During underground coal gasification (UCG), a cavity is formed in the coal seam when coal is converted to gaseous products. This cavity grows three dimensionally in a nonlinear fashion as gasification proceeds. The cavity shape is determined by the flow field, which is a strong function of various parameters such as the position and orientation of the inlet nozzle and the temperature distribution and coal properties such as thermal conductivity. In addition to the complex flow patterns in the UCG cavity, several phenomena occur simultaneously. They include chemical reactions (both homogeneous and heterogeneous), water influx, thermomechanical failure of the coal, heat and mass transfer, and so on. Thus, enormous computational efforts are re...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
Cavity formation is an important phenomenon in the underground coal gasification (UCG) process. In t...
This paper presents a coupled thermal-hydraulic-chemical numerical model to study the temperature de...
Characterization of reactant gas flow patterns in the underground coal gasification (UCG) cavity is ...
In underground coal gasification (UCG), a cavity is formed in the coal seam due to consumption of co...
Underground coal gasification (UCG), in the recent years, have gathered a significant amount of inte...
Mathematical models were developed to understand cavity growth mechanisms, heat and mass transfer in...
Underground Coal Gasification is a process of gasifying coal in-situ to produce syn-gas. The gas thu...
Modelling of the underground coal gasification process is dependent upon a range of sub-models. One ...
This paper presents the application of a thermal-hydraulic-chemical model to simulate (1) a laborato...
Underground gas gasification (UCG) is a clean coal technology which involves in-situ gasification of...
A two-dimensional axi-symmetric computational fluid dynamic model of an underground coal gasificatio...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
Underground coal gasification is a candidate process for converting the world's coal resources into ...
Underground coal gasification (UCG) converts coal to a high-calorific synthesis gas for the producti...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
Cavity formation is an important phenomenon in the underground coal gasification (UCG) process. In t...
This paper presents a coupled thermal-hydraulic-chemical numerical model to study the temperature de...
Characterization of reactant gas flow patterns in the underground coal gasification (UCG) cavity is ...
In underground coal gasification (UCG), a cavity is formed in the coal seam due to consumption of co...
Underground coal gasification (UCG), in the recent years, have gathered a significant amount of inte...
Mathematical models were developed to understand cavity growth mechanisms, heat and mass transfer in...
Underground Coal Gasification is a process of gasifying coal in-situ to produce syn-gas. The gas thu...
Modelling of the underground coal gasification process is dependent upon a range of sub-models. One ...
This paper presents the application of a thermal-hydraulic-chemical model to simulate (1) a laborato...
Underground gas gasification (UCG) is a clean coal technology which involves in-situ gasification of...
A two-dimensional axi-symmetric computational fluid dynamic model of an underground coal gasificatio...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
Underground coal gasification is a candidate process for converting the world's coal resources into ...
Underground coal gasification (UCG) converts coal to a high-calorific synthesis gas for the producti...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
Cavity formation is an important phenomenon in the underground coal gasification (UCG) process. In t...
This paper presents a coupled thermal-hydraulic-chemical numerical model to study the temperature de...