution to balance renewable energy intermittency. This study evaluates the techno-operational feasibility of UHS through dynamic numerical simulations using a 3D heterogeneous synthetic model representing real reservoir properties of a saline aquifer. Two operational cyclic profiles (seasonal and hourly) were developed based on real energy da...


Hydrogen geological storage in saline aquifers based on seasonal and hourly cyc...

Pereira, Pedro; Canhoto, Paulo; Khudhur, Karwan; Carneiro, Júlio; Pedro, Jorge; Mazezo, Augusto

Underground hydrogen storage (UHS) in saline aquifers is a scalable solution to balance renewable energy intermittency. This study evaluates the techno-operational feasibility of UHS through dynamic numerical simulations using a 3D heterogeneous synthetic model representing real reservoir properties of a saline aquifer. Two operational cyclic profiles (seasonal and hourly) were developed based on real energy da...


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