Pore scale modeling of drainage displacement patterns in association with geological sequestration of CO2
The data include the following: 1. Simulation input files (parameters used in free energy Lattice Boltzmann simulations). 2. Results from these simulations and the corresponding analysis, as presented in the manuscript "Pore scale modeling of drainage displacement patterns in association with geological sequestration of CO2". Free energy lattice Boltzmann method: A thermodynamically consistent numerical scheme to solve the hydrodynamic equations of motion, associated with two-phase flow at the pore-scale. Simulations were accelerated by using multiple general-purpose graphics processing units (GPGPUs).
Qatar Carbonates and Carbon Storage Research Centre
qccsrc@imperial.ac.uk
,
United Kingdom
email:
not available
Role: point of contact
Imperial College London
Ioannis Zacharoudiou
London,
United Kingdom
email:
i.zacharoudiou@imperial.ac.uk
Role: author
Imperial College London
Ioannis Zacharoudiou
London,
United Kingdom
email:
i.zacharoudiou@imperial.ac.uk
Role: point of contact
Data Quality
Free energy lattice Boltzmann method: A thermodynamically consistent numerical scheme to solve the hydrodynamic equations of motion, associated with two-phase flow at the pore-scale. Simulations were accelerated by using multiple general-purpose graphics processing units (GPGPUs).
INSPIRE Implementing rules laying down technical arrangements for the interoperability and harmonisation of Geology
Commission Regulation (EU) No 1089/2010 of 23 November 2010 implementing Directive 2007/2/EC of the European Parliament and of the Council as regards interoperability of spatial data sets and services
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