Practical Reservoir Engineering and Characterization by Richard O. Baker, Harvey W. Yarranton, Jerry Jensen PDF
By Richard O. Baker, Harvey W. Yarranton, Jerry Jensen
Practical Reservoir Characterization expertly explains key applied sciences, recommendations, equipment, and terminology in a fashion that enables readers in various roles to understand the ensuing interpretations and give a contribution to development reservoir characterization versions that increase source definition and restoration even within the most intricate depositional environments.
It is the fitting reference for senior reservoir engineers who are looking to bring up their wisdom of the newest in top practices, yet is additionally excellent for group individuals who have to greater comprehend their position within the characterization procedure. The textual content specializes in purely the main severe components, together with modeling the reservoir unit, predicting good habit, figuring out prior reservoir functionality, and forecasting destiny reservoir functionality.
The textual content starts off with an outline of the tools required for interpreting, characterizing, and constructing genuine reservoirs, then explains different methodologies and the categories and assets of knowledge required to signify, forecast, and simulate a reservoir.
- Thoroughly explains the information collecting equipment required to represent, forecast, and simulate a reservoir
- Provides the elemental heritage required to research, signify, and advance actual reservoirs within the most complicated depositional environments
- Presents a step by step method for development a one, , or 3-dimensional illustration of all reservoir types
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Extra resources for Practical Reservoir Engineering and Characterization
Chapter 7 describes how to use routine core data for reservoir characterization work. Chapter 8 shows how to use special core analysis. Chapter 9 discusses how to extract information from well logs. Chapter 10 discusses how to reconcile sometimes contradictory data from cores, well logs, and pressure transient analysis. Also discussed are permeability, ﬂow diagnostics, initialization of the reservoir, mapping, identifying outer boundaries of reservoirs, classifying the reservoir, and constructing a three-dimensional representation of the reservoir.
To segregation drive, except the “horizontal” (parallel to formation dip) permeability is used instead of the vertical permeability. Because the lateral permeability is usually higher than the vertical permeability, resistance from the rock to the separation process is typically less than in a segregated drive. The oil and gas ﬂow in opposite directions, causing counterﬂow. The counterﬂow occurs in highly permeable, thick formations with vertical fractures or vugs and conditions such as low oil viscosity and a reasonable high degree of dip.
The deposit may also fracture when deformed under compaction or tectonic forces. Fracture porosity is usually a small fraction of the total porosity. Carbonates The effect of diagenesis on carbonate porosity is usually more signiﬁcant and more complex than on clastics because the carbonates are more reactive and soluble in water than is silica. 3 Schematic of diagenesis pathways in clastics. Adapted from Selley, 1998. Rock and Fluid Properties 43 burial due to compaction and cementation. However, minerals are leached out of carbonates as water migrates through the formation.
Practical Reservoir Engineering and Characterization by Richard O. Baker, Harvey W. Yarranton, Jerry Jensen