Publications

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

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  • Core scale modelling of EOR transport mechanisms

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  • Particle growth kinetics: A physio-chemical modelling approach

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

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

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  • Polymer adsorption at different brine salinities

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  • Overview IOR Centre

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  • Core Scale Simulation of Spontaneous Solvent Imbibition from HPAM Gel

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

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  • Vil bruke oljeteknologi - på hjertepasienter

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  • Oljeteknologi for hjertet

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

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  • IORSim: Upscaling of Chemical EOR from lab to field

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

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

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  • NIOR Centre Overview

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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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  • Pore scale simulation of electro-chemically induced wettability changes

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

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  • Modeling the Rheology of Two-phase Polymer Flow

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  • Simulation of polymer mechanical degradation in radial well geometry

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

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  • Modelling the rheology of two-phase polymer flow

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

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  • Simulation of polymer mechanical degradation in radial well geometry

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

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

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

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  • Mechanical Degradation of Polymers at the Field Scale - A Simulation Study

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

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  • Integration of IOR Research Projects through Generic Case Studies

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  • Simulation of Sodium Silicate Water Diversion Using IORSim

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  • Goliat EOR Screening

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

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  • Reactive flow during water flooding - from pore to core

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

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  • Xurography for microfluidics on a reactive solid

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

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  • A computer model for non-invasive heart diagnostics

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

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  • IORCoreSim

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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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  • Pore scale simulation and non-Newtonian flow

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

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

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  • IORSim - A Simulator for Fast and Accurate Simulation of Multi-phase Geochemical

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

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

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  • Joining forces to recover more on NCS

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

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  • Can we measure core scale properties in pore scale models?

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

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

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  • Two-way coupling between IORSim and Eclipse

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  • Water Weakening of Chalk – insight from lab experiments and numerical modelling

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  • Water Weakening of Chalk – insight from lab experiments and numerical modelling

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  • Joining forces to recover more – forming a true base for the IOR competence in Norway

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  • Water Weakening of Chalk – insight from lab experiments and numerical modelling

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  • A dissolution model that accounts for coverage of mineral surfaces by

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  • CaCO3 Fluid Chemistry

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  • How simple brine tests can be used to understand chalk core dynamics – Insights from long-term experiments

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  • Mechanical and physical behavior of high-porosity chalks exposed to chemical perturabation

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  • Evaluation of the compositinal changes during flooding of reactive fluids using scanning electron microscopy, nano-secondary ion mass spectrometry, x-ray diffraction, and whole-rock geochemistry

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  • Porosity and permeability deve lopment in compacting chalks during flooding of nonequilibrium brines: Insights from long-term experiment

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  • Chalk-calcite-microfluidic experiments: construction and flooding of microsystems with reactive fluids, oral presentation

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  • IORSim - an onadd on tool to ECLIOSE for fast and accurate simulation of multi phase geochemical interactions at the field scale

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  • Chalk-calcite-microfluidic experiments: construction and flooding of microsystems with reactive fluids

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  • An Analytical Model for Imbibition Experiments with Porous Plate

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  • Water weakening of chalk at realistic reservoir conditions

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  • On how water chemistry and compaction alter the permeability of Ekofisk reservoir cores from the VB7 well

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  • A multi scale approach to interpret chalk core experiments

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  • Improved Lattice Boltzmann Models for Precipitation and Dissolution

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  • Technical Report - Reactive flow at pore and core scale using the lattice Boltzmann technique

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  • Insights from long term experiments of compaction and non-equilibrium water flooding of chalks

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  • Insights from long term tests of compaction and non-equilibrium water

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  • The National IOR Centre of Norway

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  • Optimizing water chemistry for EOR – Final Report

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  • Flooding microsystems with reactive fluids Calcite-Chalk-microfluidic

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  • Models for evolution of reactive surface area during dissolution and

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  • The Dynamic Stability of Chalks During Flooding

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  • PORE SCALE MODELING OF BRINE DEPENDENT PERMEABILITY

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  • ARMA 13-282 Measuring the Biot stress coefficient and its implications on the effective stress estimate

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  • Pore Scale Modeling of Brine Dependent Pore Space Evolution in Carbonate

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  • Tracing Fluid Flow in Flooded Chalk under Long Term Test Conditions

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  • Precipitation, dissolution, and ion exchange processes coupled with a lattice Boltzmann advection diffusion solver

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  • The Impact of Surface Charge on the Mechanical Behavior 3 of High-Porosity Chalk

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  • Effect of water chemistry on Ekofisk Formation reservoir cores, Tor field

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  • A geochemical model for interpretation of chalk core flooding experiments

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  • A STUDY OF SULPHATE IONS - EFFECTS ON AGEING AND IMBIBITION CAPILLARY PRESSURE CURVE

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  • SEM analysis of outcrop chalks prior to and after experimental water-flooding – studying Ekofisk reservoir rock analogues

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  • Pre-study - Impact of seawater and distilled water on the permeability of Tor reservoir core material

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  • Mechanisms Involved in Microbially Enhanced Oil Recovery

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  • A model for interpretation of brine-dependent spontaneous imbibition experiments

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  • Water Weakening of Chalk - Physical and chemical Processes

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  • Special core analysis and evaluation of effect of water chemistry selected core material from the Yuzhno Khylchuyu field

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  • Waterflooding experiments on chalk: rock-fluid interaction as revealed by scanning electron microscopy

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  • Chemical Alterations Induced by Rock–Fluid Interactions When Injecting Brines in High Porosity Chalks

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  • Interaction between minerals and brines during low salinity water flooding: Experiments and simulations

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  • Influence of pore water chemistry on chalk wettability

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  • A Mathematical Model Relevant for Weakening of Chalk Reservoirs due to Chemical Reactions

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  • Revisiting two phase NMR data with a new inversion routine using a triangular pores model for wettability estimation

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  • Investigagtion of the Effective Stress Relations for Outcrop Chalk

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  • Chemical water weakening of various outcrop chalks at elevated temperature

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  • Rock Fluid Interactions in Chalk exposed to Injection of Seawater, MgC12, and NaCl2 Brines with equal Ionic Strength

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  • A lattice Boltzmann-BGK algorithm for a diffusion equation with Robin boundary condition - application to NMR relaxation

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  • Experimental investigation of the effective stress oefficient for various high proosity outcrop chalks

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  • A Chemical Model for the seawater-CO2-carbonate system - aqueous and surface chemistry

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  • MEOR, A study of microbes and mechanisms at Ekofisk chalk reservoir

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  • Chemical modelling of wettability change in carbonate rocks

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  • Contact angle measurements on calcite using model oils

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  • Biofilms a Possible Mechanism of Microbial Enhanced Oil Recovery

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  • Microbial Enchanced Oil Recovery - Mechanism

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  • Culture Dependent and Independt Characterizartion of the Microbial Community in the Ekofisk Oil Reservoir

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  • NMR for equilateral triangular geometry under condition of

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  • Magnetic Signal From Geometries Containing Corners---Analytical and Random Walk Calculations

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  • IMPROVED METHOD FOR MEASURING SURFACE RELAXIVITY

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  • Three-phase relative permeabilities and capillary pressure by upscaling

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  • Gravity-Viscous Two-Phase Upscaling

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  • A model for wettability change in reservoir rock

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  • 3D upscaling Statfjord,Tarbert-Xbed and Rannoch-Thin

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  • Non-factorizable contributions to B0d - D(*)8D(*)8

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  • Modeling of 3-phase capillary pressure curves

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  • 2D and 3 D upscaling Statfjord, Tarbert-Pbed

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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
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:
General email:
+47 51 87 50 00
+47 51 87 52 00
firmapost@iris.no