By Richard O. Baker, Harvey W. Yarranton, Jerry Jensen
ISBN-10: 0128018119
ISBN-13: 9780128018118
Practical Reservoir Characterization expertly explains key applied sciences, suggestions, equipment, and terminology in a manner that enables readers in various roles to understand the ensuing interpretations and give a contribution to construction reservoir characterization versions that increase source definition and restoration even within the most intricate depositional environments.
It is the best reference for senior reservoir engineers who are looking to elevate their wisdom of the most recent in top practices, yet is usually excellent for group contributors who have to larger comprehend their position within the characterization technique. The textual content makes a speciality of merely the main serious parts, 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 examining, characterizing, and constructing genuine reservoirs, then explains the several methodologies and the categories and resources of information required to symbolize, forecast, and simulate a reservoir.
- Thoroughly explains the information collecting tools required to symbolize, forecast, and simulate a reservoir
- Provides the basic heritage required to research, signify, and enhance genuine reservoirs within the most intricate depositional environments
- Presents a step by step method for construction a one, , or third-dimensional illustration of all reservoir types
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Extra info for Practical Reservoir Engineering and Characterization
Example text
We have created a separate classification for low or very low permeability reservoirs because they perform differently than other permeability types. The permeability distribution is often the controlling parameter in low permeability reservoirs. In these reservoirs, a high pressure gradient is required to sustain flow if fractures are not present. Therefore, successful exploitation of tight reservoirs almost always requires either naturally occurring or induced fractures or both to be present. As described above, the fractures change the pressure distribution from radial flow to linear flow.
Shales and evaporites may contain petroleum, but until recently were considered nonproductive. Today, improvements in hydraulic fracturing and multilateral well technology have made shale oil and gas production economically viable. Coal bed methane is another recently developed source of natural gas. The position of many accumulations depends on their position relative to the continental margin. The position of the continental margin is controlled by the rates of sediment deposition and sea level change.
The principles of reservoir engineering are briefly reviewed in Chapter 2. This review is provided for reference and is intended to show the basis of the equations and methods used to analyze reservoirs without considering their application. Chapter 3 involves reservoir calculations for volumetrics, material balance, steady state flow, and transient flow. Chapter 4 discusses how extract information about reservoirs and how to understand production data. The analysis of the various data sources and the use of correlations are discussed.
Practical Reservoir Engineering and Characterization by Richard O. Baker, Harvey W. Yarranton, Jerry Jensen
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