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首页> 外文期刊>Journal of loss prevention in the process industries >CFD modeling of spontaneous heating in a large-scale coal chamber
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CFD modeling of spontaneous heating in a large-scale coal chamber

机译:大型煤室内自热的CFD建模

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摘要

Three-dimensional computational fluid dynamics (CFD) modeling is conducted to simulate spontaneous heating in a large-scale coal chamber with a forced ventilation system. Spontaneous heating is modeled as the low-temperature oxidation of coal using kinetic data obtained from previous laboratory-scale spontaneous heating studies. Heat generated from coal oxidation is dissipated by convection and conduction, while oxygen and oxidation products are transported by convection and diffusion. The water vapor transfer and the effect of heat of wetting are not modeled. The CFD model is validated by comparing simulation results with test results from U.S. Bureau of Mines experiments conducted in the coal chamber. The model predicts lower temperatures in the early stage but agrees well on the induction time for spontaneous heating. The effects of airflow rate and order of reaction on the spontaneous heating process are also examined. The calibrated CFD model is found to be useful for predicting the induction time for spontaneous heating in underground coal mines.
机译:进行了三维计算流体动力学(CFD)建模,以模拟带有强制通风系统的大型煤室中的自热。使用从先前实验室规模的自热研究获得的动力学数据,将自热建模为煤的低温氧化。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。没有对水蒸气的传递和润湿热的影响进行建模。通过将模拟结果与美国矿业局在煤室中进行的试验结果进行比较,验证了CFD模型的有效性。该模型预测早期温度会降低,但与自然加热的诱导时间一致。还检查了气流速率和反应顺序对自发加热过程的影响。发现校准的CFD模型对于预测地下煤矿自发加热的诱导时间很有用。

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