Publications

  • Simulation Interpretation of Capillary Pressure and Relative Permeability from Waterflooding Laboratory Experiments in Preferentially Oil-wet Porous Media

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  • Visualization of Spontaneous Imbibition of Carbonated Water at Different Permeability and Wettability Conditions

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  • Wettability on mineral rock surfaces at reservoir conditions

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  • Wettability characterization and alteration for heterogeneous carbonate reservoir rocks

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  • Introduction - Wettability and importance for EOR

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  • Simulation of Capillary Trapping in Three-Phase Displacement Using a Locally Conservative Level Set Approach

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  • Numerical Modelling of Wettability

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  • Use of Industrial Waste to produce Sustainable Building Materials

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  • Ensemble Based method for History Matching Phase IV

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  • COREC - Center for Oil ReCovery

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  • Three-phase capillary pressure, hysteresis and trapping in mixed-wet rock drainage

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  • Digital EOR from pore to core

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  • Fault Leakage Detection from Pressure Transient Analysis

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  • Understanding of CO2 dissolution in Water/Oil by convection driven mixing and wettability alteration (UNCOVER)

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  • IORCoreSim - Research simulator to explore possible EOR mechanisms at the core scale and beyond

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  • Insight into core scale oil release from pore scale simulations

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  • The National IOR Centre of Norway

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  • Lattice-Boltzmann Simulation of Osmosis Effect During Low-Salinity Wateflooding

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  • Lattice-Boltzmann Simulation of Osmosis Effect During Low-Salinity Waterflooding

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  • Design and testing of experimental set-up for investigation of convection during CO2-transport in porous media

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  • Laying a foundation for CO2 business cases in South Eastern Europe

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  • Challenges associated with Quartz Crystal Microbalance with Dissipation (QCM-D) as a wettability screening tool

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  • How far into the reservoir is mechanical degradation of polymers an issue?

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  • Wind-Powered CO2 and water injection at NCS

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  • Collaboration on polymers to recover more oil

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  • Chemical methods for in-depth diversion

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  • Evaluate fault stability with uncertainty in in-situ stresses and geomechanical parameters

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  • An Array API for Finite Difference Methods

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  • Wettability Estimation by Oil Adsorption Using Quartz Crystal Microbalance with Dissipation QCM-D. SPE-190882-MS

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  • Sulphate in Original Reservoir Chalk Rocks: Release of Sulphate by Desulphated Sea Water and Effects on Wettability - SPE-190844-MS

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  • CO2 Laboratory experiments

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  • Evaluation of porosity change during chemo-mechanical compaction in flooding experiments on Liège outcrop chalk

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  • On the inclusion of mass source terms in a single-relaxation-time

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  • Reservoir Rock Wettability Characterization via surface complexation modelling

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  • Darcy Scale Simulation of Boundary Condition Effects during Capillary Dominated Flow in High Permeability Systems

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  • Incorporating electrostatic effects into the effective stress relation — Insights from chalk experiments

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  • Polymers and polymer-based gelants for improved oil recovery and water control in naturally fractured chalk formations

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  • Subcritical Fracture Growth Modeling in Brittle Solids

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  • Mineral alterations in water wet and mixed wet chalk due to flooding of seawater-like brines

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  • Core scale modelling of EOR transport mechanisms

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  • Polymer-injection for IOR purposes at the Norwegian Continental shelf – micro- and nanoanalytical approach for the understanding of phase-formation and its implication for upscaling

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  • An Experimental Investigation of Polymer Mechanical Degradation at cm and m Scale (SPE-190225-MS)

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  • Petrographic Properties Evaluation by Digital Image Analysis of Thin Sections

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  • Wettability Estimation via Oil Adhesion

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  • Effect of presence of oil and water on chalk

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  • Polymer adsorption at different brine salinities

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  • Synthetic CaCO3 surfaces in aqueous solutions – AFM and Surface Force Apparatus SFA measurements

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  • Particle growth kinetics: A physio-chemical modelling approach

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  • Temperature cycling and its effect on stress-strain relationships in high porosity chalks

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  • Simulaton Tools for Predictng IOR Potental on the Norwegian Contnental Shelf

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  • CO2-EOR & CCS at IRIS

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  • Norway Pumps & Pipes – Cross-industry collaboration

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  • Overview IOR Centre

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  • Digital Image Analysis of Thin Sections for Petrophysical Properties

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  • Water Shut-off in the Alvheim Field

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  • Temperature-Switchable Polymers for Improved Oil Recovery SPE-191317-MS

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  • An Experimental Investigation of Polymer Mechanical Degradation at cm and m Scale

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  • Core Scale Simulation of Spontaneous Solvent Imbibition from HPAM Gel

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  • Modelling of dissolution and precipitation during microbially induced calcium carbonate cementation process using lattice Boltzmann method

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  • Effects of nucleation on mineral dissolution and precipitation predicted from reactive pore scale simulations

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  • Challenges Associated with Quartz Crystal Microbalance with Dissipation (QCM-D) as a Wettability Screening Tool

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  • IMPROVED OIL RECOVERY AND CO2-STORAGE BY CARBONATED WATER INJECTION

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  • Metabolic modelling, reactive transport modelling, and experimental verification of microbial-induced processes in the production of bio-concrete

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  • On the use of viscous pills for conformance control

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  • Norway Pumps & Pipes - Medical Technology Research

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  • Selective electrochemical removal of monovalent and divalent ions from seawater

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  • Capillary Pressure from Core Flooding

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  • EOR in Chalk Reservoirs

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  • Core-Based Evaluation of Associative Polymers as Enhanced Oil Recovery Agents in Oil-Wet Formations

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  • Nasjonalt CO2 verdikjede prosjekt

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  • Thermogel - Testing of a new gel system for in-depth water diversion

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  • In-situ water pressure measurement

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  • ECO-BASE Establishing CO2 enhanced Oil recovery Business Advantages in South Eastern Europe

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  • Ensemble Based method for History Matching Phase III

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  • Three-phase capillary pressure, hysteresis and trapping in mixed-wet rock

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  • Water Diversion for Fractured Chalk Reservoirs

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  • Demonstrating improving scale treatment

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  • COREC - Center for Oil RECovery

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  • Smart water II

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  • CROP - Chemical Rock Optimization

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  • COREC: Overview of Smartwater for chalk experiments at IRIS

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  • Numerical Interpretation of Laboratory Spontaneous Imbibition - Incorporation of the Capillary Back Pressure and How it Affects SCAL SPE-188625-MS

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  • Challenges in Modelling of Inflow Control Devices

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  • The trophic significance of EOR polymers to marine environment – A threat or “treat”?

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  • SPE186094 Modelling of Spontaneous Imbibition Experiments with Porous Disc - On the Validity of Exponential Prediction

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  • Surfactant Flooding

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  • Microbial Methods

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  • Multiphase Flow Parameters

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  • Testing of EOR polymers - part II

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  • Challenges Associated with Quartz Crystal Microbalance With Dissipation (QCM-D) as a Wettability Screening Tool

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  • IORSim: Upscaling of Chemical EOR from lab to field

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  • Comparative Study of Five Outcrop Chalks Flooded at Reservoir Conditions: Chemo-mechanical Behaviour and Profiles of Compositional Alteration

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  • Core flood testing using polymer gel

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  • SPE-179589-PA Disproportionate Permeability Reduction of Water-Soluble Silicates Gelants: Importance of Formation Wettability

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  • Testing av EOR polymers

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  • R & D Highlights and the way forward

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  • AFM study of the adhesion of calcite surfaces in NaCl solutions

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  • International collaboration activities of the CO2GeoNet European Network of Excellence

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  • A model for non-Newtonian flow in porous media at different flow regimes

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  • CO2GeoNet perspective on CO2 Capture and Storage: a vital technology for completing the climate change mitigation portfolio

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  • REPP-CO2: Equilibrium Modelling of CO2-Rock-Brine Systems

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  • 3D Geological Model of Potential Storage: Abandoned Oil and Gas Field LBr-1in the Vienna Basin

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  • LBr-1 – research CO2 storage pilot in the Czech Republic

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  • Enabling onshore CO2 storage in Europe: fostering international cooperation around pilot and test sites

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  • Effects of Clay Wettability on the Flow Properties in Oil Reservoir Rocks

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  • Effects of Ferrous Ion (Fe2 ) on Wettability: Oxidation and Cation-Bridging. SPE-185816-MS

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  • Wettability Estimation by Surface Complexation Simulations. SPE-185767-MS

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  • "Greener" hydrocarbons: Myth or reality?

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  • The IOR Technology Toolbox Key Solutions for Reservoir Mapping and Upscaling

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  • Can we get a beter knowledge on dissoluion processes in chalk by using microluidic chips?

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  • Mineral Dissolution and Precipitation Rate Laws Predicted from Reactive Pore Scale Simulations

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  • Associative Polymers as Enhanced Oil Recovery Agents in Oil-Wet Formations: A Laboratory Approach

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  • Simulation of polymer mechanical degradation in radial well geometry

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  • Silicate Gel for In-depth Placement - Gelation Kinetics and Pre-flush Design

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  • Simulation of Sodium Silicate Water Diversion Using IORSim

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  • Silicate Gel for In-depth Placement: Gelation Kinetics and Pre-flush Design

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  • Integrated approach to CO2 EOR and storage potential evaluation in an abandoned oil field in Czech Republic

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  • EOR Screening and Potential Applications on the Norwegian Continental Shelf (NCS)

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  • Integration of IOR Research Projects through Generic Case Studies

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  • Mineral Dissolution and Precipitation Rate Laws Predicted from Reactive Pore Scale Simulations

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  • Modelling the rheology of two-phase polymer flow

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  • Effect of Mud Invasion on the Determined Low Salinity Water Flooding Potential

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  • Physical Modeling of Rheological Properties of Polymer Solutions for Enhanced Oil Recovery

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  • When Size Matters - Polymer Injectivity in Chalk Matrix

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  • When Size Matters - Polymer Injectivity in Chalk Matrix

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  • EOR Screening and Potential applications on the Norwegian Continental Shelf (NCS)

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  • Temperature-switchable Polymer for Enhanced Oil Recovery

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  • Associative Polymers as Enhanced Oil Recovery Agents in Oil-wet Formations - A Laboratory Approach

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  • Elastic and Plastic Behavior of Chalks at Deviatoric Stress Condition: Experiments Performed with Four Different Brines

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  • Modeling the Rheology of Two-phase Polymer Flow

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  • Rheology of polymeric flows in circular pipes, slits and capillary bundles: analytical solutions from kinetic theory

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  • Wettability Characterization Using the Flotation Technique Coupled with Geochemical Simulation

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  • Simulation of polymer mechanical degradation in radial well geometry

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  • On the estimation of CO2 capillary entry pressure: Implications on geological CO2 storage

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  • COREC Polymer - Environmentally acceptable polymers for chalk

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  • Goliat EOR Screening

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  • Screening of the Potential for Different Injection Water Compositions to Alter Wettability to More Water-Wet, SPE-184918-MS

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  • IOR in a 10 year perspective - Mature Recovery or Enhanced Production Schemes? (MREPS)

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  • ENabling Onshore CO2 Storage in Europe: Fostering European and international cooperation around pilot and test sites

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  • Reactive flow during water flooding - from pore to core

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  • How Stress and Temperature Conditions Affect Rock-Fluid Chemistry and Mechanical Deformation

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  • Modelling of Smart Water insight from pore scale and translation to field scale

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  • Chemical Screening and Evaluation for Water Management in Carbonate Naturally Fractured Reservoirs – Part I

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  • Chemical Screening and Evaluation for Water Management in Carbonate Naturally Fractured Reservoirs – Part II

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  • Degradation og EOR chemicals

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  • Xurography for microfluidics on a reactive solid

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  • Can we get a better knowledge on chalk dissolution processes using microfluidic chips?

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  • Shealding of EOR chemicals

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  • Can we get a beter knowledge on solid dissoluion processes/oil mobilizaion using microluidic chips?

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  • Core flood tests/formation damage tests

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  • An improved lattice Boltzmann method for simulating advective–diffusive processes in fluids

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  • Investigation of Reservoir Dynamics Based on Logging While Drilling Data

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  • Removal of mud components from reservoir sandstone rocks

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  • EOR Screening and Potential Applications on the Norwegian Continental Shelf

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  • Enabling onshore CO2 storage in Europe: fostering international cooperation around pilot and test sites

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  • "Greening" hydrocarbons: myth or reality?

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  • LBr-1 – research CO2 storage pilot in the Czech Republic

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  • Can we get more knowledge on solid dissolution processes using microfluidic chips?

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  • Effects of mud invasion on nanotechnology applications?

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  • A Model for Non-Newtonian Flow in Porous Media at Different Flow Regimes

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  • An Array API for FDM

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  • IORCoreSim

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  • Dynamic modelling and simulations of CO2 injection

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  • Pore scale simulation and non-Newtonian flow

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  • Simulating gelation of silica for in-depth reservoir plugging using IORSim as an add on tool to ECLIPSE

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  • Summary of (mainly) Polymer Research @ IOR Centre

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  • Conformance control by sodium silicate - comparision of products with different alkalinity

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  • Characterization of wettability

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  • A Model for Non-Newtonian Flow in Porous Media at Different Flow Regimes

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  • Quantifying the microscopic morphology of SEM microscopy images

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  • Impact of Choke Valves on the IOR Polymer Flooding Lessons Learned from Large Scale Tests

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  • Simulating gelation of silica for in-depth reservoir plugging using IORSim as an add on tool to ECLIPSE

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  • Performance Benefits of Associative Polymers in Chemical EOR Applications

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  • Water Control Chemicals for Improved Oil Recovery Applications in Naturally Fractured Chalk Formations - Highlights from SPE-180024 and SPE-180128

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  • IOR Review of experimental data and building a prototype IRIS-lab database

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  • A Model for Non-Newtonian Flow in Porous Media at Different Flow Regimes

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  • Water-Soluble Silicate Gelants for Disproportionate Permeability Reduction: Importance of Formation Wetting and Treatment Conditions

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  • Water-Soluble Silicate Gelants for Disproportionate Permeability Reduction: Importance of Formation Wetting and Treatment Conditions

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  • Fluid-Flow during EOR Experiments in Chalk: insights using SEM-MLA, EMPA and NanoSIMS Applications

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  • Polymer flooding in sandpacks with a dual-porosity

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  • Polymer flooding in sandpacks with a dual-porosity

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  • Microscopic modeling of confined crystal growth and dissolution

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  • Mechanisms for trapping and mobilization of residual fluids during capillary-dominated three-phase flow in porous rock

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  • Vi kan lagre CO2 og samtidig produsere olje

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  • Studies of mineralogical changes for the understanding of Enhanced Oil Recovery mechanisms at pore-scale

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  • Xurography for microfluidics in reactive systems: the example of the calcite dissolution

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  • SPE-180128-MS: Water-Soluble Sodium Silicate Gelants for Water Management in Naturally Fractured Carbonate Reservoirs

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  • SPE 180088-MS Experimental Validation of a Pore-Scale Derived Dimensionless Capillary Pressure Function for Imbibition under Mixed-Wet Conditions

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  • Level Set Approach for Multiphase Motion with Isolated Ganglia on the Pore Scale

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  • Microbial mechanisms on the enhancement of hydrocarbons

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  • Level-set simulation of capillary-controlled displacement on the pore scale with mixed wettability

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  • On the effect of wettability, hysteresis, and spreading films on three-phase fluid flow in porous

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  • Level set approach for multiphase motion with isolated ganglia on the pore scale

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  • Test for Removal of Surfactant from Scale Inhibitor Solution

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  • Mastering the EOR challenges

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  • Interaction between two calcite surfaces, in nano-scale, as a function of fluid composition

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  • Flow - an open source research tool for reservoir simulation

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  • IORSim - an add on tool to ECLIPSE for simulating IOR processes

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  • Resistivity measurements and polymer flooding of sandpacks with dual-porosity

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  • A simulation study of a polymer flooding experiment in porous silica sand

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International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no
International Research Institute of Stavanger
Mailing address:
Visiting address:
P.O. Box 8046, N-4068 Stavanger, Norway
Prof. Olav Hanssensvei 15, 4021 Stavanger


Phone:
Fax:

+47 51 87 50 00
+47 51 87 52 00

General email address: firmapost@iris.no