AbstractThe numerical simulation was based on the computational fluid dynamics formalism in order to identify the change of temperature in rock strata during underground coal gasification (UCG). The calculations simulated the coal gasification process using oxygen and water vapour as a gasification agent in 120 hours. Based on the selected software (Ansys-Fluent) a model of underground coal gasification (UCG) process was developed. The flow of the gasification agent, the description of the turbulence model, the heat-exchange model and the method of simulation of chemical reactions of gasification are presented herein
Numerical simulation of the oxygen-blown coal gasification process inside a cross-type two-stage (E-...
The results of model studies involving numerical simulation of underground coal gasification process...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
The numerical simulation was based on the computational fluid dynamics formalism in order to identif...
Underground coal gasification (UCG) is considered to be a perspective and constantly developing tech...
This paper presents a coupled thermal-hydraulic-chemical numerical model to study the temperature de...
The book deals with development of comprehensive computational models for simulating underground coa...
AbstractThe main goal of this study was the analysis of gas flow in the underground coal gasificatio...
ABSTRACTPurposeUnderground coal gasification, as a complex and technically difficult process, in man...
Purpose Underground coal gasification, as a complex and technically difficult process, in many aspec...
The underground coal gasification(UCG)process involves complex coupling of chemical reaction,fluid t...
Underground coal gasification (UCG), in the recent years, have gathered a significant amount of inte...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
This paper presents a coupled flow-geomechanical model to study the ground deformation due to geoene...
The purpose of this paper was to present the thermoporoelasticity model adapted for application in m...
Numerical simulation of the oxygen-blown coal gasification process inside a cross-type two-stage (E-...
The results of model studies involving numerical simulation of underground coal gasification process...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...
The numerical simulation was based on the computational fluid dynamics formalism in order to identif...
Underground coal gasification (UCG) is considered to be a perspective and constantly developing tech...
This paper presents a coupled thermal-hydraulic-chemical numerical model to study the temperature de...
The book deals with development of comprehensive computational models for simulating underground coa...
AbstractThe main goal of this study was the analysis of gas flow in the underground coal gasificatio...
ABSTRACTPurposeUnderground coal gasification, as a complex and technically difficult process, in man...
Purpose Underground coal gasification, as a complex and technically difficult process, in many aspec...
The underground coal gasification(UCG)process involves complex coupling of chemical reaction,fluid t...
Underground coal gasification (UCG), in the recent years, have gathered a significant amount of inte...
Underground coal gasification (UCG) has its own reaction characteristics with the growth of the comb...
This paper presents a coupled flow-geomechanical model to study the ground deformation due to geoene...
The purpose of this paper was to present the thermoporoelasticity model adapted for application in m...
Numerical simulation of the oxygen-blown coal gasification process inside a cross-type two-stage (E-...
The results of model studies involving numerical simulation of underground coal gasification process...
This paper presents a coupled thermo-mechanical model to investigate the ground response during unde...