AbstractAt 3000 meters depth liquid CO2 is denser than seawater and hence will be stored as a “lake” on the deep ocean floor, which is expected to gradually be dissolved in seawater. Ocean currents and turbulence will influence the net rate of dissolution by several orders of magnitude compared to molecular diffusion. On the other hand, density stratification induced by dissolved CO2 will tend to dampen the local turbulence and reduce the vertical mixing. It is well known that local topography will alter the currents and turbulence intensity, and hence, change the dissolution rates. Earlier the dissolution of a CO2 lake has been studied through idealized 3D simulations with a flat bottom using MITgcm coupled with GOTM. This new study includ...
Carbon dioxide density-driven dissolution in a water-filled laboratory flume of the dimensions 60~cm...
Numerical analyses are performed to study the fluid dynamic behaviours of the solubility trapping in...
In this thesis we develop a mathematical model describing the migration and trapping of CO2 when inj...
At 3000 meters depth liquid CO2 is denser than seawater and hence will be stored as a “lake” on the ...
AbstractAt 3000 meters depth liquid CO2 is denser than seawater and hence will be stored as a “lake”...
If liquid CO2 is stored as a dense ‘‘lake’’ on the deep ocean floor, it is expected to dissolve in s...
The dissolution from a liquid CO2 lake source located at a flat ocean bottom at 3,000 m depth is inv...
Observations from small-scale (20 to 90 litres) CO2 experiments conducted off the coast of Californi...
Observations from small-scale (20 to 90 litres) CO2 experiments conducted off the coast of Californi...
An analysis of the dissolution and velocity of a single CO2 drop rising from 800 m depth is made. Th...
Global warming is one of the challenges the world faces in the modern era. Therefore, the injection ...
AbstractDissolution of carbon dioxide into water is a key medium-term CO2 plume stabilization proces...
International audienceConvective dissolution is the process by which CO2 injected in geological form...
Within the context of global warming, CO2 storage in geological reservoirs is seen as one of many st...
The sequestration of fossil fuel CO2 in the deep ocean has been discussed by a number of workers, an...
Carbon dioxide density-driven dissolution in a water-filled laboratory flume of the dimensions 60~cm...
Numerical analyses are performed to study the fluid dynamic behaviours of the solubility trapping in...
In this thesis we develop a mathematical model describing the migration and trapping of CO2 when inj...
At 3000 meters depth liquid CO2 is denser than seawater and hence will be stored as a “lake” on the ...
AbstractAt 3000 meters depth liquid CO2 is denser than seawater and hence will be stored as a “lake”...
If liquid CO2 is stored as a dense ‘‘lake’’ on the deep ocean floor, it is expected to dissolve in s...
The dissolution from a liquid CO2 lake source located at a flat ocean bottom at 3,000 m depth is inv...
Observations from small-scale (20 to 90 litres) CO2 experiments conducted off the coast of Californi...
Observations from small-scale (20 to 90 litres) CO2 experiments conducted off the coast of Californi...
An analysis of the dissolution and velocity of a single CO2 drop rising from 800 m depth is made. Th...
Global warming is one of the challenges the world faces in the modern era. Therefore, the injection ...
AbstractDissolution of carbon dioxide into water is a key medium-term CO2 plume stabilization proces...
International audienceConvective dissolution is the process by which CO2 injected in geological form...
Within the context of global warming, CO2 storage in geological reservoirs is seen as one of many st...
The sequestration of fossil fuel CO2 in the deep ocean has been discussed by a number of workers, an...
Carbon dioxide density-driven dissolution in a water-filled laboratory flume of the dimensions 60~cm...
Numerical analyses are performed to study the fluid dynamic behaviours of the solubility trapping in...
In this thesis we develop a mathematical model describing the migration and trapping of CO2 when inj...