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To quantify CO2 emissions from water surface of a reservoir that was shaped by flooding the boreal landscape, we developed a daily time-step reservoir biogeochemistry model.
Furthermore, a four-step reservoirs screening method is advanced: technical screening, economic screening, fine feasibility evaluation, recommendation of optimal gas flooding blocks.
The first step of reservoir management is characterization of the reservoir through history matching.
Lithology identification is a key step in reservoir characterization.
The first step in reservoir simulation is data gathering and preparation.
Open image in new window Fig. 2 Loose coupling step between reservoir and network models.
Coarse grid generation from finely gridded geological model is a main step in reservoir simulation.
History matching is a crucial step for reservoir simulation and for decision-making process in field development under uncertainty.
A pilot project is a crucial step of reservoir management that enables the minimization of subsurface risks and improves the quality of decisions on full-field development.
Then, it is easy for the iterative solver to solve another time step of reservoir pressure and the distribution of saturation.
Therefore, understanding rock properties and earth's stresses is an important step toward reservoir evaluation and ultimately development of these kinds of resources.
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