Methane Hydrates (MHs) are a promising energy source abundantly available in nature. Understanding the complex processes of MH formation and dissociation is critical for the development of safe and efficient technologies for energy recovery. Many laboratory and numerical studies have investigated these processes using synthesized MH-bearing sediments. A near-universal issue encountered in these studies is the spatial heterogeneous hydrate distribution in the testing apparatus. In the absence of direct observations (e.g. using X-ray computed tomography) coupled with real time production data, the common assumption made in almost all numerical studies is a homogeneous distribution of the various phases. In an earlier study (Yin et al., 2018) ...
In this study, both three dimensional experimental and numerical investigations of hydrate dissociat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Methane Hydrates (MHs) are a promising energy source abundantly available in nature. Understanding t...
Methane hydrates (MHs) have been considered as the future source of energy because of its vast resou...
We analyse numerically an earlier experimental study that involved the formation of methane hydrates...
Numerical simulation is essential for the prediction and evaluation of hydrocarbon reservoir perform...
Numerical tools are essential for the prediction and evaluation of conventional hydrocarbon reservoi...
Numerical simulation is essential for the prediction and evaluation of hydrocarbon reservoir perform...
Dissociation processes of methane hydrate in porous media using the depressurization method are in...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Based on currently available data from site measurements in the Shenhu Area of the South China Sea...
The reaction surface area of hydrate (RSAH) inherently controls the reaction rate of hydrate dissoci...
The depressurization-induced decomposition behaviors of methane hydrate around the freezing point in...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
In this study, both three dimensional experimental and numerical investigations of hydrate dissociat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Methane Hydrates (MHs) are a promising energy source abundantly available in nature. Understanding t...
Methane hydrates (MHs) have been considered as the future source of energy because of its vast resou...
We analyse numerically an earlier experimental study that involved the formation of methane hydrates...
Numerical simulation is essential for the prediction and evaluation of hydrocarbon reservoir perform...
Numerical tools are essential for the prediction and evaluation of conventional hydrocarbon reservoi...
Numerical simulation is essential for the prediction and evaluation of hydrocarbon reservoir perform...
Dissociation processes of methane hydrate in porous media using the depressurization method are in...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Based on currently available data from site measurements in the Shenhu Area of the South China Sea...
The reaction surface area of hydrate (RSAH) inherently controls the reaction rate of hydrate dissoci...
The depressurization-induced decomposition behaviors of methane hydrate around the freezing point in...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
In this study, both three dimensional experimental and numerical investigations of hydrate dissociat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...