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Dive into the research topics where Pål Østebø Andersen is active.

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Featured researches published by Pål Østebø Andersen.


Transport in Porous Media | 2014

A Model for Spontaneous Imbibition as a Mechanism for Oil Recovery in Fractured Reservoirs

Pål Østebø Andersen; Steinar Evje; Hans Kleppe

The flow of oil and water in naturally fractured reservoirs (NFR) can be highly complex and a simplified model is presented to illustrate some main features of this flow system. NFRs typically consist of low-permeable matrix rock containing a high-permeable fracture network. The effect of this network is that the advective flow bypasses the main portions of the reservoir where the oil is contained. Instead capillary forces and gravity forces are important for recovering the oil from these sections. We consider a linear fracture which is symmetrically surrounded by porous matrix. Advective flow occurs only along the fracture, while capillary driven flow occurs only along the axis of the matrix normal to the fracture. For a given set of relative permeability and capillary pressure curves, the behavior of the system is completely determined by the choice of two dimensionless parameters: (i) the ratio of time scales for advective flow in fracture to capillary flow in matrix


Transport in Porous Media | 2018

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

Pål Østebø Andersen; Wenxia Wang; M.V. Madland; Udo Zimmermann; Reidar I. Korsnes; Silvana R.A. Bertolino; M.W. Minde; Bernhard Schulz; S. Gilbricht


IOR 2017 - 19th European Symposium on Improved Oil Recovery | 2017

Improved Modeling of Gravity-Aided Spontaneous Imbibition Using Momentum-Equation-Based Relative Permeabilities

Pål Østebø Andersen; Yangyang Qiao; Steinar Evje; Dag Chun Standnes

\alpha =\tau ^f/\tau ^m


NUMERICAL ANALYSIS AND APPLIED MATHEMATICS ICNAAM 2012: International Conference of Numerical Analysis and Applied Mathematics | 2012

Two-phase flow in a fissurized-porous media

Pål Østebø Andersen; Steinar Evje


IOR 2017 - 19th European Symposium on Improved Oil Recovery | 2017

An Analytical Model for Analysis of Centrifuge Capillary Pressure Experiments

Pål Østebø Andersen; Svein M. Skjaeveland; Dag Chun Standnes

α=τf/τm; (ii) the ratio of pore volumes in matrix and fracture


IOR 2015 - 18th European Symposium on Improved Oil Recovery | 2015

An Analytical Model for Imbibition Experiments with Porous Plate

Pål Østebø Andersen; Steinar Evje; Rajib Ahsan; A. Hiorth


information processing and trusted computing | 2013

A Model for Wettability Alteration in Fractured Reservoirs

Pål Østebø Andersen; Steinar Evje; Hans Kleppe; Svein M. Skjaeveland

\beta =V^m/V^f


Chemical Engineering Science | 2012

A geochemical model for interpretation of chalk core flooding experiments

Pål Østebø Andersen; Steinar Evje; M.V. Madland; A. Hiorth


Chemical Engineering Science | 2016

A model for reactive flow in fractured porous media

Pål Østebø Andersen; Steinar Evje

β=Vm/Vf. A characteristic property of the flow in the coupled fracture–matrix medium is the linear recovery curve (before water breakthrough) which has been referred to as the “filling fracture” regime Rangel-German and Kovscek (J Pet Sci Eng 36:45–60, 2002), followed by a nonlinear period, referred to as the “instantly filled” regime, where the rate is approximately linear with the square root of time. We derive an analytical solution for the limiting case where the time scale


Transport in Porous Media | 2017

A Novel Relative Permeability Model Based on Mixture Theory Approach Accounting for Solid–Fluid and Fluid–Fluid Interactions

Dag Chun Standnes; Steinar Evje; Pål Østebø Andersen

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Steinar Evje

University of Stavanger

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A. Hiorth

University of Stavanger

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M.V. Madland

University of Stavanger

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Arild Lohne

University of Stavanger

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Hans Kleppe

University of Stavanger

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M.W. Minde

University of Stavanger

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