most citedEngineering meter-scale porous media flow experiments for quantitative studies of geological carbon sequestration

2 citations · 7 across the 5 of their papers we have counts for

collaborators

5 papers

physics.geo-ph20232 cited

Engineering meter-scale porous media flow experiments for quantitative studies of geological carbon sequestration

Kristoffer Eikehaug, Malin Haugen, Olav Folkvord +6

This technical note describes the FluidFlower concept, a new laboratory infrastructure for geological carbon storage research. The highly controlled and adjustable system produces…

physics.flu-dyn20232 cited

Direct comparison of numerical simulations and experiments of CO injection and migration in geologic media: Value of local data and predictability

Lluís Saló-Salgado, Malin Haugen, Kristoffer Eikehaug +3

The accuracy and robustness of numerical models of geologic CO sequestration are almost never quantified with respect to direct observations that provide a ground truth. Here,…

physics.geo-ph20232 cited

Physical variability in meter-scale laboratory CO injections in faulted geometries

Malin Haugen, Lluis Salo-Salgado, Kristoffer Eikehaug +7

Carbon, capture, and storage (CCS) is an important bridging technology to combat climate change in the transition towards net-zero. The FluidFlower concept has been developed to vi…

physics.geo-ph20231 cited

Room-scale CO2 injections in a physical reservoir model with faults

Martin A. Ferno, Malin Haugen, Kristoffer Eikehaug +7

We perform a series of repeated CO2 injections in a room-scale physical model of a faulted geological cross-section. Relevant parameters for subsurface carbon sequestration, includ…

physics.flu-dyn2023

PoroTwin: A digital twin for a FluidFlower rig

Eirik Keilegavlen, Eivind Fonn, Kjetil Johannessen +6

We present a framework for integrated experiments and simulations of tracer transport in heterogeneous porous media using digital twin technology. The physical asset in our setup i…