After greater than two years of joint analysis, Total, Lawrence Livermore National Laboratory (LLNL) and Stanford University launch GEOSX, an open supply simulator for large-scale geological carbon dioxide (CO2) storage.
GEOSX was developed utilizing superior new applied sciences in high-performance computing and utilized arithmetic and goals to enhance the administration and security of geological CO2 repositories. Its computing efficiency is unmatched so far.
The open-source nature of GEOSX goals to make sure a excessive degree of transparency, sharing and neighborhood help to pave the best way for the large-scale improvement of Carbon Capture, Utilization and Storage (CCUS) applied sciences.
“We are happy with the event of GEOSX, the primary device in a position to simulate the geological storage of CO2 on the gigaton scale. We are making its supply code overtly out there to offer the scientific neighborhood the means to take part within the improvement of CCUS,” mentioned Marie-Noëlle Semeria, Total’s Chief Technology Officer. “GEOSX positions Total, Lawrence Livermore National Laboratory and Stanford as technological leaders within the simulation of CO2 geological storage, a significant lever for reaching carbon neutrality.”
“GEOSX combines breakthrough scientific computing and high-performance applied sciences that can permit Total and the neighborhood to speed up the implementation of future large-scale storage tasks, crucial to attain carbon neutrality goals on a world scale,” mentioned Professor Hamdi Tchelepi, Chairman of Energy Resources Engineering Department and the mission’s lead analysis scientist for Stanford. “The improvements ensuing from our joint analysis program open the door to a brand new period for the modelling of geological storage of CO2.”
“We are excited to be working with Total and Stanford to help widespread deployment of carbon seize, utilization, and storage tasks. Climate change is a world problem, and we view CCUS as a essential part within the transition to a low-carbon financial system,” mentioned Pat Falcone, LLNL’s deputy director for Science and Technology. “It can also be thrilling to see the cutting-edge capabilities being enabled by our next-generation supercomputing platforms and gratifying to have created this new functionality as a part of such an efficient relationship between the commercial sector, the analysis neighborhood and a nationwide laboratory.”
GEOSX is the primary main end result of the five-year FC-MAELSTROM analysis mission launched in 2018 by Total, Stanford University School of Earth, Energy and Environmental Sciences, and LLNL. It attracts on every companion’s 20-plus years of experience in simulation and high-performance computing analysis.
(Source: Total – Image: GEOSX)
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