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- W2890877223 abstract "We review outcomes from laboratory studies that target CO2 flow and transport in the subsurface across the scales from microns to meters. A key distinctive feature of the CO2/brine system is that it tends to be more capillary dominated than the oil/water system, because of the low viscosity of CO2 as compared to brine. This increases the importance of rock heterogeneity in governing fluid displacement and introduces challenges for researchers to make reliable measurements of characteristic transport (e.g., dispersivity) and multiphase flow properties (e.g., relative permeability and trapping curves). Accurate parameterization of rock heterogeneity can nowadays be achieved thanks to a more widespread use of imaging technology, such as X-ray Computed Tomography, coupled with numerical simulations. This enables identifying general rules for experiment design and to extend experiments to conditions (e.g., flow rates) prevalent in the subsurface, which would be otherwise not attainable in the laboratory. Data gaps still exist, particularly with respect to the characterization of mixed-wet systems, of the hysteretic behavior of capillary pressure and relative permeability curves and of the mixing process at subsurface conditions." @default.
- W2890877223 created "2018-09-27" @default.
- W2890877223 creator A5039896013 @default.
- W2890877223 creator A5061821949 @default.
- W2890877223 date "2019-01-01" @default.
- W2890877223 modified "2023-09-30" @default.
- W2890877223 title "Laboratory Studies to Understand the Controls on Flow and Transport for CO2 Storage" @default.
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