An Integrated Approach to Improve Time-lapse Seismic Interpretation: Investigation of Pressure and Saturation Effects on Elastic Parameters: an ... to  Improve Time-lapse Interpretation - Marcos Hexsel Grochau - Books - LAP Lambert Academic Publishing - 9783838322117 - June 9, 2010
In case cover and title do not match, the title is correct

An Integrated Approach to Improve Time-lapse Seismic Interpretation: Investigation of Pressure and Saturation Effects on Elastic Parameters: an ... to Improve Time-lapse Interpretation


Get an email once the item is available
Do you have a profile? Log in
Get notified about new Marcos Hexsel Grochau releases
Add to your iMusic wish list

Not rated yet

Time-lapse (4D) seismic is a modern technology for monitoring production-induced changes in and around hydrocarbon reservoirs. Perhaps the most important challenges related to this technology are to perform quantitative time-lapse and to interpret time-lapse effects in thin layers. This book presents an integrated study of saturation and pressure effects on elastic properties. A workflow is developed to test the validity of Gassmann fluid substitution in real geological environments and it is applied on a turbidite reservoir from the Campos Basin, offshore Brazil. The magnitude of pressure effects on compressional-wave velocities is investigated by using two different approaches: laboratory and well measurements. This book also shows a novel methodology to assess rock properties that result from centimeter scale depositional layering by using X-ray computed tomography images along with laboratory velocity measurements and borehole logs. Finally, the equivalent properties of a heterogeneous sandstone reservoir are investigated for modeling time-lapse effects. The combined seismic response of thin layers of sandstones and shales was computed for depletion and injection scenarios.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released June 9, 2010
ISBN13 9783838322117
Publishers LAP Lambert Academic Publishing
Pages 136
Dimensions 225 × 8 × 150 mm   ·   221 g
Language German