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"New insight into proactive goaf inertisation for spontaneous combustio" by Ming Qiao, Ting Ren et al.

Spontaneous heating in the active goaf area during normal mining processes poses increased threats to mine productivity and safety, as evidenced in events induced by spontaneous combustion of coal. To control and mitigate this engineering problem, there is a need to gain critical knowledge of spontaneous combustion in the longwall goaf area, which can be achieved through a combination of field tests and numerical modeling. This paper introduces the spontaneous combustion management system widely used in Australia and presents Computational Fluid Dynamics (CFD) models for the simulation of gas flow dynamics in the goaf area, based on the site conditions of an underground coal mine where coal seam gas is predominantly comprised of carbon dioxide. The models were validated with gas monitoring data and used to conduct parametric studies for proactive goaf inertisation optimization. Qualitative and quantitative analysis of simulation results indicated that better goaf inertisation could be

Australia
Australian
Computational-fluid-dynamics
Computational-modeling
Nertisation-parameter-optimization
Ining-process-safety
Principal-hazard-management-plan
Roactive-goaf-inertisation
Pontaneous-heating

RSHQ presents more detail on Crinum tragedy

RSHQ presents more detail on Crinum tragedy
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Japan
Japanese
Graham-dawson
Duncan-evans
Sojitz-corporation
Health-queensland
Gregory-crinum
Resources-safety
Site-senior-executives
Underground-mine-managers
Principal-hazard-management-plan
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