Difference between revisions of "Predicting carbonate porosity and permeability"

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Predicting [[reservoir quality]] in carbonate rocks can be difficult because of the complexity of their pore systems. Applying a combination of concepts of depositional environment, diagenesis, and sequence stratigraphy increases the chances of predicting the quality of reservoir needed for a successful play. Sequence stratigraphic models are especially useful for modeling pore-space evolution and enhance prediction of the location and quality of potential carbonate reservoir rocks.
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Predicting [[reservoir quality]] in carbonate rocks can be difficult because of the complexity of their pore systems. Applying a combination of concepts of [[Depositional environments|depositional environment]], [[diagenesis]], and [[sequence stratigraphy]] increases the chances of predicting the quality of reservoir needed for a successful play. Sequence stratigraphic models are especially useful for modeling pore-space evolution and enhance prediction of the location and quality of potential carbonate reservoir rocks.
  
 
==See also==
 
==See also==

Revision as of 15:29, 29 April 2014

Exploring for Oil and Gas Traps
Series Treatise in Petroleum Geology
Part Predicting the occurrence of oil and gas traps
Chapter Predicting reservoir system quality and performance
Author Dan J. Hartmann, Edward A. Beaumont
Link Web page
Store AAPG Store

Predicting reservoir quality in carbonate rocks can be difficult because of the complexity of their pore systems. Applying a combination of concepts of depositional environment, diagenesis, and sequence stratigraphy increases the chances of predicting the quality of reservoir needed for a successful play. Sequence stratigraphic models are especially useful for modeling pore-space evolution and enhance prediction of the location and quality of potential carbonate reservoir rocks.

See also

External links

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Predicting carbonate porosity and permeability
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