Focused fluid flow through sub-seafloor pipes and chimneys, and their seafloor manifestations as pockmarks, are ubiquitous. However, the dynamics of flow localization and evolution of fluid escape structures remain poorly understood. Models based on geomechanical mechanisms like hydro-fracturing and porosity wave propagation offer some useful insights into fluid flow and escape dynamics, but face limitations in capturing features like mobilized granular matter, especially in the upper sediment layers where the link between fracture and pockmark is not always clear. Here, we propose a mathematical model based on the multiphase theory of porous media, where changes in subsurface and seafloor morphology are resolved through seepage-induced ero...
International audienceAt the time of energy transition, it is important to be able to predict the ef...
Shallow seabed depressions attributed to focused fluid seepage, known as pockmarks, have been docume...
Vertical fluid-escape structures observed in seismic reflection data represent an important class of...
Focused fluid flow through sub-seafloor pipes and chimneys, and their seafloor manifestations as poc...
Mechanisms of fluid flow localization and pockmark formation remain an open question. Many conceptua...
Pockmarks form where fluids discharge through seafloor sediments rapidly enough to make them quick, ...
Fluid migration within the sedimentary column contributes significantly to slope failure and pockmar...
Vertical fluid-escape structures observed in seismic reflection data represent an important class of...
Ubiquitous observations of channelised fluid flow in the form of pipes or chimney-like features in s...
Evaluation of seismic reflection data has identified the presence of fluid escape structures cross-c...
Evaluation of seismic reflection data has identified the presence of fluid escape structures cross-c...
Fluid-escape structures within sedimentary basins permit pressure-driven focused fluid flow through ...
Increased greenhouse gas emissions entering the atmosphere and hydrosphere are causing changes to gl...
International audienceAt the time of energy transition, it is important to be able to predict the ef...
Shallow seabed depressions attributed to focused fluid seepage, known as pockmarks, have been docume...
Vertical fluid-escape structures observed in seismic reflection data represent an important class of...
Focused fluid flow through sub-seafloor pipes and chimneys, and their seafloor manifestations as poc...
Mechanisms of fluid flow localization and pockmark formation remain an open question. Many conceptua...
Pockmarks form where fluids discharge through seafloor sediments rapidly enough to make them quick, ...
Fluid migration within the sedimentary column contributes significantly to slope failure and pockmar...
Vertical fluid-escape structures observed in seismic reflection data represent an important class of...
Ubiquitous observations of channelised fluid flow in the form of pipes or chimney-like features in s...
Evaluation of seismic reflection data has identified the presence of fluid escape structures cross-c...
Evaluation of seismic reflection data has identified the presence of fluid escape structures cross-c...
Fluid-escape structures within sedimentary basins permit pressure-driven focused fluid flow through ...
Increased greenhouse gas emissions entering the atmosphere and hydrosphere are causing changes to gl...
International audienceAt the time of energy transition, it is important to be able to predict the ef...
Shallow seabed depressions attributed to focused fluid seepage, known as pockmarks, have been docume...
Vertical fluid-escape structures observed in seismic reflection data represent an important class of...