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Numerical Simulation of Dynamic Emergency Rescue and Regularities during Mine Fire Period
Under the comprehensive consideration of “buoyancy effect” and “throttle effect” during mine fire period, the article used the geographic information system (GIS) technology, simulated the smoke pollution area, ventilation system junction temperature and state of airflow during mine fire period. Finishing a program for dynamic simulation of emergency rescue during mine fire period, which is significant for establishing fire pre-scheme and the decision-making during fire period. At the same time, the dynamic characteristic of ventilation system and selection of escaping route is also considered, which provides foundation for the rescuing the workers underground in time.
Numerical Simulation of Dynamic Emergency Rescue and Regularities during Mine Fire Period
Under the comprehensive consideration of “buoyancy effect” and “throttle effect” during mine fire period, the article used the geographic information system (GIS) technology, simulated the smoke pollution area, ventilation system junction temperature and state of airflow during mine fire period. Finishing a program for dynamic simulation of emergency rescue during mine fire period, which is significant for establishing fire pre-scheme and the decision-making during fire period. At the same time, the dynamic characteristic of ventilation system and selection of escaping route is also considered, which provides foundation for the rescuing the workers underground in time.
Numerical Simulation of Dynamic Emergency Rescue and Regularities during Mine Fire Period
Advanced Materials Research ; 619 ; 336-341
13.12.2012
6 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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