首页> 外文期刊>The Open Fuels & Energy Science Journal >Effect Analysis of Nitrogen Injection on the Variation of “Oxidation Zone” in Coal Mine Gob Based on Numerical Simulation
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Effect Analysis of Nitrogen Injection on the Variation of “Oxidation Zone” in Coal Mine Gob Based on Numerical Simulation

机译:基于数值模拟的注氮对煤矿采空区“氧化区”变化的影响分析

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One of the main reasons for coal mine fire is spontaneous combustion of residual coal in gob. As the difference of compaction degree of coal and rock, the underground gob can be considered as a porous medium and divided into “three zones” in accordance with the criteria. The “three zones” are “heat dissipation zone”, “oxidation zone” and “choking zone”, respectively. Temperature programming experiments are taken and numerical simulation with obtained experimental data is utilized to analyze the distribution of “three zones” in this paper. Different width and depth of “oxidation zone” are obtained when the inlet air velocity is changed. As the nitrogen injection has inhibition effect on spontaneous combustion of residual coal in gob, nitrogen is injected into the gob. The widths of “oxidation zone” are compared before and after nitrogen injection. And ultimately the optimum location and volume of nitrogen injection are found out.
机译:煤矿起火的主要原因之一是采空区中残留煤的自燃。由于煤与岩石的压实度不同,地下采空区可被视为一种多孔介质,并根据标准分为“三个区域”。 “三个区域”分别是“散热区域”,“氧化区域”和“窒息区域”。进行了温度编程实验,并利用获得的实验数据进行了数值模拟,以分析“三个区域”的分布。当进气速度改变时,“氧化区”的宽度和深度会有所不同。由于氮的注入对滴头中残余煤的自燃具有抑制作用,因此将氮注入滴头中。在注入氮气之前和之后比较“​​氧化区”的宽度。最终找到了氮气注入的最佳位置和体积。

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