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Summary The flow physics of CO2 storage is very challenging and contemporary numerical tools cannot provide answers to many important questions. A collaborative research effort that provides transparent and verifiable solutions and that are not proprietary to any specific company is needed.

The project aims to develop an open-source, numerical CO2 laboratory as a special project under the OPM initiative, which involves four Norwegian and several German research groups.

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The long-term goal is that the numerical CO2-lab contains models for basic trapping mechanisms; contains methods dating site i utsira reduced modeling; supports inclusion of new models like 3-phase hysteresis, salt precipitation, wettability alteration, and chemical reactions; can be used to study effects at por e scale, lab scale, and reservoir scale; is sufficiently efficient to enable Monte Carlo simulations; and is open to the public and thereby supports reproducible science Measurable goals: develop the following capabilities 1 Simulation of basic trappin g mechanisms targeted toward benchmark cases dating site i utsira realistic, but different physical properties, 2 Simulation of core flooding experiments under subsurface CO2 storage conditions to get correct capillary and relative permeability curves 3 Simulation of models from Norwegian injection sites e.

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