Publications

  • CROP - Chemical Rock Optimization

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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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  • IORSim: Upscaling of Chemical EOR from lab to field

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

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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 polymer mechanical degradation in radial well geometry

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

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  • Goliat EOR Screening

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  • Summary of (mainly) Polymer Research @ IOR Centre

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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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  • 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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  • SCAL - Skarfjell study part 2 Wells 35/9-7 and 35/9-8

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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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  • Test for Removal of Surfactant from Scale Inhibitor Solution

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

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

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  • Two-way coupling between IORSim and Eclipse

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  • Critical Aspects in Surfactant Flooding Procedure at Mixed-wet Conditions. SPE-174393-MS

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  • Snorre three-phase steady-state, well 34/4-C-6-H

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  • Snorre three-phase steady-state, well 34/7-P-8

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  • Snorre three-phase steady-state, well 34/7-P-33

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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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  • A probabilistic approach for pressure control evaluation in the well planning phase

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  • Effect of Interfacial Tension on Water/Oil Relative Permeability Based on History Matching to Coreflood Data

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  • Gas/oil drainage steady-state relative permeabiliby for 1884c and1932c

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  • Simulation of surfactant flooding in Field A sector

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  • Biofilm mechanisms, MEOR phase II

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  • User's manual for Bugsim - an MEOR simulator (Version 1.2)

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  • DISPLACEMENT OF OIL BY SURFACTANT FLOODING IN MIXED-WET CONDITION

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  • Gravity Segregated Flow in Surfactant Flooding (SPE 154495)

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  • SPE 155626: Acceleration of oil production in mixed-wet reservoirs by alteration of relative permeability curves using surfactants,

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  • SPE 154178: Surfactant Flooding in Heterogeneous Formations

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  • SPE 160883: Dependency of Remaining Oil Saturation on Wettability and Capillary Number

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  • Mechanisms Involved in Microbially Enhanced Oil Recovery

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  • Effect of Interfacial Tension on Water/Oil Relative Permeability and Remaining Saturation with Consideration of Capillary Pressure

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  • Formation Damage and Well Productivity Simulation

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  • Surfactant Flooding Mechanisms at Different Wetting Conditions

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  • Polymer Flooding – Flow Properties in Porous Media Versus Rheological Parameters

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  • Significance of Selected Set-up Parameters in Return Permeability Measurements Used for Formation Damage Quantification

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  • Test of steady-state upscaling code

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  • On the determination of thermal conductivity of sedimentary rocks and the significance for basin temperature history

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  • Modeling capillary pressure using capillary bundles with arbitrary cross-sections

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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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  • Microbial Enchanced Oil Recovery - Mechanism

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  • Numerical analysis of photomicrographs by Micro-Pore-Viewer

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  • Effective three-phase propreties of lithofacies for Snorre field

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  • IOR screening project - Snorre Field

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  • IOR screening project - Heidrun field

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  • Upscaling capillary transition zone in Smørbukk field

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  • Two-Stage Upscaling of Two-Phase Flow: From Core to Simulation Scale

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  • Modeling capillary pressure using capillary bundles with arbitrary crossections obtained from photomicrographs

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  • Modeling capillary pressure using capillary bundles with arbitrary crossections obtained from photomicrographs

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  • SPE 99567: Three-phase upscaling in capillary and viscous limit

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  • Modelling primary drainage using capillary bundles with arbitrary crossections obtained from photomicrographs

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  • SPE 94715 Making Sense of Return Permeability Data Measured in the Laboratory

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  • Three-phase relative permeabilities and capillary pressure by upscaling

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  • Flow2D - User's Manual

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  • 2D upscaling of Tarbert sub-models, T-Pbed and T-Xbed

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  • Quick Pre-Screening of RDF and Upscaling of Laboratory Return Permeability to Field Scale

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  • SPE 89422: Two-Stage Upscaling of Two-Phase Flow: From Core to Simulation Scale

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  • Maximize technical dokumentation

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  • Maximize user manual

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  • A Steady-State Upscaling Approach for Immiscible Two-Phase Flow

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  • Validation of a simple method to determine location of formation damage in cores

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  • A Steady-State Upscaling Approach for Immiscible Two-Phase Flow

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  • Evaluation of effective thermal conductivity and anisotropy of core samples from micro - photographs

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  • A two-phase upscaling procedure in anizotropic reservoirs

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  • Evalution of effective thermal conductivity and anisotropy of core samples from micro-photographs

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  • A two-phase upscaling procedure in anizotropic reservoirs

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  • Steady-state 2-phase upscaling in macro-anisotropic reservoirs

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  • Improved Oil Productivity by Selective Water Control

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  • Improved Oil Productivity by Selective Water Control

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  • SPE 72113 Efficient 2-phase upscaling in 2D

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  • Evaluation of programs for design of scale inhibitor squeeze treatments

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  • IOR-02 Improved Oil Productivity by Selective Water Control

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  • Test of the WAGHYSTR option in Eclipse

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  • MOORE phase II, final report: Core-flood study to investigate the impacts of Draugen fermentative microorgansims on residual oil saturation in a Berea core

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  • Productivity of wells completed in capillary transition zone, phase 1

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  • Steady-State Two-Phase Upscaling Model- Validdation and Computation Performance

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  • Diversion by emulsion - Bulk properties

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  • "IOR Potential by using LLHW"

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  • Evaluation of residual saturatiom and upscaling in heterogeneous reservoirs by a steady-state model

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  • Final report: MORE - Microbial oil recovery enhancement in North Sea reservoirs

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  • A steady-state approach to upscale relative permeabilities and its application in 2D

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  • SPE 56413 Up-scaling of Multiphase Flow Functions Using a Steady State Flow Model

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  • Bruk av emulsjon som diverter ved brønnstimulering

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  • Comparison of FLOW2D with ECLIPSE

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  • Analytical model to determine relative permeabilities from steady-state floods

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  • Dilute surfactant flooding - capillary desaturation curve

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  • CoreFlow user´s manual

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  • Selective placement of gel

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  • Polymerflømming i Åreformasjonen i Heidrunfeltet

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  • Measurement of three-phase capillary pressure by centrifuge

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  • Barriers against coning

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  • Selective gel systems for cost effective well treatment

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  • Field experience - gravity segregation mechanisms: A literature survey

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  • Simulering av polymerflømming i Snorrefeltet

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  • Forstudie på mikrobielle metoder for økt utvinning (MEOR)

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  • Placement of Gels

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  • Relative permeability hysteresis in micellar

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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