The internal structure and petrophysical property distribution of fault zones are commonly exceedingly complex compared to the surrounding host rock from which they are derived. This in turn produces highly complex fluid flow patterns which affect petroleum migration and trapping as well as reservoir behavior during production and injection. Detailed rendering and forecasting of fluid flow inside fault zones require high-resolution, explicit models of fault zone structure and properties. A fundamental requirement for achieving this is the ability to create volumetric grids in which modeling of fault zone structures and properties can be performed. Answering this need, a method for generating volumetric fault zone grids which can be seamless...
This paper presents a basin simulator designed to better take faults into account, either as conduit...
International audienceAfter more than 20 years of progress, reservoir modeling still raises practica...
The fluid flow properties of faults are highly variable and spatially heterogeneous. We use numerica...
The internal structure and petrophysical property distribution of fault zones are commonly exceeding...
AbstractThe internal structure and petrophysical property distribution of fault zones are commonly e...
The purpose of a reservoir model is to act as a tool for optimizing development and production strat...
Faults play a critical role in controlling the movement of mineralising fluids and the resulting for...
This thesis has two aims. First, to investigate the importance of incorporating the multiphase flow ...
Hydro-mechanical reservoir models are used to obtain quantitative insights into the spatial distribu...
International audienceIn order to achieve an accurate reservoir characterization, geometrical comple...
It is increasingly apparent that faults are typically not discrete planes but zones of deformed rock...
Abstract: The fluid flow properties of faults are highly variable and spatially heterogeneous. We us...
Abstract: Reservoir compartmentalization is one of the key issues that affects the development and p...
The traditional 3D basin modeling workflow is made of the following steps: construction of present d...
Deep-marine slope and base-of-slope hydrocarbon reservoirs are difficult to model and produce becaus...
This paper presents a basin simulator designed to better take faults into account, either as conduit...
International audienceAfter more than 20 years of progress, reservoir modeling still raises practica...
The fluid flow properties of faults are highly variable and spatially heterogeneous. We use numerica...
The internal structure and petrophysical property distribution of fault zones are commonly exceeding...
AbstractThe internal structure and petrophysical property distribution of fault zones are commonly e...
The purpose of a reservoir model is to act as a tool for optimizing development and production strat...
Faults play a critical role in controlling the movement of mineralising fluids and the resulting for...
This thesis has two aims. First, to investigate the importance of incorporating the multiphase flow ...
Hydro-mechanical reservoir models are used to obtain quantitative insights into the spatial distribu...
International audienceIn order to achieve an accurate reservoir characterization, geometrical comple...
It is increasingly apparent that faults are typically not discrete planes but zones of deformed rock...
Abstract: The fluid flow properties of faults are highly variable and spatially heterogeneous. We us...
Abstract: Reservoir compartmentalization is one of the key issues that affects the development and p...
The traditional 3D basin modeling workflow is made of the following steps: construction of present d...
Deep-marine slope and base-of-slope hydrocarbon reservoirs are difficult to model and produce becaus...
This paper presents a basin simulator designed to better take faults into account, either as conduit...
International audienceAfter more than 20 years of progress, reservoir modeling still raises practica...
The fluid flow properties of faults are highly variable and spatially heterogeneous. We use numerica...