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Numerical study on effects of coal properties on spontaneous heating in longwall gob areas

机译:煤性质对长壁采空区自然采暖影响的数值研究

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A computational fluid dynamics (CFD) study was conducted to model effects of coal properties on the potential for spontaneous heating in longwall gob (mined-out) areas. A two longwall panel district using a bleeder ventilation system was simulated. The permeability and porosity profiles for the longwall gob were generated from a geotechnical model and were used as inputs for the three-dimensional CFD modeling. The spontaneous heating is modeled as the low-temperature oxidation of coal in the gob using kinetic data obtained from previous laboratory-scale spontaneous combustion studies. Heat generated from coal oxidation is dissipated by convection and conduction, while oxygen and oxidation products are transported by convection and diffusion. Unsteady state simulations were conducted for three different US coals and simulation results were compared with some available test results. The effects of coal surface area and heat of reaction on the spontaneous heating process were also examined.
机译:进行了计算流体动力学(CFD)研究,以模拟煤特性对长壁采空区(采空区)自燃潜力的影响。模拟了使用放气通风系统的两个长壁面板区域。长壁采空区的渗透率和孔隙率剖面是从岩土模型生成的,并用作三维CFD模型的输入。使用从先前实验室规模的自燃研究获得的动力学数据,将自热模拟为采空区中煤的低温氧化。煤氧化产生的热量通过对流和传导消散,而氧气和氧化产物则通过对流和扩散进行传输。对美国三种不同的煤进行了非稳态模拟,并将模拟结果与一些可用的测试结果进行了比较。还研究了煤表面积和反应热对自发加热过程的影响。

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