The water retention curve and relative permeability are critical to predict gas and water production from hydrate-bearing sediments. However, values for key parameters that characterize gas and water flows during hydrate dissociation have not been identified due to experimental challenges. This study utilizes the combined techniques of micro-focus X-ray computed tomography (CT) and pore-network model simulation to identify proper values for those key parameters, such as gas entry pressure, residual water saturation, and curve fitting values. Hydrates with various saturation and morphology are realized in the pore-network that was extracted from micron-resolution CT images of sediments recovered from the hydrate deposit at the Mallik site, a...
Seepage characteristics of gas hydrate in quartz sands play important roles in gas production from h...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...
Pore structure properties of hydrate-bearing sediments considerably affect fluid flow properties dur...
Pore structure properties of hydrate-bearing sediments considerably affect fluid flow properties dur...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for pred...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for predi...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for predi...
[1] The water retention curve plays a central role in numerical algorithms that model hydrate dissoc...
Gas hydrates are crystalline compounds made of gas and water molecules. Methane hydrates are found i...
Gas relative permeability characterization is of key significance to model the behavior of gas flow ...
Capillarity and both gas and water permeabilities change as a function of gas saturation. Typical tr...
The experimental measurement of water retention curve in hydrate-bearing sediments is critically imp...
Seepage characteristics of gas hydrate in quartz sands play important roles in gas production from h...
Gas hydrates are crystalline compounds made of gas and water molecules. Methane hydrates are found i...
Seepage characteristics of gas hydrate in quartz sands play important roles in gas production from h...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...
Pore structure properties of hydrate-bearing sediments considerably affect fluid flow properties dur...
Pore structure properties of hydrate-bearing sediments considerably affect fluid flow properties dur...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for pred...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for predi...
The relative permeability to fluids in hydrate-bearing sediments is an important parameter for predi...
[1] The water retention curve plays a central role in numerical algorithms that model hydrate dissoc...
Gas hydrates are crystalline compounds made of gas and water molecules. Methane hydrates are found i...
Gas relative permeability characterization is of key significance to model the behavior of gas flow ...
Capillarity and both gas and water permeabilities change as a function of gas saturation. Typical tr...
The experimental measurement of water retention curve in hydrate-bearing sediments is critically imp...
Seepage characteristics of gas hydrate in quartz sands play important roles in gas production from h...
Gas hydrates are crystalline compounds made of gas and water molecules. Methane hydrates are found i...
Seepage characteristics of gas hydrate in quartz sands play important roles in gas production from h...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...
Natural gas trapped in hydrate deposits is a potentially enormous source of energy which can in prin...