The underground coal gasification is a continually evolving technology, which converts coal to calorific gas. There are many important parameters in this technology, which are difficult to measure. These parameters include the underground cavity growth, amount gasified coal, and the leakage of input and output gaseous components into the surrounding layers during the coal gasification process. Mathematical modeling of this process is one of the possible alternatives for determining these unknown parameters. In this paper, the structure of the mathematical model of laboratory underground coal gasification process from the material balance aspect is presented. The material balance consists of mass components entering and leaving from the UCG ...
AbstractThe chemical process at the heart of Underground Coal Gasification (UCG) is the engineered i...
Underground Coal Gasification represents an alternative for conventional coal mining. This technolog...
Mathematical models were developed to understand cavity growth mechanisms, heat and mass transfer in...
The considerate focus on unconventional fossil fuel resources is a natural consequence of emerging g...
Underground coal gasification (UCG) is a promising option for extracting energy from coal in unworke...
In this study, to better simulate underground coal gasification (UCG), an artificial coal seam was c...
Underground coal gasification (UCG) is a promising option for extracting energy from coal in unworke...
Underground gas gasification (UCG) is a clean coal technology which involves in-situ gasification of...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
Energy demand will continue rising in India due to increasing pressure of population; continuing urb...
Underground coal gasification (UCG) is an efficient method for the conversion of the deep coal resou...
Estimate the material and thermal balance for providing the chemical reactions in underground gasg...
The underground coal gasification(UCG)process involves complex coupling of chemical reaction,fluid t...
The mathematical model describing the heat and mass transfer processes in underground coal gasificat...
AbstractThe chemical process at the heart of Underground Coal Gasification (UCG) is the engineered i...
Underground Coal Gasification represents an alternative for conventional coal mining. This technolog...
Mathematical models were developed to understand cavity growth mechanisms, heat and mass transfer in...
The considerate focus on unconventional fossil fuel resources is a natural consequence of emerging g...
Underground coal gasification (UCG) is a promising option for extracting energy from coal in unworke...
In this study, to better simulate underground coal gasification (UCG), an artificial coal seam was c...
Underground coal gasification (UCG) is a promising option for extracting energy from coal in unworke...
Underground gas gasification (UCG) is a clean coal technology which involves in-situ gasification of...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
Energy demand will continue rising in India due to increasing pressure of population; continuing urb...
Underground coal gasification (UCG) is an efficient method for the conversion of the deep coal resou...
Estimate the material and thermal balance for providing the chemical reactions in underground gasg...
The underground coal gasification(UCG)process involves complex coupling of chemical reaction,fluid t...
The mathematical model describing the heat and mass transfer processes in underground coal gasificat...
AbstractThe chemical process at the heart of Underground Coal Gasification (UCG) is the engineered i...
Underground Coal Gasification represents an alternative for conventional coal mining. This technolog...
Mathematical models were developed to understand cavity growth mechanisms, heat and mass transfer in...