HU Zhen-qi GAO Yang SU Wei-yue XIA Qing ZENG Ji-yong, . Study on inverting calculation of ignition point depth in coal waste pile based on ignition source model[J]. COAL SCIENCE AND TECHNOLOGY, 2015, (1).
Citation:
HU Zhen-qi GAO Yang SU Wei-yue XIA Qing ZENG Ji-yong, . Study on inverting calculation of ignition point depth in coal waste pile based on ignition source model[J]. COAL SCIENCE AND TECHNOLOGY, 2015, (1).
HU Zhen-qi GAO Yang SU Wei-yue XIA Qing ZENG Ji-yong, . Study on inverting calculation of ignition point depth in coal waste pile based on ignition source model[J]. COAL SCIENCE AND TECHNOLOGY, 2015, (1).
Citation:
HU Zhen-qi GAO Yang SU Wei-yue XIA Qing ZENG Ji-yong, . Study on inverting calculation of ignition point depth in coal waste pile based on ignition source model[J]. COAL SCIENCE AND TECHNOLOGY, 2015, (1).
Research Institute of Land Reclamation and Ecological Restoration,China University of Mining and Technology( Beijing) MOE Engineering Research Center of Mine Ecology and Safety
According to an unclear firing location in a deeptraditional coal waste pile during a spontaneous combustion process,lacking of simpleffective and safety method to measure a firing point depth and other problems,based on simple steady-state linear model theory as a base,reverse method of single firing source model was a pplied to establish reverse mathematic model of firing point depth in coal waste pile. With calculation on temperature ratio between surface feature temperatures,a ftting a pproximation actual value method was applied to the numerical solution and a firing point depth in the coal waste pile was obtained. The method was applied to a firing poi nt depth in the south slope of Wangzhuang Mine Coal Waste Pile and the calculation results had an error of 13 cm to a firing point depth measured with a borehole tempera ture measurement. The method could meet the requirements of the spontaneous combustion prevention for the coal waste pile and could provide new idea to have the firin g point depth of coal waste pile during spontaneous combustion.