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Goaf Spontaneous Combustion Forecast under Conditions of Stereoscopic Gas Drainage(Extended Abstract)

机译:立体气体排水条件下的GOAF自发燃烧预测(扩展摘要)

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摘要

In order to avoidgoaf accidents caused by gassy and high spontaneous combustion, spontaneous combustion oxidation experiment was carried out under the conditions of air flow with various gas concentrations, at the same time, considering the "U+L+I" type ventilation system characteristics of Tianchi coal mine 401 working face, numerical simulation and field measurement was used to investigate the law of goaf air leakage under the conditions of stereoscopic gas drainage and spontaneous combustion prediction method was established.Furthermore, under the process of oxidation temperature rising, CO concentration was calculated in the way of one-dimensional linear difference calculation.Then the risk index of 401 working face of spontaneous combustion was obtained.The research shows that under the conditions of air flow with various gas concentrations, oxidation product CO shows "lag effect".We can predict the goaf spontaneous combustion danger by using high pumping lane and tail lane gas composition under the conditions of stereoscopic gas drainage.In 401 working face, when pumping high lane CO concentrations are less than 74 ppm and tail lane CO concentrations are less than 37 ppm, goaf will be in the low-temperature oxidation stage; when high pumping lane CO concentrations are greater than or equal to 74 ppm or tail lane CO concentrations are greater than or equal to 37 ppm, goaf will be in the spontaneous combustion dangerous stage.The research results may have practical significance for gas prevention and spontaneous combustion control of gassy and high spontaneous combustion coal seam.
机译:为了避开由Gassy和高自发燃烧引起的事故,在通过各种气体浓度的空气流量的条件下进行自发燃烧氧化实验,同时考虑“U + L + I”型通风系统特性Tianchi煤矿401工作面,数值模拟和现场测量用于调查立体气体排放条件下的粘度空气泄漏法,建立了自发燃烧预测方法。在氧化温度上升的过程下,CO浓度是以一维线性差异计算的方式计算。获得了自发燃烧的401个工作面的风险指数。研究表明,在空气流量的条件下,氧化产品CO显示“滞后效应”。我们可以通过使用高泵送车道和尾巷气体有限公司来预测GOAF自燃危险在立体气体排水条件下的素质。在泵浦高通道CO浓度小于74ppm时,尾泳道CO浓度小于37ppm时,GOF将在低温氧化阶段;当高泵送泳道CO浓度大于或等于74ppm或尾气通道CO浓度大于或等于37ppm时,GOF将处于自发燃烧危险阶段。研究结果可能对气体预防和自发具有实际意义燃烧控制气体和高自燃煤层煤层。

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