An inverse method for estimating thickness and volume with time of a thin CO2 -filled layer at the Sleipner Field, North Sea

Author:

Cowton L. R.1,Neufeld J. A.123,White N. J.1,Bickle M. J.1,White J. C.4,Chadwick R. A.4

Affiliation:

1. Bullard Laboratories, Department of Earth Sciences; University of Cambridge; Cambridge UK

2. BP Institute; University of Cambridge; Cambridge UK

3. Department of Applied Mathematics and Theoretical Physics; University of Cambridge; Cambridge UK

4. British Geological Survey; Keyworth UK

Funder

EU PANACEA consortium

Royal Society University Research Fellowship

BIGCCS Centre

Department of Earth Sciences

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geochemistry and Petrology,Geophysics

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2. Diving-wave time-lapse delay for CO2 thin layer detection;Geophysical Journal International;2024-01-23

3. The interaction of gravity currents in a porous layer with a finite edge;Journal of Fluid Mechanics;2023-09-04

4. References;Storage of Carbon Dioxide in Saline Aquifers: Building confidence by forecasting and monitoring;2023-08-04

5. Composite confining systems: Rethinking geologic seals for permanent CO2 sequestration;International Journal of Greenhouse Gas Control;2023-06

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