In reservoir characterization, rock-physics models provide the link between seismic observables (density, compressional and shear wavespeeds) and reservoir parameters such as porosity, lithology and fluid saturation. However, the accuracy of these predictions is rarely explored. In fact, the validation of a model representing a dataset is often limited to the analysis of a cross-plot of two arbitrary magnitudes. The objective of this paper is to improve the calibration procedure through a quantitative assessment of the reservoir property predictions using various rock-physics models. The analysis is based on an inverse rock-physics modelling that organizes the rock-physics transforms into constraint data so that the seismic variables are di...
This thesis is submitted for the Philosophiae Doctor degree in Petroleum Geosciences at the Departme...
Identifying type of rocks and fluids from seismic-amplitude anomalies can be challenging because of ...
The Seismic Value Chain quantifies the cyclic interaction between seismic acquisition, imaging and r...
In reservoir characterization, rock-physics models provide the link between seismic observables (den...
Seismic reservoir characterization requires a transform of seismically derived properties such as P-...
Reservoir characterization based on seismic data demands a robust and reliable method that transform...
The quantitative estimation of rock physics properties is of great importance in any reservoir chara...
One of the most important, but often ignored, factors affecting the transport and the seismic proper...
Reservoir properties are mainly determined based on well log information. However, wells in most res...
International audienceExtracting detailed earth information from an ensemble of seismic traces is a ...
Extracting detailed earth information from an ensemble of seismic traces is a challenge facing full-...
Demonstrating how rock physics can be applied to predict reservoir parameters, such as lithologies a...
Well-log data are processed in order to derive subsurface physical parameters, namely rock porosity,...
Reservoir characterization plays an essential role in integrated exploration and reservoir studies, ...
This thesis is submitted for the Philosophiae Doctor degree in Petroleum Geosciences at the Departme...
Identifying type of rocks and fluids from seismic-amplitude anomalies can be challenging because of ...
The Seismic Value Chain quantifies the cyclic interaction between seismic acquisition, imaging and r...
In reservoir characterization, rock-physics models provide the link between seismic observables (den...
Seismic reservoir characterization requires a transform of seismically derived properties such as P-...
Reservoir characterization based on seismic data demands a robust and reliable method that transform...
The quantitative estimation of rock physics properties is of great importance in any reservoir chara...
One of the most important, but often ignored, factors affecting the transport and the seismic proper...
Reservoir properties are mainly determined based on well log information. However, wells in most res...
International audienceExtracting detailed earth information from an ensemble of seismic traces is a ...
Extracting detailed earth information from an ensemble of seismic traces is a challenge facing full-...
Demonstrating how rock physics can be applied to predict reservoir parameters, such as lithologies a...
Well-log data are processed in order to derive subsurface physical parameters, namely rock porosity,...
Reservoir characterization plays an essential role in integrated exploration and reservoir studies, ...
This thesis is submitted for the Philosophiae Doctor degree in Petroleum Geosciences at the Departme...
Identifying type of rocks and fluids from seismic-amplitude anomalies can be challenging because of ...
The Seismic Value Chain quantifies the cyclic interaction between seismic acquisition, imaging and r...