Natural gas hydrates are considered a potential resource for gas production on industrial scales. Gas hydrates contribute to the strength and stiffness of the hydrate-bearing sediments. During gas production, the geomechanical stability of the sediment is compromised. Due to the potential geotechnical risks and process management issues, the mechanical behavior of the gas hydrate-bearing sediments needs to be carefully considered. In this study, we describe a coupling concept that simplifies the mathematical description of the complex interactions occurring during gas production by isolating the effects of sediment deformation and hydrate phase changes. Central to this coupling concept is the assumption that the soil grains form the load-be...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Natural gas hydrates are solid crystalline substances found in the subsurface. Since gas hydrates a...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
Natural gas hydrates have been treated as a potential energy resource for decades. Understanding geo...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
In this paper, we describe the development and application of a numerical simulator that analyzes th...
Natural gas hydrate (NGH) has been widely focused on having great potential for alternative energy. ...
Constitutive modeling of gas production from methane hydrates, as the largest source of hydrocarbons...
Natural gas hydrate (NGH) has been widely focused on having great potential for alternative energy. ...
The deformation processes of hydrate sediments during hydrate gas production are complex due to the ...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Natural gas hydrates are solid crystalline substances found in the subsurface. Since gas hydrates a...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
Natural gas hydrates have been treated as a potential energy resource for decades. Understanding geo...
This three-paper format thesis is divided into the following scientific topics; geomechanical investi...
In this paper, we describe the development and application of a numerical simulator that analyzes th...
Natural gas hydrate (NGH) has been widely focused on having great potential for alternative energy. ...
Constitutive modeling of gas production from methane hydrates, as the largest source of hydrocarbons...
Natural gas hydrate (NGH) has been widely focused on having great potential for alternative energy. ...
The deformation processes of hydrate sediments during hydrate gas production are complex due to the ...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Natural gas hydrates are solid crystalline substances found in the subsurface. Since gas hydrates a...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...