Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposition onto the reactor walls, whence the ash is drained as a molten phase. Previous investigations have shed light on the fate of char particles as they impinge on the wall slag layer: both char entrapment inside the melt and carbon-coverage of the slag can occur, as suggested by experimental investigation of ashes generated by full-scale plants. Because of the wide range of spatial and temporal scales involved in these phenomena, numerical simulation of the fate of the flying fine char particles is a very difficult task. Simulation is most frequently based on the RANS (Reynolds Averaged Navier Stokes Simulation) approach, in which the particl...
During slagging combustion/gasification of solid fuels, particles move toward the film of slag cover...
A critical analysis of impact experiments relevant to entrained-flow slagging gasifiers is hereby pr...
To allow the future use of coal for power generation a very low level of emissions is required, as e...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow slagging gasifiers are characterized by operating conditions that promote ash migrati...
This work illustrates how different numerical modeling approaches can be jointly used to understand ...
Understanding the phenomenology and proper design of slagging entrained-flow gasifiers requires the ...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The performance of entrained-flow gasifiers of solid fuels is critically affected by the complex gas...
of the model is a comprehensive “particle segregation” submodel, based on the near-wall phenomena as...
During slagging combustion/gasification of solid fuels, particles move toward the film of slag cover...
A critical analysis of impact experiments relevant to entrained-flow slagging gasifiers is hereby pr...
To allow the future use of coal for power generation a very low level of emissions is required, as e...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow slagging gasifiers are characterized by operating conditions that promote ash migrati...
This work illustrates how different numerical modeling approaches can be jointly used to understand ...
Understanding the phenomenology and proper design of slagging entrained-flow gasifiers requires the ...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The performance of entrained-flow gasifiers of solid fuels is critically affected by the complex gas...
of the model is a comprehensive “particle segregation” submodel, based on the near-wall phenomena as...
During slagging combustion/gasification of solid fuels, particles move toward the film of slag cover...
A critical analysis of impact experiments relevant to entrained-flow slagging gasifiers is hereby pr...
To allow the future use of coal for power generation a very low level of emissions is required, as e...