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To create and execute an efficient, cost-effective petroleum recovery venture, it’s vital to understand the nature of oil and gas flow in the porous rock of reservoirs. This involves a grasp of the common organic minerals that make up reservoir rock and how the type of minerals determines the permeability and porosity of the rock. It also necessitates a knowledge of how different petroleum traps function, how to calculate flow through a reservoir, and the relationship between the inflow rate from the reservoir to the bottom of the well.
In this course on Petroleum Flow in Porous Medium, we’ll explore the defining characteristics of a reservoir which are high permeability and porosity of the rock, hallmarks of sedimentary rock. We’ll discuss what sedimentary means and how it relates to the composition of a reservoir. We’ll also dive deeper into petroleum traps and differentiate between the types of traps common in reservoirs. We’ll wrap up this course with a review Darcy’s Law and the concept of inflow performance relationships.
The course explores the nature of oil and gas flow in porous reservoir rock, including the types of sedimentary rock that compose reservoirs, petroleum traps and how they function, Darcy's Law, and the inflow performance relationship between the reservoir and the bottom of the well.
The course develops skills in flow characteristics, petroleum engineering, petroleum geology, and porosity, and is associated with a Petroleum Engineering Certification.
The course includes four lessons: Types of Reservoir Rocks; Petroleum Traps; Darcy's Law and Applications; and Inflow Performance Relationship (IPR).
Understanding how oil and gas flow through the porous rock of reservoirs is vital to creating and executing an efficient, cost-effective petroleum recovery venture.
It explains what sedimentary means and how it relates to the composition of a reservoir, since high permeability and porosity, the defining characteristics of a reservoir, are hallmarks of sedimentary rock.