We validate a coupled flow-geomechanics simulator for gas hydrate deposits, named T+MAM, performing two meter-scale laboratory experiments of gas hydrates for production by depressurization, replicating the gas hydrate deposit in the Ulleung Basin, East Sea, South Korea. The first experiment with a sand-only specimen is a 1D 1 m-scale depressurization test based on the excess gas method, which represents the grain coating hydrate growth. On the other hand, the second is a 3D 1.5 m-scale test with the excess water method for a sand–mud alternating layer system, representing the pore filling hydrate growth. We measure production and displacement at the top with different depressurization levels. In particular, the 3D test exhibits high coupli...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Methane hydrate, which is usually found under deep seabed or permafrost zones, is a potential energy...
TOUGH + Millstone has been developed for the analysis of coupled flow, thermal and geomech...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
Geologic reservoirs containing gas hydrate occur beneath permafrost environments and within marine c...
Natural gas hydrates are considered a potential resource for gas production on industrial scales. Ga...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
In this paper, we describe the development and application of a numerical simulator that analyzes th...
The TOUGH+Millstone simulator has been developed for the analysis of coupled flow, thermal and geome...
The deformation processes of hydrate sediments during hydrate gas production are complex due to the ...
Results from two recent field trials, onshore in the Alaska permafrost and in the Nankai Trough offs...
The India National Gas Hydrate Program Expedition 02 (NGHP-02) discovered gas hydrate at high satura...
The TOUGH+Millstone simulator has been developed for the analysis of coupled flow, thermal and geome...
The understanding of thermo-hydro-chemo-mechanical coupling of dynamic processes, which occur in mar...
Natural gas hydrates have been treated as a potential energy resource for decades. Understanding geo...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Methane hydrate, which is usually found under deep seabed or permafrost zones, is a potential energy...
TOUGH + Millstone has been developed for the analysis of coupled flow, thermal and geomech...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
Geologic reservoirs containing gas hydrate occur beneath permafrost environments and within marine c...
Natural gas hydrates are considered a potential resource for gas production on industrial scales. Ga...
The fully coupled methane hydrate model developed in Cambridge was adopted in this numerical study o...
In this paper, we describe the development and application of a numerical simulator that analyzes th...
The TOUGH+Millstone simulator has been developed for the analysis of coupled flow, thermal and geome...
The deformation processes of hydrate sediments during hydrate gas production are complex due to the ...
Results from two recent field trials, onshore in the Alaska permafrost and in the Nankai Trough offs...
The India National Gas Hydrate Program Expedition 02 (NGHP-02) discovered gas hydrate at high satura...
The TOUGH+Millstone simulator has been developed for the analysis of coupled flow, thermal and geome...
The understanding of thermo-hydro-chemo-mechanical coupling of dynamic processes, which occur in mar...
Natural gas hydrates have been treated as a potential energy resource for decades. Understanding geo...
We present a fully coupled thermo-hydro-mechanical formulation for the simulation of sediment deform...
Methane hydrate, which is usually found under deep seabed or permafrost zones, is a potential energy...
TOUGH + Millstone has been developed for the analysis of coupled flow, thermal and geomech...